Advanced Method for the In Vivo Measurements of Lysophospholipid Translocation Across the Inner (Cytoplasmic) Membrane of Escherichia coli.

Q4 Biochemistry, Genetics and Molecular Biology Methods in molecular biology Pub Date : 2025-01-01 DOI:10.1007/978-1-0716-4318-1_11
Yibin Lin, Lei Zheng, Mikhail Bogdanov
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Abstract

Phospholipid translocation occurs ubiquitously in biological membranes and primarily is protein catalyzed. Lipid flippases mediate the net translocation of specific phospholipids from one leaflet of a membrane to the other. In the inner (cytoplasmic) membrane (IM) of Gram-negative bacteria, lysophospholipid translocase (LplT) and cytosolic bifunctional acyl-acyl carrier protein (ACP) synthetase/2-acylglycerolphosphoethanolamine acyltransferase (Aas) form a glycerophospholipid regeneration system, which is capable of facilitating rapid retrograde translocation of lyso forms of phosphatidylethanolamine (PE), phosphatidylglycerol (PG), and cardiolipin (CL) but not exogenous (host-derived) phosphatidylcholine (PC) across the IM of Gram-negative diderm (two-membraned) bacteria in consequential order lyso-PE = lyso-PG > > lysophosphatidic acid (lyso-PA) >> lyso-PC. Although several flippases that bind and move non-glycerophosphatidyl lipids across the IM are characterized in Gram-negative bacteria, LplT appears to be the first example of a bacterial protein capable of facilitating the rapid translocation of monoacylated glycerophospholipids. On the cytoplasmic surface, Aas restores the lysophospholipids to their diacyl forms with comparable efficiency but excludes any exogenous monoacylated lipid species. This coupled remodeling enzyme tandem provides an effective means to examine substrate specificity of lipid regeneration and lysophospholipid transport per se across the membrane. The current chapter describes two distinct but complementary methods for the measurement of lysophospholipid transport across membranes using Escherichia coli spheroplasts.

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大肠杆菌内(胞质)膜溶血磷脂转运的先进体内测定方法
磷脂易位在生物膜中普遍存在,主要由蛋白质催化。脂质翻转酶介导特定磷脂从膜的一个小叶到另一个小叶的净易位。在革兰氏阴性菌胞质内膜(IM)中,溶血磷脂转位酶(LplT)和胞质内双功能酰基酰基载体蛋白合成酶(ACP) /2-酰基甘油磷酸乙醇胺酰基转移酶(Aas)形成了一个甘油磷脂再生系统,该系统能够促进磷脂酰乙醇胺(PE)、磷脂酰甘油(PG)、和心磷脂(CL),但不包括外源性(宿主来源的)磷脂酰胆碱(PC)在革兰氏阴性双膜细菌的IM中依次为lyso-PE = lyso-PG >>溶血磷脂酸(lyso-PA) >> lyso-PC。虽然革兰氏阴性菌中有几种结合和移动非甘油磷脂酰脂质的翻转酶,但LplT似乎是第一个能够促进单酰基甘油磷脂快速易位的细菌蛋白。在细胞质表面,Aas以相当的效率将溶血磷脂恢复为二酰基形式,但不包括任何外源性单酰基脂类。这种耦合重构酶串联提供了一种有效的方法来检查脂质再生和溶血磷脂本身跨膜运输的底物特异性。本章描述了使用大肠杆菌球质体测量溶血磷脂跨膜运输的两种不同但互补的方法。
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来源期刊
Methods in molecular biology
Methods in molecular biology Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
2.00
自引率
0.00%
发文量
3536
期刊介绍: For over 20 years, biological scientists have come to rely on the research protocols and methodologies in the critically acclaimed Methods in Molecular Biology series. The series was the first to introduce the step-by-step protocols approach that has become the standard in all biomedical protocol publishing. Each protocol is provided in readily-reproducible step-by-step fashion, opening with an introductory overview, a list of the materials and reagents needed to complete the experiment, and followed by a detailed procedure that is supported with a helpful notes section offering tips and tricks of the trade as well as troubleshooting advice.
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