The Mechanism of the Reaction Catalyzed by ADP-beta-L-glycero-D-manno-heptose 6-epimerase
Overview
Affiliations
ADP-l-glycero-d-manno-heptose 6-epimerase (AGME, RfaD) is a bacterial enzyme that is involved in lipopolysaccharide biosynthesis and interconverts ADP-beta-l-glycero-d-manno-heptose (ADP-l,d-Hep) with ADP-beta-d-glycero-d-manno-heptose (ADP-d,d-Hep). AGME is known to require a tightly bound NADP+ cofactor for activity and presumably employs a mechanism involving transient oxidation of the substrate. Four mechanistic possibilities are considered that involve transient oxidation at either C-7' ', C-6' ', or C-4' ' of the heptose nucleotide. In this contribution, the use of solvent isotope incorporation studies and alternate substrates provides strong evidence for a mechanism involving nonstereospecific oxidation/reduction directly at C-6' '. It was found that the epimerization proceeds without any detectable incorporation of solvent-derived deuterium or 18O-isotope into the product. This argues against mechanisms involving either proton transfers at carbon or dehydration/rehydration events. In addition, the deoxygenated analogues, 7' '-deoxy-ADP-l,d-Hep and 4' '-deoxy-ADP-l,d-Hep, were both found to serve as substrates for the enzyme, indicating that oxidation at either C-7' ' or C-4' ' is not required for catalysis.
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Xiang D, Xu M, Ghosh M, Raushel F Biochemistry. 2023; 62(21):3145-3158.
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Wang S, Lin C, Zhang J, Ushimaru R, Sasaki E, Liu H Proc Natl Acad Sci U S A. 2020; 117(40):24794-24801.
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Merino S, Tomas J Front Microbiol. 2016; 7:125.
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Li T, Wen L, Williams A, Wu B, Li L, Qu J Bioorg Med Chem. 2014; 22(3):1139-47.
PMID: 24412338 PMC: 3976583. DOI: 10.1016/j.bmc.2013.12.019.