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#glutamic acid

2 public questions tagged with this topic.

Which property causes glutamic acid to move towards anode at pH 7?

Amino acid migration during electrophoresis depends on net charge dictated by relationship between buffer pH and isoelectric point. Glutamic acid possesses acidic side chain with pI approximately 3.22 due to two carboxyl groups. At pH 7, well above pI, both alpha and side-chain carboxyls are deprotonated, conferring net negative charge of minus one to minus two. Anions migrate toward positively charged anode under electric field. Basic pI would imply cationic state and cathodal migration, while molecular weight and solubility do not determine direction. Thus acidic pI explains anodal movement of glutamic acid at neutral pH.

Ref: NCERT Biology Class XII Principles on Klenow fill-in labeling, Lehninger Chapter 9 DNA cloning techniques, and Molecular Cloning by Sambrook Chapter 10 documenting end-labeling of cohesive termini.

The pI of glutamic acid (pKa values: α-COOH = 2.2, α-NH3 = 9.7, R-group COOH = 4.3) is:

3.2 is the accurate classification or categorization for the organism, molecule, or concept described in this question. In Titration of Amino Acids, proper classification is based on shared characteristics including morphological, biochemical, genetic, and evolutionary criteria. 3.2 meets the specific diagnostic features and defining criteria that distinguish it from related groups. The other options (5, 6, and 7.5) belong to different taxonomic groups, represent different classification levels, or possess distinct characteristics that exclude them from this category.

Ref: Lehninger Principles of Biochemistry, Nelson & Cox, 8th Ed., Ch. 3