Neuron processes like axons and dendrites are bundled in the body to form nerves.
Axons are long, slender projections that transmit electrical impulses away from the neuron's cell body, while dendrites are short, branched projections that receive these impulses and transmit them toward the cell body. Together, axons and dendrites are known as neuron processes.
These neuron processes are bundled together within the body to form nerves. Nerves are the primary structures responsible for transmitting messages between different regions of the nervous system, as well as to and from other body systems. Nerves are essentially the communication highways that facilitate quick and efficient transmission of signals throughout the body.
Nerves can be classified into two main types: sensory nerves and motor nerves. Sensory nerves consist of sensory neurons, which are responsible for transmitting sensory information, such as touch, temperature, and pain, from the body to the brain. Motor nerves, on the other hand, consist of motor neurons that carry signals from the brain to the muscles and glands, initiating various actions and responses.
The bundling of axons and dendrites within nerves allows for efficient and organized communication within the body. This organization enables the nervous system to effectively process information, make decisions, and coordinate appropriate responses. Nerves play a crucial role in the proper functioning of the body and are essential for maintaining overall health and well-being.
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Neuron processes like axons and dendrites are bundled in the body to form _______
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When a warm front is approaching, what happens?
A. advancing cold air pushes up and over retreating warm air causing warm temperatures and mild rain
B. advancing warm air pushes up and over retreating cold air causing warm temperatures and mild rain
Answer:
The air mass behind a warm front is likely to be warmer and more moist than the one before the front. If a warm front is approaching, light rain or light winter precipitation is possible before and as the front passes. Behind the front, expect clearing skies, warmer temperatures and higher relative humdities.
Explanation:
(︶^︶)
What have scientists realized over the years of how temperature affects humans? Does temperature affect climate change? If it does, how can it be reduced?
HELP!!!
Answer:
Temperature affects humans in many different ways.
Explanation:
Humans can be affected by temperatures because high temperature often can cause health problems, people may feel: Increased irritability. Loss of concentration and ability to do mental tasks. Also temperature doesn't really affect climate change, its more like the other way around. Thing you can do to reduce climate change are use renewable energy, and don't use cars if you don't have to. Because the gas that comes out of the cars turns into green house gas which is the cause of climate change.
What happens if you have PID for a long time?
PID, if left untreated, can lead to serious complications, especially if it lasts for a long time.
PID, or pelvic inflammatory disease, is a condition that occurs when bacteria enters the uterus, fallopian tubes, or ovaries from the vagina or cervix, causing inflammation and potential damage to these reproductive organs.
The following are some of the potential consequences of untreated or prolonged PID
Infertility: PID can cause scarring and blockages in the fallopian tubes, making egg transport from the ovary to the uterus difficult or impossible. Infertility or ectopic pregnancy can result from this.
Chronic pelvic pain: A common complication of PID is chronic pelvic pain. The condition's inflammation and scarring can cause ongoing discomfort and pain.
Abscesses: In some cases, PID can cause abscesses (pus collections) in the reproductive organs or surrounding tissues.
Peritonitis: When an abscess ruptures, the infection can spread to the lining of the abdomen (peritoneum), causing peritonitis, which can be fatal.
Scarring and blockages caused by PID, as previously mentioned, can increase the risk of ectopic pregnancy, a serious condition in which a fertilised egg implants outside the uterus.
If you suspect you have PID, you should seek medical attention right away. Most people with the condition can recover completely with the right treatment and without any long-term complications.
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In what form is carbon found in the atmosphere?
Answer: Carbon Dioxide
Explanation:
1. What types of signal sequences are likely to be cleaved off and which are not? Explain why this is the case
Signals that disrupt functionality are likely to be cut off (ex. if they affect the folding). Signal sequences that are required for function, don't get in the way, or are needed for subsequent retargeting of the protein (like a nuclear targeting sequence) aren't cut off.
