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Structural basis for NHERF recognition by ERM proteins

机译:ERM蛋白识别NHERF的结构基础

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摘要

The Na+/H+ exchanger regulatory factor (NHERF) is a key adaptor protein involved in the anchoring of ion channels and receptors to the actin cytoskeleton through binding to ERM (ezrin/radixin/moesin) proteins. NHERF binds the FERM domain of ERM proteins, although NHERF has no signature Motif-1 sequence for FERM binding found in adhesion molecules. The crystal structures of the radixin FERM domain complexed with the NHERF-1 and NHERF-2 C-terminal peptides revealed a peptide binding site of the FERM domain specific for the 13 residue motif MDWxxxxx(L/I)Fxx(L/F) (Motif-2), which is distinct from Motif-1. This Motif-2 forms an amphipathic alpha helix for hydrophobic docking to subdomain C of the FERM domain. This docking causes induced-fit conformational changes in subdomain C and affects binding to adhesion molecule peptides, while the two binding sites are not overlapped. Our studies provide structural paradigms for versatile ERM linkages between membrane proteins and the cytoskeleton.
机译:Na + / H +交换子调节因子(NHERF)是关键的衔接子蛋白,通过与ERM(ezrin / radixin / moesin)蛋白结合,参与离子通道和受体对肌动蛋白细胞骨架的锚定。 NHERF结合ERM蛋白的FERM结构域,尽管NHERF在粘附分子中没有FERM结合的Motif-1签名序列。与NHERF-1和NHERF-2 C端肽复合的radixin FERM域的晶体结构揭示了对13个残基基序MDWxxxxx(L / I)Fxx(L / F)具有特异性的FERM域的肽结合位点( Motif-2),与Motif-1不同。该Motif-2形成两亲性α螺旋,用于疏水对接至FERM域的亚域C。这种对接导致亚结构域C的诱导拟合构象变化,并影响与粘附分子肽的结合,而两个结合位点没有重叠。我们的研究为膜蛋白和细胞骨架之间的通用ERM连接提供了结构范例。

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