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Desaturase specificity is controlled by the physicochemical properties of a single amino acid residue in the substrate binding tunnel

Computational and Structural Biotechnology Journal. 2020-05; 
Aleš Buček, Mario Vazdar, Michal Tupec, Aleš Svatoš, IvaPichová
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Gene Synthesis Coding regions of wt B. mori desaturase BmorD1 [24] and its 130 single-aa mutant BmorD1-Ile227 were optimized for yeast codon 131 usage, custom synthesized (GenScript) Get A Quote
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摘要

Membrane fatty acyl desaturases (mFAD) are ubiquitous enzymes in eukaryotes. They introduce double bonds into fatty acids (FAs), producing structurally diverse unsaturated FAs which serve as membrane lipid components or precursors of signaling molecules. The mechanisms controlling enzymatic specificity and selectivity of desaturation are, however, poorly understood. We found that the physicochemical properties, particularly side chain volume, of a single amino acid (aa) residue in insect mFADs (Lepidoptera: Bombyx mori and Manduca sexta) control the desaturation products. Molecular dynamics simulations of systems comprising wild-type or mutant mFADs with fatty acyl-CoA substrates revealed that the single aa sub... More

关键词

Acyl-CoA desaturase; Manduca sexta; Bombyx mori; Enzymatic specificity; Protein engineering; Molecular dynamics simulations