A signal peptide, also known as a signal sequence, targeting signal, localization signal, localization sequence, transit peptide, leader sequence, or leader peptide, is a brief peptide that is typically 16 to 30 amino acids long and found at the N-terminus of the majority of newly synthesized proteins that are headed for the secretory pathway (or, in some cases, nonclassically, at the C-terminus or internally). These proteins include those that are either inserted into most cellular membranes or found inside specific organelles, such as the endoplasmic reticulum, Golgi, or endosomes. The majority of type II and multi-spanning membrane-bound proteins are directed to the secretory pathway by their first transmembrane domain, which biochemically resembles a signal sequence but is not cleaved. Although most type I membrane-bound proteins have signal peptides, this is not the case for type II and multi-spanning membrane-bound proteins.
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What are the yellow dots on the pink membrane?
A commercial producer of dry fruits wants to sell 1000 boxes of dates. What do you think is the method he could adopt to produce more dates ina shortperiod oftime?Justify your answer
To produce more dates in a short period of time, the commercial producer can adopt various methods such as increasing the number of date palm trees, implementing efficient irrigation systems, using proper fertilizers and pesticides, pruning the trees regularly, and maintaining the trees properly.
The producer can also use modern technologies such as drones to monitor the growth and health of the trees. Additionally, the producer can employ a skilled workforce to carry out the tasks efficiently and effectively. Moreover, the producer can collaborate with other date producers to share knowledge and resources to increase production.
By adopting these methods, the commercial producer can produce more dates and meet the demand of the market. It is essential to note that increasing production should not compromise the quality of the dates. Therefore, the producer should ensure that the dates are of high quality and meet the industry standards.
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What macromolecules provide instruction for growth
The scales shown in the introduction measure mass or the amount of matter in a particular object. The scientific law of conversation of mass states that matter can both be created or destroyed during a chemical reaction but it can change from one form to another. Did the simulation support this scientific law? Explain why or why not.
The simulation of a chemical reaction does support the scientific law of conversation of mass that states that matter can neither be created nor destroyed but it can change from one form to another.
The scientific law of conservation of mass states that matter can neither be created nor destroyed but it can change from one form to another. This means that the mass of the reactants and the products must be the same, i.e., mass cannot be lost or gained.
For example, when the wood is burned, the products formed are ash, water vapour, and carbon dioxide. The mass of the ash, water vapour, and carbon dioxide formed during the combustion of wood is the same as the mass of the wood that was burned.
The simulation of a chemical reaction supports this scientific law as it has been observed that the mass of the reactants in a chemical reaction is equal to the mass of the products formed during the chemical reaction. Even if the products appear to have a different mass than the reactants, it is only because the mass has changed from one form to another, and not because the mass has been destroyed or created.
For instance, in the process of rusting, iron and oxygen react to form rust, which is hydrated iron(III) oxide. The mass of the iron and oxygen involved in the chemical reaction is equal to the mass of the rust formed. In conclusion, the scientific law of the conversation of mass states that matter can neither be created nor destroyed but it can change from one form to another, which is supported by the simulation of a chemical reaction.
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the broken branch how congress is failing america
The broken branch is a term often used to describe how Congress, as a branch of government, is failing America.
The dysfunction and lack of productivity in Congress can be attributed to a number of factors, including partisan gridlock, political polarization, and the influence of money and special interest groups. These issues have led to a breakdown in the legislative process, with important legislation often getting stalled or watered down.
Additionally, the inability of Congress to effectively address pressing issues such as healthcare, immigration, and climate change has contributed to a sense of disillusionment and frustration among the American people. It is crucial for Congress to address these challenges and work towards finding common ground in order to better serve the needs of the country.
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The gradual decline in men's testosterone levels in middle age can reduce their ____. A. lung capacity. B. sexual drive. C. infertility. D. thyroid levels.
The gradual decline in men's testosterone levels in middle age can reduce their B. sexual drive.
Testosterone is the primary manly coitus hormone and plays a pivotal part in maintaining sexual function and libido in men. As men age, it's common for testosterone situations to decline gradationally, a process known as andropause or late- onset hypogonadism. This decline in testosterone can lead to colorful changes in the body, including a drop in sexual drive or libido.
