Lipidomics of homeoviscous adaptation to low temperatures inStaphylococcus aureusutilizing exogenous straight-chain unsaturated fatty acids over biosynthesized endogenous branched-chain fatty acids

Author:

Barbarek Shannon C.,Shah Ritika,Paul Sharanya,Alvarado Gloria,Appala Keerthi,Henderson Emma C.,Strandquist Evan T.,Pokorny Antje,Singh Vineet K.,Gatto Craig,Dahl Jan-UlrikORCID,Hines Kelly M.ORCID,Wilkinson Brian J.

Abstract

ABSTRACTIt is well established thatStaphylococcus aureuscan incorporate exogenous straight-chain unsaturated fatty acids (SCUFAs) into membrane phospho- and glyco-lipids from various sources in supplemented culture media, and when growingin vivoin an infection. Given the enhancement of membrane fluidity when oleic acid (C18:1Δ9) is incorporated into lipids, we were prompted to examine the effect of medium supplementation with C18:1Δ9 on growth at low temperatures. C18:1Δ9 supported the growth of a cold-sensitive, branched-chain fatty acid (BCFA)-deficient mutant at 12°C. Interestingly, we found similar results in the BCFA-sufficient parental strain. We show that incorporation of C18:1Δ9 and its elongation product C20:1Δ9 into membrane lipids was required for growth stimulation and relied on a functional FakAB incorporation system. Lipidomics analysis of the phosphatidylglycerol (PG) and diglycosyldiacylglycerol (DGDG) lipid classes revealed major impacts of C18:1Δ9 and temperature on lipid species. Growth at 12°C in the presence of C18:1Δ9 also led to increased production of the carotenoid pigment staphyloxanthin; however, this was not an obligatory requirement for cold adaptation. Enhancement of growth by C18:1Δ9 is an example of homeoviscous adaptation to low temperatures utilizing an exogenous fatty acid. This may be significant in the growth ofS. aureusat low temperatures in foods that commonly contain C18:1Δ9 and other SCUFAs in various forms.IMPORTANCEWe show thatS. aureuscan use its known ability to incorporate exogenous fatty acids to enhance its growth at low temperatures. Individual species of phosphatidylglycerols and diglycosyldiacylglycerol bearing one or two degrees of unsaturation derived from incorporation of C18:1Δ9 at 12°C are described for the first time. In addition, enhanced production of the carotenoid staphyloxanthin occurs at low temperatures. The studies describe a biochemical reality underlying in membrane biophysics. This is an example of homeoviscous adaptation to low temperatures utilizing exogenous fatty acids over the regulation of the biosynthesis of endogenous fatty acids. The studies have likely relevance to food safety in that unsaturated fatty acids may enhance growth ofS. aureusin the food environment.

Publisher

Cold Spring Harbor Laboratory

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