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Probing the Catalytic Charge-Relay System in Alanine Racemase with Genetically Encoded Histidine Mimetics.

Authors :
Sharma V
Wang YS
Liu WR
Source :
ACS chemical biology [ACS Chem Biol] 2016 Dec 16; Vol. 11 (12), pp. 3305-3309. Date of Electronic Publication: 2016 Nov 15.
Publication Year :
2016

Abstract

Histidine is a unique amino acid with an imidazole side chain in which both of the nitrogen atoms are capable of serving as a proton donor and proton acceptor in hydrogen bonding interactions. In order to probe the functional role of histidine involved in hydrogen bonding networks, fine-tuning the hydrogen bonding potential of the imidazole side chain is required but not feasible through traditional mutagenesis methods. Here, we show that two close mimetics of histidine, 3-methyl-histidine and thiazole alanine, can be genetically encoded using engineered pyrrolysine incorporation machinery. Replacement of the three histidine residues predicted to be involved in an extended charge-relay system in alanine racemase with 3-methyl-histidine or thiazole alanine shows a dramatic loss in the enzyme's catalytic efficiency, implying the role of this extended charge-relay system in activating the active site residue Y265, a general acid/base catalyst in the enzyme.

Details

Language :
English
ISSN :
1554-8937
Volume :
11
Issue :
12
Database :
MEDLINE
Journal :
ACS chemical biology
Publication Type :
Report
Accession number :
27978711
Full Text :
https://doi.org/10.1021/acschembio.6b00940