Retromer 寡聚化驱动 SNX-BAR 外套组装和膜收缩。
Retromer oligomerization drives SNX-BAR coat assembly and membrane constriction.
机构信息
Department of Immunobiology, University of Lausanne, Epalinges, Switzerland.
Department of Biochemistry, University of Geneva, Geneva, Switzerland.
出版信息
EMBO J. 2023 Jan 16;42(2):e112287. doi: 10.15252/embj.2022112287.
Proteins exit from endosomes through tubular carriers coated by retromer, a complex that impacts cellular signaling, lysosomal biogenesis and numerous diseases. The coat must overcome membrane tension to form tubules. We explored the dynamics and driving force of this process by reconstituting coat formation with yeast retromer and the BAR-domain sorting nexins Vps5 and Vps17 on oriented synthetic lipid tubules. This coat oligomerizes bidirectionally, forming a static tubular structure that does not exchange subunits. High concentrations of sorting nexins alone constrict membrane tubes to an invariant radius of 19 nm. At lower concentrations, oligomers of retromer must bind and interconnect the sorting nexins to drive constriction. Constricting less curved membranes into tubes, which requires more energy, coincides with an increased surface density of retromer on the sorting nexin layer. Retromer-mediated crosslinking of sorting nexins at variable densities may thus tune the energy that the coat can generate to deform the membrane. In line with this, genetic ablation of retromer oligomerization impairs endosomal protein exit in yeast and human cells.
蛋白质通过被称为“逆行蛋白转运复合物”(retromer)的复合物所包被的管状载体从内体中输出,该复合物会影响细胞信号转导、溶酶体生物发生以及许多疾病。该载体必须克服膜张力才能形成管状结构。我们通过使用酵母逆行蛋白转运复合物以及 BAR 结构域分选连接蛋白 Vps5 和 Vps17 在定向合成脂质管上来重建载体形成,从而研究了这个过程的动力学和驱动力。这种载体可以双向寡聚化,形成一个不交换亚基的静态管状结构。单独的分选连接蛋白浓度较高时会将膜管压缩到 19nm 的固定半径。在较低的浓度下,逆行蛋白必须结合并连接分选连接蛋白以驱动收缩。将曲率较小的膜压缩成管状结构需要更多的能量,这与分选连接蛋白层上逆行蛋白的表面密度增加相一致。因此,逆行蛋白介导的分选连接蛋白的交联可以调节载体产生的能量,从而改变膜的形状。与此一致的是,酵母和人类细胞中逆行蛋白寡聚化的遗传缺失会损害内体蛋白的输出。
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