Cornell Rosemary B
Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, B.C. V5A 1S6, Canada.
Biochim Biophys Acta. 2016 Aug;1861(8 Pt B):847-861. doi: 10.1016/j.bbalip.2015.12.022. Epub 2015 Dec 31.
The amphipathic helical (AH) membrane binding motif is recognized as a major device for lipid compositional sensing. We explore the function and mechanism of sensing by the lipid biosynthetic enzyme, CTP:phosphocholine cytidylyltransferase (CCT). As the regulatory enzyme in phosphatidylcholine (PC) synthesis, CCT contributes to membrane PC homeostasis. CCT directly binds and inserts into the surface of bilayers that are deficient in PC and therefore enriched in lipids that enhance surface charge and/or create lipid packing voids. These two membrane physical properties induce the folding of the CCT M domain into a ≥60 residue AH. Membrane binding activates catalysis by a mechanism that has been partially deciphered. We review the evidence for CCT compositional sensing, and the membrane and protein determinants for lipid selective membrane-interactions. We consider the factors that promote the binding of CCT isoforms to the membranes of the ER, nuclear envelope, or lipid droplets, but exclude CCT from other organelles and the plasma membrane. The CCT sensing mechanism is compared with several other proteins that use an AH motif for membrane compositional sensing. This article is part of a Special Issue entitled: The cellular lipid landscape edited by Tim P. Levine and Anant K. Menon.
两亲性螺旋(AH)膜结合基序被认为是脂质成分感知的主要机制。我们探究了脂质生物合成酶CTP:磷酸胆碱胞苷转移酶(CCT)的感知功能及机制。作为磷脂酰胆碱(PC)合成中的调节酶,CCT有助于维持膜PC的稳态。CCT直接结合并插入PC含量不足因而富含能增强表面电荷和/或产生脂质堆积空隙的脂质的双层膜表面。这两种膜的物理特性促使CCT的M结构域折叠成一个≥60个残基的AH。膜结合通过一种已部分解析的机制激活催化作用。我们综述了CCT成分感知的证据,以及脂质选择性膜相互作用的膜和蛋白质决定因素。我们考虑了促进CCT同工型与内质网、核膜或脂滴的膜结合,但将CCT排除在其他细胞器和质膜之外的因素。将CCT的感知机制与其他几种使用AH基序进行膜成分感知的蛋白质进行了比较。本文是名为《细胞脂质格局》的特刊的一部分,由蒂姆·P·莱文和阿南特·K·梅农编辑。