My guess is energy
Protease is an enzyme so it would break down into amino acids. (If you meant protein then the same is true)
The anticodon would be UAG, and the amino acid coded for is isoleucine.
No, Bacillus subtilis is not an acid-fast bacterium.
A condensation reaction between the acid group of one amino acid and the amino group of another forms a covalent bond between two amino acids. A water molecule is also produced. A new bond formed is called a peptide bond.
Deletion of just one nucleotide in a protein-coding part of a gene will cause a "frameshift mutation." Since the nucleotides are read in groups of three (codons) along the gene, the groupings will change and the protein that results is likely to be completely different.
The amino acid code for the mRNA codon GAG corresponds to the amino acid Glutamic acid (Glu). In the genetic code, GAG is one of the codons that specifies this particular amino acid.
AGT codes for the amino acid serine and CTT codes for the amino acid leucine.
The body begins to break down muscle tissue to replace missing essential amino acids.Whatever proteins that are composed of that amino acid will not be made.
break it down. the cell's in the plant will eventually be broken down because of the amino acid.
Protease is an enzyme so it would break down into amino acids. (If you meant protein then the same is true)
It is an nonessential amino acid but I would not call it's structure that simple.
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The anticodon would be UAG, and the amino acid coded for is isoleucine.
stomach
The body begins to break down muscle tissue to replace missing essential amino acids.Whatever proteins that are composed of that amino acid will not be made.
A limiting amino acid is an essential amino acid that is in the smallest supply relative to the body's needs, potentially restricting protein synthesis. Non-essential amino acids, such as alanine or aspartic acid, cannot be limiting because the body can synthesize them. Therefore, any amino acid that is non-essential would not be a limiting amino acid in the diet.
No, Bacillus subtilis is not an acid-fast bacterium.