Hoffman Huxley K, Prekeris Rytis
Department of Cell and Developmental Biology, University of Colorado Anschutz Medical Campus, Aurora, CO 80045, USA.
bioRxiv. 2023 Feb 8:2023.02.07.527563. doi: 10.1101/2023.02.07.527563.
Primary cilia are sensory cellular organelles crucial for organ development and homeostasis. Ciliogenesis in polarized epithelial cells requires Rab19-mediated clearing of apical cortical actin to allow the cilium to grow from the apically-docked basal body into the extracellular space. Loss of the lysosomal membrane-tethering HOPS complex disrupts this actin-clearing and ciliogenesis, but it remains unclear how ciliary function of HOPS relates to its canonical function in regulating late endosome-lysosome fusion. Here, we show that disruption of HOPS-dependent lysosomal fusion indirectly impairs actin-clearing and ciliogenesis by disrupting the targeting of Rab19 to the basal body. We also find that Rab19 functions in endolysosomal cargo trafficking apart from its previously-identified role in ciliogenesis. In summary, we show that inhibition of lysosomal fusion abnormally accumulates Rab19 on late endosomes, thus depleting Rab19 from the basal body and thereby disrupting Rab19-mediated actin-clearing and ciliogenesis.
Loss of HOPS-mediated lysosomal fusion indirectly blocks apical actin clearing and ciliogenesis in polarized epithelia by trapping Rab19 on late endosomes and depleting Rab19 from the basal body.
初级纤毛是对器官发育和体内平衡至关重要的感觉细胞器。极化上皮细胞中的纤毛发生需要Rab19介导的顶端皮质肌动蛋白清除,以使纤毛能够从顶端对接的基体生长到细胞外空间。溶酶体膜拴系HOPS复合体的缺失会破坏这种肌动蛋白清除和纤毛发生,但尚不清楚HOPS的纤毛功能与其在调节晚期内体-溶酶体融合中的经典功能有何关系。在这里,我们表明HOPS依赖的溶酶体融合的破坏通过破坏Rab19向基体的靶向间接损害肌动蛋白清除和纤毛发生。我们还发现,Rab19除了在纤毛发生中先前确定的作用外,还在内溶酶体货物运输中发挥作用。总之,我们表明溶酶体融合的抑制使Rab19异常积聚在晚期内体上,从而使Rab19从基体中耗尽,进而破坏Rab19介导的肌动蛋白清除和纤毛发生。
HOPS介导的溶酶体融合的丧失通过将Rab19捕获在晚期内体上并使Rab19从基体中耗尽,间接阻断极化上皮细胞中的顶端肌动蛋白清除和纤毛发生。