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Design and Analysis of Algorithms:
MTH502 MIDTERM SOLVED PAPER BY MOAAZ
Four amino acids, each comprising of four carbon particles, happen in proteins; they are aspartic corrosive, asparagine, threonine, and methionine. Aspartic corrosive and asparagine, which happen in huge sums, can be integrated by creatures.
Threonine and methionine can’t be combined and accordingly are fundamental amino acids; i.e., they should be provided in the eating regimen. Most proteins contain as it were modest quantities of methionine.
MTH502-Design and Analysis of Algorithms:
Proteins likewise contain an amino corrosive with five carbon iotas (glutamic corrosive) and an optional amine (in proline), which is a construction with the amino gathering (−NH2) attached to the alkyl side chain, shaping a ring.
Glutamic corrosive and aspartic corrosive are dicarboxylic acids; that is, they have two carboxyl gatherings (−COOH).
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Glutamine is like asparagine in that both are the amides of their relating dicarboxylic corrosive structures; i.e., they have an amide bunch (−CONH2) instead of the carboxyl (−COOH) of the side chain.
Glutamic corrosive and glutamine are plentiful in many proteins; e.g., in plant proteins, they at times comprise more than 33% of the amino acids present.
MTH502 SOLVED PAPERS-Design and Analysis of Algorithms:
Both glutamic corrosive and glutamine can be blended by creatures. The amino acids proline and hydroxyproline happen in enormous sums in collagen, the protein of the connective tissue of creatures.
Proline and hydroxyproline need free amino (−NH2) gatherings since the amino gathering is encased in a ring structure with the side chain; they hence can’t exist in a zwitterion structure.
MTH502 MIDTERM SOLVED PAPER BY MOAAZ
Albeit the nitrogen-containing bunch (>NH) of these amino acids can shape a peptide bond with the carboxyl gathering of another amino corrosive, the bond so shaped brings about.
