Molecular species selectivity of lipid transport creates a mitochondrial sink for di-unsaturated phospholipids

Publication date

2021-12-17

Authors

Renne, Mike FISNI 0000000443826953
Bao, XueORCID 0000-0002-5129-0728ISNI 000000049281246X
Hokken, Margriet WjISNI 0000000523786955
Bierhuizen, Adolf S
Hermansson, Martin
Sprenger, Richard R
Ewing, Tom A
Ma, Xiao
Cox, RuudISNI 0000000419417551
Brouwers, Jos F.ISNI 0000000390722770

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Document Type

Article
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cc_by

Abstract

Mitochondria depend on the import of phospholipid precursors for the biosynthesis of phosphatidylethanolamine (PE) and cardiolipin, yet the mechanism of their transport remains elusive. A dynamic lipidomics approach revealed that mitochondria preferentially import di-unsaturated phosphatidylserine (PS) for subsequent conversion to PE by the mitochondrial PS decarboxylase Psd1p. Several protein complexes tethering mitochondria to the endomembrane system have been implicated in lipid transport in yeast, including the endoplasmic reticulum (ER)-mitochondrial encounter structure (ERMES), ER-membrane complex (EMC), and the vacuole and mitochondria patch (vCLAMP). By limiting the availability of unsaturated phospholipids, we created conditions to investigate the mechanism of lipid transfer and the contributions of the tethering complexes in vivo. Under these conditions, inactivation of ERMES components or of the vCLAMP component Vps39p exacerbated accumulation of saturated lipid acyl chains, indicating that ERMES and Vps39p contribute to the mitochondrial sink for unsaturated acyl chains by mediating transfer of di-unsaturated phospholipids. These results support the concept that intermembrane lipid flow is rate-limited by molecular species-dependent lipid efflux from the donor membrane and driven by the lipid species' concentration gradient between donor and acceptor membrane.

Keywords

lipid transport, membrane contact sites, membrane lipid homeostasis, membrane lipid unsaturation, mitochondria, General Biochemistry,Genetics and Molecular Biology, General Immunology and Microbiology, Molecular Biology, General Neuroscience

Citation

Renne, M F, Bao, X, Hokken, M W, Bierhuizen, A S, Hermansson, M, Sprenger, R R, Ewing, T A, Ma, X, Cox, R C, Brouwers, J F, De Smet, C H, Ejsing, C S & de Kroon, A I 2021, 'Molecular species selectivity of lipid transport creates a mitochondrial sink for di-unsaturated phospholipids', EMBO Journal, vol. 41, no. 2, e106837, pp. 1-16. https://doi.org/10.15252/embj.2020106837