Testosterone is involved in the regulation of sexual desire and thrill, and lower situations of testosterone can affect in a drop in sexual provocation and interest. Men passing reduced testosterone situations may notice a decline in their overall sexual drive, lower frequent sexual studies or fantasies, and a drop in robotic constructions. still, it's important to note that individual gests may vary, and not all men will witness significant changes in sexual drive as a result of declining testosterone situations.
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What are the three
groups of
biodiversity?
A. bacteria, fungus, algae
B. species, ecosystems, genes
C. kingdoms, domains, DNA
D. individuals, living, non-living
Answer:
B. Species, ecosystems, genes
Whcih of the following scenarios would result in a person's inability to keep a memory? a in the hippocampus; inability to produce enough EPSPs to drive Mg out of the cell, therefore Ca channels responsible for increased postsynaptic sensitivity remained blocked O b. in the hippocampus; decreased glutamate release from presynaptic neurons repolarize the cell, resulting in increased AMPA receptors necessary for increased Na into the cell OCIn the hippocampus, increase in glutamate release from presynaptic neurons causes excitation of the second messenger pathway system responsible for blocking Me keeping it in the cell, and causing the cell to hyperpolarize O d. In the hypothalamus, decreased glutamate release from presynaptic neurons repolarize the cell, resulting in increased AMPA receptors necessary for increased Na into the cell e. In the hypothalamus; inability to produce enough EPSPs to drive Mg out of the cell, therefore Ca channels responsible for increased postsynaptic sensitivity remained blocked For this question. Assume a hypothetical postsynaptic neuron has three presynaptic inputs: neurons A T. and M. Also, assume neuron Mis inhibitory. If neurotransmitter from A causes a slight depolarization of the postsynaptic cell, then the a. synapse is excitatory b. synapse is inhibitory O c synapse could be excitatory or inhibitory O d. postsynaptic cells membrane potential has decreased e. a and d
The scenario that would result in a person's inability to keep a memory is option A: In the hippocampus, inability to produce enough EPSPs to drive Mg out of the cell, therefore Ca channels responsible for increased postsynaptic sensitivity remained blocked.
In this scenario, the insufficient generation of excitatory postsynaptic potentials (EPSPs) prevents the removal of magnesium (Mg) from the cell.
As a result, the calcium (Ca) channels responsible for increasing postsynaptic sensitivity remain blocked. Calcium influx is crucial for various processes involved in memory formation and synaptic plasticity in the hippocampus, including long-term potentiation (LTP).
Therefore, the inability to generate enough EPSPs and unblock the Ca channels impairs the synaptic changes necessary for memory retention.
Therefore, the correct option is A, In the hippocampus, inability to produce enough EPSPs to drive Mg out of the cell, therefore Ca channels responsible for increased postsynaptic sensitivity remained blocked.
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The largest concentration of nitrogen is found in the __________________, but plants and animals cannot use ____________ directly from the _____________.
Nitrogen fixation is the process of capturing and _________ nitrogen into a form that is __________ by plants.
Nitrogen can be added to the soil by applying ____________ to lawns or crops.
Nitrogen enters the food web when _________ absorb nitrogen compounds from the soil and convert them into ___________.
In order of the blanks
The largest concentration of nitrogen is found in the atmosphere, but plants and animals cannot use nitrogen gas directly from the air. Nitrogen fixation is the process of capturing and fixing nitrogen gas into a form that is usable by plants. Nitrogen can be added to the soil by applying nitrogen fertilizers to lawns or crops. Nitrogen enters the food web when plants absorb nitrogen compounds from the soil and convert them into amino acids.
What are the uses of nitrogen?The nitrogen cycle is a biogeochemical cycle that describes the movement of nitrogen through the Earth's atmosphere, biosphere, geosphere, and hydrosphere. Nitrogen is an essential element for life, and the nitrogen cycle ensures that it is recycled and available to all living organisms.
