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Creation of Bioorthogonal Redox Systems Depending on Nicotinamide Flucytosine Dinucleotide.

Authors :
Debin Ji
Lei Wang
Shuhua Hou
Wujun Liu
Jinxia Wang
Qian Wang
Zhao, Zongbao K.
Source :
Journal of the American Chemical Society. 12/28/2011, Vol. 133 Issue 51, p20857-20862. 6p.
Publication Year :
2011

Abstract

Many enzymes catalyzing biological redox chemistry depend on the omnipresent cofactor, nicotinamide adenine dinucleotide (NAD). NAD is also involved in various nonredox processes. It remains challenging to disconnect one particular NAD-dependent reaction from all others. Here we present a bioorthogonal system that catalyzes the oxidative decarboxylation of l-malate with a dedicated abiotic cofactor, nicotinamide flucytosine dinucleotide (NFCD). By screening the multisite saturated mutagenesis libraries of the NAD-dependent malic enzyme (ME), we identified the mutant ME-L310R/Q401C, which showed excellent activity with NFCD, yet marginal activity with NAD. We found that another synthetic cofactor, nicotinamide cytosine dinucleotide (NCD), also displayed similar activity with the ME mutants. Inspired by these observations, we mutated d-lactate dehydrogenase (DLDH) and malate dehydrogenase (MDH) to DLDH-V152R and MDH-L6R, respectively, and both mutants showed fully active with NFCD. When coupled with DLDH-V152R, ME-L310R/Q401C required only a catalytic amount of NFCD to convert l-malate. Our results opened the window to engineer bioorthogonal redox systems for a wide variety of applications in systems biology and synthetic biology. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00027863
Volume :
133
Issue :
51
Database :
Academic Search Index
Journal :
Journal of the American Chemical Society
Publication Type :
Academic Journal
Accession number :
70199414
Full Text :
https://doi.org/10.1021/ja2074032