Centro de Biología Molecular Severo Ochoa, CSIC and UAM, Nicolás Cabrera 1, Cantoblanco 28049, Madrid, Spain.
European Molecular Biology Laboratory (EMBL), Meyerhofstrasse 1, 69117 Heidelberg, Germany.
Development. 2021 Nov 15;148(22). doi: 10.1242/dev.199894. Epub 2021 Nov 29.
The vertebrate endocytic receptor CUBAM, consisting of three cubilin monomers complexed with a single amnionless molecule, plays a major role in protein reabsorption in the renal proximal tubule. Here, we show that Drosophila CUBAM is a tripartite complex composed of Amnionless and two cubilin paralogues, Cubilin and Cubilin2, and that it is required for nephrocyte slit diaphragm (SD) dynamics. Loss of CUBAM-mediated endocytosis induces dramatic morphological changes in nephrocytes and promotes enlarged ingressions of the external membrane and SD mislocalisation. These phenotypes result in part from an imbalance between endocytosis, which is strongly impaired in CUBAM mutants, and exocytosis in these highly active cells. Of note, rescuing receptor-mediated endocytosis by Megalin/LRP2 or Rab5 expression only partially restores SD positioning in CUBAM mutants, suggesting a specific requirement of CUBAM in SD degradation and/or recycling. This finding and the reported expression of CUBAM in podocytes suggest a possible unexpected conserved role for this endocytic receptor in vertebrate SD remodelling.
脊椎动物内吞受体 CUBAM 由三个与单个无羊膜分子复合的 cubilin 单体组成,在肾脏近端小管中的蛋白质重吸收中起主要作用。在这里,我们表明果蝇 CUBAM 是由 Amnionless 和两个 cubilin 同源物 Cubilin 和 Cubilin2 组成的三部分复合物,并且它是肾单位裂孔隔膜 (SD) 动态所必需的。CUBAM 介导的内吞作用的丧失会导致肾单位细胞发生剧烈的形态变化,并促进外部膜的扩大内陷和 SD 定位错误。这些表型部分是由于内吞作用和外吐作用之间的不平衡引起的,在 CUBAM 突变体中,内吞作用受到强烈抑制,而在这些高度活跃的细胞中外吐作用增强。值得注意的是,通过 Megalin/LRP2 或 Rab5 表达来挽救受体介导的内吞作用仅部分恢复了 CUBAM 突变体中 SD 的定位,这表明 CUBAM 在 SD 降解和/或回收中具有特定的要求。这一发现以及报道的 CUBAM 在足细胞中的表达表明,这种内吞受体在脊椎动物 SD 重塑中可能具有意想不到的保守作用。