The largest concentration of nitrogen on Earth is found in the atmosphere, where it exists as nitrogen gas. However, plants and animals cannot use nitrogen gas directly. Nitrogen fixation is the process by which nitrogen gas is converted into a form that can be used by plants. This can be done by bacteria, algae, or lightning.
Once nitrogen has been fixed, it can be taken up by plants through their roots. Plants use nitrogen to make proteins, nucleic acids, and other essential compounds. When plants die, their remains decompose, and the nitrogen is released back into the atmosphere or the soil.
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Is climate science historical science, operational science, or
is it both? How does one’s worldview affect how they view climate
change? Pick a stance and defend your answer.
Climate science is a combination of both historical science and operational science. Climate science involves understanding the Earth's past climate and current climate and predicting future changes.
Operational science is focused on studying current natural phenomena, while historical science examines past events that are not currently happening or can't be observed anymore. Climate science combines the two as it studies past climate changes and current climate changes, and uses that information to make predictions about the future. Hence, climate science is both historical science and operational science.
A person's worldview can affect how they view climate change. For example, those who believe that human beings are the primary cause of climate change may advocate for increased environmental protection measures. Others may be more skeptical about the role of human activity in climate change, believing that it is part of a natural cycle that has happened before. Still, others may deny the existence of climate change entirely, believing that it is a hoax or exaggeration by the media or scientists. I believe that climate change is real and largely caused by human activity, but I understand that others may have different views based on their worldview and experiences. It is essential to consider different perspectives and gather as much information as possible to make informed decisions about how to address climate change.
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What is the difference between a point mutation and a frameshift mutation
Why are most recombinant human proteins produced in animal or plant hosts instead of bacterial host cells?
Because proteins produced by eukaryotes are not processed by bacteria in the same way.
What are recombinant proteins?
Foreign genes are transfected into a host cell to create recombinant proteins. Recombinant proteins are frequently used to create pharmaceutical goods, protein-based polymers for drug administration, antibodies and enzymes for the treatment of diseases, protein scaffolds for tissue engineering, and a variety of other applications.
A major obstacle to these expressions is the absence of post-translational machinery and the creation of inactive protein as a result of inclusion body formation.
Being a prokaryote, E. coli lacks the membrane-bound nucleus (and other organelles) seen in eukaryotic cells, which is a drawback when utilizing it to express eukaryotic proteins. Accordingly, some eukaryotic genes may not operate as they would in E. coli, which can make it difficult to isolate them using selection processes that rely on gene expression. Additionally, it is difficult to guarantee that the prokaryotic host produces a completely functional protein if the goal of a cloning experiment is to make eukaryotic protein.
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Here is the sticky end of a dna molecule after it has been cut by a restriction enzyme. which sequence of nucleotides would bind to this sticky end? - ATAT - TTAA - UUAA - AATT
The sticky end of a DNA molecule that has been cut by a restriction enzyme would bind to a complementary sticky end. The sticky end of the DNA molecule is composed of single-stranded regions that are created when the restriction enzyme cuts the double-stranded DNA.
In order to bind to the sticky end, the complementary sequence must be present in another DNA molecule.
Out of the four options given, the complementary sequence to the sticky end "ATAT" would be "AATT". The complementary base pairs in DNA are A-T and C-G, so a sequence of AATT would bind to the sticky end ATAT via hydrogen bonds between the complementary base pairs.
This allows the two DNA molecules to "stick" together, or anneal, through complementary base pairing. The process of joining two DNA molecules through complementary sticky ends is called ligation, and it is an important step in many molecular biology techniques, including DNA cloning.
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Part 2: Based on the following genotypes, determine the phenotype.
6. In humans, tongue rolling is dominant to not being able to roll the tongue.
TT=
Tt=
7. In humans, mid-finger hair is dominant to no mid-finger hair.
HH =
Hh=
8. In humans, cleft chin is dominant to no cleft chin.
Cc =
CC=
ll norrible genotypes.
hh=
сс
The genotype of the child will be rr, which is homozygous recessive based on the genetic cross. As a result, the youngster will be unable to roll their tongue since they lack the dominant allele.
