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How α-Helical Motifs Form Functionally Diverse Lipid-Binding Compartments
Annual Review of Biochemistry ( IF 12.1 ) Pub Date : 2017-06-27 00:00:00 , DOI: 10.1146/annurev-biochem-061516-044445
Lucy Malinina 1 , Dinshaw J. Patel 2 , Rhoderick E. Brown 1
Affiliation  

Lipids are produced site-specifically in cells and then distributed nonrandomly among membranes via vesicular and nonvesicular trafficking mechanisms. The latter involves soluble amphitropic proteins extracting specific lipids from source membranes to function as molecular solubilizers that envelope their insoluble cargo before transporting it to destination sites. Lipid-binding and lipid transfer structural motifs range from multi-β-strand barrels, to β-sheet cups and baskets covered by α-helical lids, to multi-α-helical bundles and layers. Here, we focus on how α-helical proteins use amphipathic helical layering and bundling to form modular lipid-binding compartments and discuss the functional consequences. Preformed compartments generally rely on intramolecular disulfide bridging to maintain conformation (e.g., albumins, nonspecific lipid transfer proteins, saposins, nematode polyprotein allergens/antigens). Insights into nonpreformed hydrophobic compartments that expand and adapt to accommodate a lipid occupant are few and provided mostly by the three-layer, α-helical ligand-binding domain of nuclear receptors. The simple but elegant and nearly ubiquitous two-layer, α-helical glycolipid transfer protein (GLTP)-fold now further advances understanding.

中文翻译:


α-螺旋基序如何形成功能多样的脂质结合室

脂质在细胞中定点产生,然后通过水泡和非水泡运输机制在膜之间非随机分布。后者涉及可溶性两亲性蛋白质,可从源膜中提取特定的脂质,起分子增溶剂的作用,在将不溶性货物运输到目的地之前将其包裹。脂质结合和脂质转移的结构基元范围从多β链桶到由α螺旋盖覆盖的β片杯和篮子,再到多α螺旋束和层。在这里,我们关注于α-螺旋蛋白如何利用两亲性螺旋分层和束缚形成模块化的脂质结合区室,并讨论其功能后果。预制隔室通常依靠分子内二硫键桥接来维持构象(例如,白蛋白,非特异性脂质转移蛋白,saposins,线虫多蛋白过敏原/抗原)。很少见到能扩展并适应脂质容纳者的非预形成的疏水区室,并且主要由核受体的三层α-螺旋配体结合结构域提供。简单但优雅且几乎无处不在的两层α-螺旋糖脂转移蛋白(GLTP)折叠现在进一步推动了人们的理解。

更新日期:2017-06-27
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