The Henry Wellcome Integrated Signalling Laboratories, School of Biochemistry, University of Bristol, Bristol, UK.
EMBO J. 2012 Nov 28;31(23):4466-80. doi: 10.1038/emboj.2012.283. Epub 2012 Oct 19.
Sorting nexins (SNXs) are regulators of endosomal sorting. For the SNX-BAR subgroup, a Bin/Amphiphysin/Rvs (BAR) domain is vital for formation/stabilization of tubular subdomains that mediate cargo recycling. Here, by analysing the in vitro membrane remodelling properties of all 12 human SNX-BARs, we report that some, but not all, can elicit the formation of tubules with diameters that resemble sorting tubules observed in cells. We reveal that SNX-BARs display a restricted pattern of BAR domain-mediated dimerization, and by resolving a 2.8 Å structure of a SNX1-BAR domain homodimer, establish that dimerization is achieved in part through neutralization of charged residues in the hydrophobic BAR-dimerization interface. Membrane remodelling also requires functional amphipathic helices, predicted to be present in all SNX-BARs, and the formation of high order SNX-BAR oligomers through selective 'tip-loop' interactions. Overall, the restricted and selective nature of these interactions provide a molecular explanation for how distinct SNX-BAR-decorated tubules are nucleated from the same endosomal vacuole, as observed in living cells. Our data provide insight into the molecular mechanism that generates and organizes the tubular endosomal network.
分选连接蛋白(SNXs)是内体分选的调节因子。对于 SNX-BAR 亚群,Bin/ amphiphysin/Rvs(BAR)结构域对于管状亚区的形成/稳定至关重要,这些管状亚区介导货物再循环。在这里,通过分析所有 12 个人类 SNX-BAR 的体外膜重塑特性,我们报告说,一些(但不是全部)可以诱导形成类似于细胞中观察到的分选管的管状结构。我们揭示了 SNX-BAR 显示出受限的 BAR 结构域介导二聚化模式,并且通过解析 2.8 Å 的 SNX1-BAR 结构域同源二聚体结构,确定二聚化部分通过中和 BAR 二聚化界面中的带电残基来实现。膜重塑还需要功能的两亲性螺旋,预测所有 SNX-BAR 都存在,并且通过选择性的“尖端-环”相互作用形成高阶 SNX-BAR 寡聚体。总的来说,这些相互作用的受限和选择性性质为从同一个内体小泡中形成不同的 SNX-BAR 包裹的管状结构提供了分子解释,这在活细胞中是观察到的。我们的数据为生成和组织管状内体网络的分子机制提供了深入了解。