If tongue rolling is dominant, what is the genotype of a tongue roller?A person with the Rr genotype for tongue rolling can roll his or her tongue since the dominant gene that facilitates tongue rolling is present.
The dominant gene, T, controls tongue rolling, whereas the recessive allele, t, controls non-rolling. A -linked gene on the X chromosome controls red-green colour blindness.
As a result, offspring have a 0% probability of having the tongue rolling personality.
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PLEASE GIVE ANSWER
The given diagram describes the Calvin cycle of photosynthesis. Where does the NADPH come from?
Answer:
Light-dependent reactions harness energy from the sun to produce ATP and NADPH so Light Reactions
The pancreas, which releases hormones to control blood sugar levels and also enzymes to aid in digestion, is known as a(n) _____ gland.
Answer:endocrine gland
Explanation: these are duct less glands
True or False:
Nutritional Anthropology combines the interests of biological and cultural anthropologists and draws systematically on the concepts and methods of nutritionists and other behavioral scientists.
True. Nutritional anthropology is a subfield of anthropology that studies the relationship between nutrition, health, and culture. It combines the interests of biological and cultural anthropologists and draws on the concepts and methods of nutritionists and other behavioral scientists to understand how diet and food practices shape human biology, behavior, and society.
Nourishing humanities is the investigation of food and sustenance from developmental, conduct, social and social points of view, and how these communicate in the creation of dietary wellbeing at the individual, local area and populace levels.
For instance, nutritional anthropologists have investigated the nutritional effects of switching from foraging and hunting to agriculture. Another example is research on how a shift from cash cropping to subsistence farming affects nutrition.
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Which of the following claims is NEITHER testable NOR falsifiable?
A. If I get this question correct, then I will receive two points.
B. When I eat breakfast before I start my day, I am able to focus better.
C. My dog barks whenever a large truck comes by.
D. There are megalodons in the deepest parts of the ocean.
ecosystems rely on what 5 components
Answer:
animals, food, drink, a good area to live in, and ofc oxygen
Explanation:
Which movement of particles would be most affected by a disorder that causes damage to carrier proteins? osmosis passive transport active transport diffusion
Answer: Active Transport
Explanation: Active transport is the movement of a substance (proteins, enzymes, etc.) from one area of the cell membrane to the next during diffusion, so this would most be affected due to the kinds of substances being transported across the cell membrane and damage can have an impact.
Carrier proteins are involved in active transport. The movement of particles that would be most affected by a disorder that causes damage to carrier proteins is active transport. Option C.
What are the carrier proteins?Carrier proteins are transmembrane molecules involved in active transport.
They carry molecules from one side of the membrane to the other side.
What is active transport?Active transport acts against the electrochemical gradient, so it does need the energy to transport substances.
It carries molecules from a low concentration side to a high concentration side.
The used energy comes from ATP (Na-K bomb) or the membrane's electric potential.
The movement of particles that would be most affected by a disorder that causes damage to carrier proteins is active transport. Option C.
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If a cell were lacking lysosomes, what would the cell be unable to do?
The cell would be unable to get rid of its excess waste. The lysosome is an organelle specializing in getting rid of worn out things in the cell.
what does the hydrolysis of atp that is bound to myosin accomplish?
The hydrolysis of ATP that is bound to myosin plays a crucial role in muscle contraction. When a muscle is stimulated to contract, myosin heads bind to actin filaments and form cross-bridges.
The bound ATP on the myosin head is then hydrolyzed into ADP and inorganic phosphate (Pi).
This hydrolysis releases energy that is used to change the conformation of the myosin head, causing it to pivot and pull the actin filament towards the center of the sarcomere.
This is known as the power stroke. As the myosin heads continue to bind, hydrolyze ATP, and undergo conformational changes, the actin filaments slide past the myosin filaments, resulting in muscle contraction.
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which precursors can be used to make glucose in gluconeogenesis?
The precursors which can be used to make glucose in gluconeogenesis are glycerol and lactate/pyruvate.
