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疏水错配驱动E5与血小板衍生生长因子受体跨膜片段的相互作用。

Hydrophobic Mismatch Drives the Interaction of E5 with the Transmembrane Segment of PDGF Receptor.

作者信息

Windisch Dirk, Ziegler Colin, Grage Stephan L, Bürck Jochen, Zeitler Marcel, Gor'kov Peter L, Ulrich Anne S

机构信息

Institute of Biological Interfaces (IBG-2), Karlsruhe Institute of Technology, Karlsruhe, Germany.

Institute of Organic Chemistry, Karlsruhe Institute of Technology, Karlsruhe, Germany.

出版信息

Biophys J. 2015 Aug 18;109(4):737-49. doi: 10.1016/j.bpj.2015.07.022.

Abstract

The oncogenic E5 protein from bovine papillomavirus is a short (44 amino acids long) integral membrane protein that forms homodimers. It activates platelet-derived growth factor receptor (PDGFR) β in a ligand-independent manner by transmembrane helix-helix interactions. The nature of this recognition event remains elusive, as numerous mutations are tolerated in the E5 transmembrane segment, with the exception of one hydrogen-bonding residue. Here, we examined the conformation, stability, and alignment of the E5 protein in fluid lipid membranes of substantially varying bilayer thickness, in both the absence and presence of the PDGFR transmembrane segment. Quantitative synchrotron radiation circular dichroism analysis revealed a very long transmembrane helix for E5 of ∼26 amino acids. Oriented circular dichroism and solid-state (15)N-NMR showed that the alignment and stability of this unusually long segment depend critically on the membrane thickness. When reconstituted alone in exceptionally thick DNPC lipid bilayers, the E5 helix was found to be inserted almost upright. In moderately thick bilayers (DErPC and DEiPC), it started to tilt and became slightly deformed, and finally it became aggregated in conventional DOPC, POPC, and DMPC membranes due to hydrophobic mismatch. On the other hand, when E5 was co-reconstituted with the transmembrane segment of PDGFR, it was able to tolerate even the most pronounced mismatch and was stabilized by binding to the receptor, which has the same hydrophobic length. As E5 is known to activate PDGFR within the thin membranes of the Golgi compartment, we suggest that the intrinsic hydrophobic mismatch of these two interaction partners drives them together. They seem to recognize each other by forming a closely packed bundle of mutually aligned transmembrane helices, which is further stabilized by a specific pair of hydrogen-bonding residues.

摘要

来自牛乳头瘤病毒的致癌E5蛋白是一种短的(44个氨基酸长)整合膜蛋白,可形成同二聚体。它通过跨膜螺旋-螺旋相互作用以不依赖配体的方式激活血小板衍生生长因子受体(PDGFR)β。这种识别事件的本质仍然难以捉摸,因为E5跨膜区除了一个氢键残基外,能耐受许多突变。在这里,我们研究了在不存在和存在PDGFR跨膜区的情况下,E5蛋白在双层厚度差异很大的流体脂质膜中的构象、稳定性和排列。定量同步辐射圆二色性分析显示E5有一个约26个氨基酸的非常长的跨膜螺旋。取向圆二色性和固态(15)N-NMR表明,这个异常长片段的排列和稳定性关键取决于膜厚度。当单独重构于异常厚的DNPC脂质双层中时,发现E5螺旋几乎垂直插入。在中等厚度的双层(DErPC和DEiPC)中,它开始倾斜并略有变形,最终由于疏水不匹配而在传统的DOPC、POPC和DMPC膜中聚集。另一方面,当E5与PDGFR的跨膜区共重构时,它甚至能够耐受最明显的不匹配,并通过与具有相同疏水长度的受体结合而稳定。由于已知E5在高尔基体区室的薄膜内激活PDGFR,我们认为这两个相互作用伙伴的内在疏水不匹配促使它们结合在一起。它们似乎通过形成紧密堆积的相互排列的跨膜螺旋束来相互识别,这进一步由一对特定的氢键残基稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/195e/4547410/8e1808e66814/gr1.jpg

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