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基于 CD9 与 EWI-F 的结构探讨四跨膜蛋白富含微域组装的意义

Implications for tetraspanin-enriched microdomain assembly based on structures of CD9 with EWI-F.

机构信息

Department of Chemistry, Crystal and Structural Chemistry, Bijvoet Centre for Biomolecular Research, Faculty of Science, Utrecht University, Utrecht, The Netherlands.

Department of Biology, Cell Biology, Neurobiology and Biophysics, Faculty of Science, Utrecht University, Utrecht, The Netherlands.

出版信息

Life Sci Alliance. 2020 Sep 21;3(11). doi: 10.26508/lsa.202000883. Print 2020 Nov.

Abstract

Tetraspanins are eukaryotic membrane proteins that contribute to a variety of signaling processes by organizing partner-receptor molecules in the plasma membrane. How tetraspanins bind and cluster partner receptors into tetraspanin-enriched microdomains is unknown. Here, we present crystal structures of the large extracellular loop of CD9 bound to nanobodies 4C8 and 4E8 and, the cryo-EM structure of 4C8-bound CD9 in complex with its partner EWI-F. CD9-EWI-F displays a tetrameric arrangement with two central EWI-F molecules, dimerized through their ectodomains, and two CD9 molecules, one bound to each EWI-F transmembrane helix through CD9-helices h3 and h4. In the crystal structures, nanobodies 4C8 and 4E8 bind CD9 at loops C and D, which is in agreement with the 4C8 conformation in the CD9-EWI-F complex. The complex varies from nearly twofold symmetric (with the two CD9 copies nearly anti-parallel) to ca. 50° bent arrangements. This flexible arrangement of CD9-EWI-F with potential CD9 homo-dimerization at either end provides a "concatenation model" for forming short linear or circular assemblies, which may explain the occurrence of tetraspanin-enriched microdomains.

摘要

四跨膜蛋白是真核细胞膜蛋白,通过在质膜中组织伴侣受体分子,参与多种信号转导过程。四跨膜蛋白如何结合并将伴侣受体聚集到富含四跨膜蛋白的微域中尚不清楚。在这里,我们展示了与纳米抗体 4C8 和 4E8 结合的 CD9 的大细胞外环的晶体结构,以及与它的伴侣 EWI-F 结合的 4C8 结合的 CD9 的冷冻电镜结构。CD9-EWI-F 显示出四聚体排列,两个中央 EWI-F 分子通过它们的胞外结构域二聚化,两个 CD9 分子,一个通过 CD9 螺旋 h3 和 h4 与每个 EWI-F 跨膜螺旋结合。在晶体结构中,纳米抗体 4C8 和 4E8 在环 C 和 D 结合 CD9,这与 CD9-EWI-F 复合物中的 4C8 构象一致。该复合物的变化范围从近乎两倍对称(两个 CD9 拷贝几乎是反平行的)到约 50°弯曲排列。CD9-EWI-F 的这种灵活排列以及两端可能存在的 CD9 同源二聚化提供了形成短线性或圆形组装的“串联模型”,这可能解释了富含四跨膜蛋白的微域的发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9530/7536822/933825eb4572/LSA-2020-00883_FigS1.jpg

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