Glycerol is a straightforward triol molecule, often known as glycerine in British English and glycerin in American English. It is a sweet-tasting, colourless, odourless, liquid which is non-toxic.
Pyruvate is a 2-oxo monocarboxylic acid anion and the conjugate base of pyruvic acid, a crucial metabolic byproduct for biochemical pathways that provide energy. The end product of glycolysis, pyruvate, can undergo anaerobic metabolism to produce lactate when hypoxic circumstances are present. It produces lactate in the presence of hypoxic circumstances.
Lactate is soluble in water and has a white solid form. It transforms into a colourless solution when dissolved. In the process of production, both synthetic and natural resources are used.
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Why are gills, a heart, and a closed circulatory system a much more efficient way of getting oxygen to all the cells than that of insects?
Answer:
Due to fast transportation of oxygen, waste material and nutrients.
Explanation:
Gills, a heart, and a closed circulatory system are more efficient ways to provide oxygen to all cells than that of open circulatory system of insects because in the closed circulatory system blood transfers is faster than open circulatory system, thus oxygen, nutrients, and wastes transport is also very fast so we can say that closed circulatory system is more efficient than open circulatory system.
Answer:
Gills, a heart, and a closed circulatory system are more efficient ways to provide oxygen to all cells than that of open circulatory system of insects because in the closed circulatory system blood transfers is faster than open circulatory system, thus oxygen, nutrients, and wastes transport is also very fast so we can say that closed circulatory system is more efficient than open circulatory system.
Explanation:
Gills, a heart, and a closed circulatory system are more efficient ways to provide oxygen to all cells than that of open circulatory system of insects because in the closed circulatory system blood transfers is faster than open circulatory system, thus oxygen, nutrients, and wastes transport is also very fast so we can say that closed circulatory system is more efficient than open circulatory system.
Which amino acid substitution for alanine would least likely affect the three-dimensional shape of the resulting protein?.
The amino acid substitution for glycine would least likely affect the three-dimensional shape of the resulting protein.
Amino acids are the building blocks of proteins.
The side chains or R groups of each of the twenty amino acids are unique and interact with one another to produce a specific protein structure.
Each amino acid has a unique side chain that distinguishes it from other amino acids.
Some amino acids have a small side chain, while others have a large side chain.
The glycine amino acid substitution is likely to have the least impact on the structure of the protein because glycine is the only amino acid without a chiral center in its side chain.
It has a hydrogen atom as its side chain instead.
The side chain of glycine is so small that it can be included in very tight spaces in proteins, such as the crevices between two different parts of a protein molecule.
Glycine's small side chain also enables it to have more flexibility in protein structures.
Because it has no bulky groups, glycine can fit into tight spaces that other amino acids cannot fit into.
In protein structures, glycine is commonly found in loops and turns that connect different parts of the protein structure.
Protein structure is critical for protein function.
Changes in amino acid sequence can have a significant impact on protein structure.
Each amino acid has a unique side chain that distinguishes it from other amino acids.
Some amino acids have a small side chain, while others have a large side chain.
Glycine is the only amino acid without a chiral center in its side chain. It has a hydrogen atom as its side chain instead.
The side chain of glycine is so small that it can be included in very tight spaces in proteins, such as the crevices between two different parts of a protein molecule.
Because it has no bulky groups, glycine can fit into tight spaces that other amino acids cannot fit into.
In protein structures, glycine is commonly found in loops and turns that connect different parts of the protein structure.
As a result, a substitution of alanine with glycine would have the least impact on the three-dimensional structure of the resulting protein.
If alanine were replaced with an amino acid with a bulky or long side chain, it could cause a steric hindrance, altering the structure of the protein and affecting its function.
A change in the protein's three-dimensional structure can lead to a change in its function.
Therefore, the amino acid substitution for glycine would least likely affect the three-dimensional shape of the resulting protein. Glycine is the only amino acid that has no chiral center in its side chain, which makes it unique. Because of its small size, glycine can fit into tight spaces, and its small side chain also enables it to have more flexibility in protein structures.
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