Im Young Jun, Raychaudhuri Sumana, Prinz William A, Hurley James H
Laboratory of Molecular Biology, National Institutes of Health, US Department of Health and Human Services, Bethesda, Maryland 20892, USA.
Nature. 2005 Sep 1;437(7055):154-8. doi: 10.1038/nature03923.
The oxysterol-binding-protein (OSBP)-related proteins (ORPs) are conserved from yeast to humans, and are implicated in the regulation of sterol homeostasis and in signal transduction pathways. Here we report the structure of the full-length yeast ORP Osh4 (also known as Kes1) at 1.5-1.9 A resolution in complexes with ergosterol, cholesterol, and 7-, 20- and 25-hydroxycholesterol. We find that a single sterol molecule binds within a hydrophobic tunnel in a manner consistent with a transport function for ORPs. The entrance is blocked by a flexible amino-terminal lid and surrounded by basic residues that are critical for Osh4 function. The structure of the open state of a lid-truncated form of Osh4 was determined at 2.5 A resolution. Structural analysis and limited proteolysis show that sterol binding closes the lid and stabilizes a conformation favouring transport across aqueous barriers and signal transmission. The structure of Osh4 in the absence of ligand exposes potential phospholipid-binding sites that are positioned for membrane docking and sterol exchange. On the basis of these observations, we propose a model in which sterol and membrane binding promote reciprocal conformational changes that facilitate a sterol transfer and signalling cycle.
氧化甾醇结合蛋白(OSBP)相关蛋白(ORPs)从酵母到人类都保守存在,并且与甾醇稳态调节和信号转导途径有关。在此,我们报道了全长酵母ORP Osh4(也称为Kes1)与麦角甾醇、胆固醇以及7-、20-和25-羟基胆固醇形成复合物时分辨率为1.5-1.9埃的结构。我们发现单个甾醇分子以与ORPs的转运功能一致的方式结合在一个疏水通道内。通道入口被一个柔性的氨基末端盖子阻断,并且被对Osh4功能至关重要的碱性残基包围。在2.5埃分辨率下确定了Osh4盖子截短形式的开放状态结构。结构分析和有限蛋白酶解表明,甾醇结合会关闭盖子并稳定有利于跨水屏障转运和信号传递的构象。在没有配体的情况下,Osh4的结构暴露了用于膜对接和甾醇交换的潜在磷脂结合位点。基于这些观察结果,我们提出了一个模型,其中甾醇和膜结合促进相互的构象变化,从而促进甾醇转移和信号循环。