Use of limited proteolysis and mutagenesis to identify folding domains and sequence motifs critical for wax ester synthase/acyl coenzyme A:Diacylglycerol acyltransferase activity
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Villa Torrecilla, Juan Antonio; Cabezas Isidro, Matilde Andrea; Cruz Calahorra, Fernando de la

Fecha
2013-12-02Derechos
© American Society for Microbiology
Publicado en
Applied and Environmental Microbiology. 2014 Feb;80(3):1132-41
Editorial
American Society for Microbiology
Resumen/Abstract
Triacylglycerols and wax esters are synthesized as energy storage molecules by some proteobacteria and actinobacteria under
stress. The enzyme responsible for neutral lipid accumulation is the bifunctional wax ester synthase/acyl-coenzyme A (CoA):
diacylglycerol acyltransferase (WS/DGAT). Structural modeling of WS/DGAT suggests that it can adopt an acyl-CoA-dependent
acyltransferase fold with the N-terminal and C-terminal domains connected by a helical linker, an architecture demonstrated
experimentally by limited proteolysis. Moreover, we found that both domains form an active complex when coexpressed as independent
polypeptides. The structural prediction and sequence alignment of different WS/DGAT proteins indicated catalytically
important motifs in the enzyme. Their role was probed by measuring the activities of a series of alanine scanning mutants. Our
study underscores the structural understanding of this protein family and paves the way for their modification to improve the
production of neutral lipids.
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