Department of Biochemistry, University of Lausanne, Epalinges, Switzerland.
EMBO J. 2022 May 16;41(10):e109646. doi: 10.15252/embj.2021109646. Epub 2022 Apr 25.
Endo-lysosomal compartments exchange proteins by fusing, fissioning, and through endosomal transport carriers. Thereby, they sort many plasma membrane receptors and transporters and control cellular signaling and metabolism. How the membrane fission events are catalyzed is poorly understood. Here, we identify the novel CROP complex as a factor acting at this step. CROP joins members of two protein families: the peripheral subunits of retromer, a coat forming endosomal transport carriers, and membrane inserting PROPPINs. Integration into CROP potentiates the membrane fission activity of the PROPPIN Atg18 on synthetic liposomes and confers strong preference for binding PI(3,5)P , a phosphoinositide required for membrane fission activity. Disrupting CROP blocks fragmentation of lysosome-like yeast vacuoles in vivo. CROP-deficient mammalian endosomes accumulate micrometer-long tubules and fail to export cargo, suggesting that carriers attempt to form but cannot separate from these organelles. PROPPINs compete for retromer binding with the SNX-BAR proteins, which recruit retromer to the membrane during the formation of endosomal carriers. Transition from retromer-SNX-BAR complexes to retromer-PROPPIN complexes might hence switch retromer activities from cargo capture to membrane fission.
内体-溶酶体隔室通过融合、裂变和通过内体转运载体交换蛋白质。由此,它们分拣许多质膜受体和转运体,并控制细胞信号转导和代谢。膜裂变事件如何被催化知之甚少。在这里,我们确定了新型 CROP 复合物是在这一步起作用的因素。CROP 加入了两个蛋白质家族的成员:形成内体转运载体的外套的外围亚基和膜插入 PROPPINs。整合到 CROP 中增强了 PROPPIN Atg18 在合成脂质体上的膜裂变活性,并赋予其对 PI(3,5)P 的强烈结合偏好,PI(3,5)P 是膜裂变活性所必需的磷酸肌醇。破坏 CROP 会阻止酵母液泡样溶酶体在体内的碎片化。CROP 缺陷型哺乳动物内体积累长达数微米的小管,无法输出货物,表明载体试图形成但不能与这些细胞器分离。PROPPINs 与 SNX-BAR 蛋白竞争与 retromer 的结合,后者在形成内体载体时将 retromer 募集到膜上。因此,从 retromer-SNX-BAR 复合物向 retromer-PROPPIN 复合物的转变可能会将 retromer 的活性从货物捕获切换到膜裂变。