Literature DB >> 3069126

Serine hydroxymethyltransferase: mechanism of the racemization and transamination of D- and L-alanine.

K Shostak1, V Schirch.   

Abstract

The reaction specificity and stereochemical control of Escherichia coli serine hydroxymethyltransferase were investigated with D- and L-alanine as substrates. An active-site H228N mutant enzyme binds both D- and L-alanine with Kd values of 5 mM as compared to 30 and 10 mM, respectively, for the wild-type enzyme. Both wild-type and H228N enzymes form quinonoid complexes absorbing at 505 nm by catalyzing the loss of the alpha-proton from both D- and L-alanine. Racemization and transamination reactions were observed to occur with both alanine isomers as substrates. The relative rates of these reactions are quinonoid formation greater than alpha-proton solvent exchange greater than racemization greater than transamination. The observation that the rate of quinonoid formation with either alanine isomer is an order of magnitude faster than solvent exchange suggests that the alpha-protons from both D- and L-alanine are transferred to base(s) on the enzyme. The rate of racemization is 2 orders of magnitude slower than the formation of the quinonoid complexes. This latter difference in rate suggests that the quinonoid complexes formed from D- and L-alanine are not identical. The difference in structure of the two quinonoid complexes is proposed to be the active-site location of the alpha-protons lost from the two alanine isomers, rather than two orientations of the pyridoxal phosphate ring. The results are consistent with a two-base mechanism for racemization.

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Year:  1988        PMID: 3069126     DOI: 10.1021/bi00421a006

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  12 in total

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Authors:  D M Smith; N R Thomas; D Gani
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8.  Purification and gene cloning of alpha-methylserine aldolase from Ralstonia sp. strain AJ110405 and application of the enzyme in the synthesis of alpha-methyl-L-serine.

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9.  Treponema denticola cystalysin exhibits significant alanine racemase activity accompanied by transamination: mechanistic implications.

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10.  On the catalytic mechanism and stereospecificity of Escherichia coli L-threonine aldolase.

Authors:  Martino L di Salvo; Soumya G Remesh; Mirella Vivoli; Mohini S Ghatge; Alessandro Paiardini; Simona D'Aguanno; Martin K Safo; Roberto Contestabile
Journal:  FEBS J       Date:  2013-11-13       Impact factor: 5.542

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