I would think so as it is made of sugars and amino acids that likely form peptide bonded polypeptides.
No. Tyrosine is an amino acid that forms peptide bonds with the others in polypeptide chains.
Amino acids are held together by peptide bonds. Peptide bonds are formed through a condensation reaction between the carboxyl group of one amino acid and the amino group of another amino acid, resulting in the formation of a covalent bond and the release of a water molecule.
A hexapeptide is a peptide composed of six amino acids linked together through peptide bonds. Since each peptide bond is formed between two amino acids, a hexapeptide would have 5 peptide bonds connecting the 6 amino acids.
Well... SORT of. Technically, the bases contain the NCO (amide) moiety that characterizes a peptide bond. However, they occur in heterocyclic rings, and it's stretching a point to call them "peptide bonds" since they're not linking two peptide residues. Also, they're in the cis-form, which is atypical of peptide bonds.
Well! Polypeptides are chain of amino-acids better known as proteins. Those amino-acids are join together by peptide bonds. Peptide bonds form when two amino-acids undego the process of condensation reaction, or dehydration synthesis where a carboxyl group of one amino-acid reacts with the amino group of another amino acid releasing water.
A peptide bond is a covalent bond found in proteins, not carbohydrates. Carbohydrates are made up of monosaccharides, which are linked together by glycosidic bonds, not peptide bonds.
peptide A.S.Apex :)
(((((They can all form bonds between polymer chains that create parallel strands.)))))) They all form highly branched fibers. They all contain peptide bonds. They are all composed of glucose in either the or form.
Proteins are formed by peptide bonds between amino acids.
No. Tyrosine is an amino acid that forms peptide bonds with the others in polypeptide chains.
Amino acids are held together by peptide bonds. Peptide bonds are formed through a condensation reaction between the carboxyl group of one amino acid and the amino group of another amino acid, resulting in the formation of a covalent bond and the release of a water molecule.
PEPTIDE
Proteins have their monomers joined by peptide bonds. These monomers are amides. A number of amides are bond by peptide bonds to make proteins.
A hexapeptide is a peptide composed of six amino acids linked together through peptide bonds. Since each peptide bond is formed between two amino acids, a hexapeptide would have 5 peptide bonds connecting the 6 amino acids.
Amino acids are connected together by peptide bonds. Peptide bonds form between the amino group of one amino acid and the carboxyl group of another amino acid, resulting in the formation of a peptide bond and a water molecule as a byproduct.
To write peptide bonds, it is important to make sure that you write them using the correct formulas. Amino acids are extremely important when it comes to peptide bonds, and writing them incorrectly can cause problems.
Well... SORT of. Technically, the bases contain the NCO (amide) moiety that characterizes a peptide bond. However, they occur in heterocyclic rings, and it's stretching a point to call them "peptide bonds" since they're not linking two peptide residues. Also, they're in the cis-form, which is atypical of peptide bonds.