Shortening of membrane lipid acyl chains compensates for phosphatidylcholine deficiency in choline-auxotroph yeast

Publication date

2021-10-18

Authors

Bao, XueORCID 0000-0002-5129-0728ISNI 000000049281246X
Koorengevel, Martijn CISNI 0000000419423150
Groot Koerkamp, Marian J.A.
Homavar, AmirISNI 0000000506748690
Weijn, AmrahISNI 0000000419492615
Crielaard, Stefan
Renne, Mike F.ISNI 0000000443826953
Lorent, J HISNI 0000000492907274
Geerts, W.J.C.ISNI 0000000391787808
Surma, Michal A.

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Document Type

Article
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License

cc_by_nc_nd

Abstract

Phosphatidylcholine (PC) is an abundant membrane lipid component in most eukaryotes, including yeast, and has been assigned multiple functions in addition to acting as building block of the lipid bilayer. Here, by isolating S. cerevisiae suppressor mutants that exhibit robust growth in the absence of PC, we show that PC essentiality is subject to cellular evolvability in yeast. The requirement for PC is suppressed by monosomy of chromosome XV or by a point mutation in the ACC1 gene encoding acetyl-CoA carboxylase. Although these two genetic adaptations rewire lipid biosynthesis in different ways, both decrease Acc1 activity, thereby reducing average acyl chain length. Consistently, soraphen A, a specific inhibitor of Acc1, rescues a yeast mutant with deficient PC synthesis. In the aneuploid suppressor, feedback inhibition of Acc1 through acyl-CoA produced by fatty acid synthase (FAS) results from upregulation of lipid synthesis. The results show that budding yeast regulates acyl chain length by fine-tuning the activities of Acc1 and FAS and indicate that PC evolved by benefitting the maintenance of membrane fluidity.

Keywords

Acetyl-CoA Carboxylase/genetics, Chromosomes, Fungal, Fatty Acid Synthases/genetics, Feedback, Physiological, Gene Expression Regulation, Fungal, Lipid Bilayers/chemistry, Lipid Metabolism/genetics, Membrane Fluidity, Membrane Lipids/chemistry, Phosphatidylcholines/deficiency, Point Mutation, Saccharomyces cerevisiae/genetics

Citation

Bao, X, Koorengevel, M C, Groot Koerkamp, M J A, Homavar, A, Weijn, A, Crielaard, S, Renne, M F, Lorent, J H, Geerts, W J C, Surma, M A, Mari, M, Holstege, F C P, Klose, C & de Kroon, A I P M 2021, 'Shortening of membrane lipid acyl chains compensates for phosphatidylcholine deficiency in choline-auxotroph yeast', EMBO Journal, vol. 40, no. 20, e107966, pp. 1-26. https://doi.org/10.15252/embj.2021107966