Institute of Chemistry and Biochemistry, Freie Universität Berlin, 14195 Berlin, Germany.
Proc Natl Acad Sci U S A. 2010 May 4;107(18):8213-8. doi: 10.1073/pnas.1003478107. Epub 2010 Apr 19.
Members of the Bin/amphiphysin/Rvs (BAR) domain protein superfamily are involved in membrane remodeling in various cellular pathways ranging from endocytic vesicle and T-tubule formation to cell migration and neuromorphogenesis. Membrane curvature induction and stabilization are encoded within the BAR or Fer-CIP4 homology-BAR (F-BAR) domains, alpha-helical coiled coils that dimerize into membrane-binding modules. BAR/F-BAR domain proteins often contain an SH3 domain, which recruits binding partners such as the oligomeric membrane-fissioning GTPase dynamin. How precisely BAR/F-BAR domain-mediated membrane deformation is regulated at the cellular level is unknown. Here we present the crystal structures of full-length syndapin 1 and its F-BAR domain. Our data show that syndapin 1 F-BAR-mediated membrane deformation is subject to autoinhibition by its SH3 domain. Release from the clamped conformation is driven by association of syndapin 1 SH3 with the proline-rich domain of dynamin 1, thereby unlocking its potent membrane-bending activity. We hypothesize that this mechanism might be commonly used to regulate BAR/F-BAR domain-induced membrane deformation and to potentially couple this process to dynamin-mediated fission. Our data thus suggest a structure-based model for SH3-mediated regulation of BAR/F-BAR domain function.
Bin/ amphiphysin/ Rvs (BAR) 结构域蛋白超家族的成员参与各种细胞途径中的膜重塑,从内吞小泡和 T 管形成到细胞迁移和神经形态发生。膜曲率的诱导和稳定编码在 BAR 或 Fer-CIP4 同源 BAR(F-BAR)结构域中,这些结构域由α螺旋卷曲螺旋组成,二聚形成膜结合模块。BAR/F-BAR 结构域蛋白通常含有一个 SH3 结构域,该结构域募集结合伴侣,如寡聚膜裂变 GTP 酶 dynamin。BAR/F-BAR 结构域介导的膜变形在细胞水平上是如何精确调节的尚不清楚。本文呈现了全长 syndapin 1 及其 F-BAR 结构域的晶体结构。研究数据表明,syndapin 1 F-BAR 介导的膜变形受到其 SH3 结构域的自身抑制。syndapin 1 SH3 与 dynamin 1 的富含脯氨酸结构域的结合驱动了夹钳构象的释放,从而释放了其强大的膜弯曲活性。研究假设,这种机制可能被普遍用于调节 BAR/F-BAR 结构域诱导的膜变形,并可能将此过程与 dynamin 介导的裂变偶联。因此,研究数据提出了一个基于结构的模型,用于解释 SH3 介导的 BAR/F-BAR 结构域功能的调节。