Department of Biochemistry and Molecular Biology and the Eppley Cancer Center, University of Nebraska Medical Center, Omaha, NE 68198-5870, USA.
Exp Cell Res. 2010 Mar 10;316(5):859-74. doi: 10.1016/j.yexcr.2009.11.007. Epub 2009 Nov 17.
In several invertebrate organisms, the Sec1p/Munc18-like protein Vps45 interacts with the divalent Rab4/Rab5 effector, Rabenosyn-5 and carries out multiple functions in the endocytic/secretory pathways. In mammalian cells, Vps45 and Rabenosyn-5 also interact, but the molecular characterization of this binding, and the functional relationship between these two proteins has not been well defined. Here we identify a novel sequence within Rabenosyn-5 required for its interaction with Vps45. We demonstrate that hVps45-depletion decreases expression of Rabenosyn-5, likely resulting from Rabenosyn-5 degradation through the proteasomal pathway. Furthermore, we demonstrate that similar to Rabenosyn-5-depletion, hVps45-depletion causes impaired recycling of beta1 integrins, and a subsequent delay in human fibroblast cell migration on fibronectin-coated plates. Moreover, beta1 integrin recycling could be rescued by reintroduction of siRNA-resistant wild-type Rabenosyn-5, but not a mutant deficient in Vps45 binding. However, unlike Rabenosyn-5-depletion, which induces Golgi fragmentation and decreased recruitment of sorting nexin retromer subunits to the Golgi, hVps45-depletion induces Golgi condensation and accumulation of retromer subunits in the vicinity of the Golgi. In part, these phenomena could be attributed to reduced Syntaxin16 expression and altered localization of both Syntaxin16 and Syntaxin6 upon Vps45-depletion. Overall, these findings implicate hVps45 and Rabenosyn-5 in post early endosome transport, and we propose that their interaction serves as a nexus to promote bidirectional transport along the endosome-to-recycling compartment and endosome-to-Golgi axes.
在几种无脊椎动物中,Sec1p/Munc18 样蛋白 Vps45 与二价 Rab4/Rab5 效应物 Rabenosyn-5 相互作用,并在胞吞/分泌途径中发挥多种功能。在哺乳动物细胞中,Vps45 和 Rabenosyn-5 也相互作用,但这种结合的分子特征以及这两种蛋白质之间的功能关系尚未得到很好的定义。在这里,我们确定了 Rabenosyn-5 中一个新的序列,该序列是其与 Vps45 相互作用所必需的。我们证明 hVps45 的耗竭会降低 Rabenosyn-5 的表达,这可能是由于 Rabenosyn-5 通过蛋白酶体途径降解所致。此外,我们证明类似于 Rabenosyn-5 的耗竭,hVps45 的耗竭会导致β1 整合素的回收受损,随后人成纤维细胞在纤维连接蛋白包被的平板上的迁移延迟。此外,β1 整合素的回收可以通过引入 siRNA 抗性野生型 Rabenosyn-5 来挽救,但不能通过缺乏与 Vps45 结合的突变体来挽救。然而,与 Rabenosyn-5 耗竭诱导的高尔基体碎片化和分选连接蛋白 retromer 亚基向高尔基体募集减少不同,hVps45 耗竭诱导高尔基体浓缩和 retromer 亚基在高尔基体附近积累。在某种程度上,这些现象可以归因于 Syntaxin16 表达减少以及 Vps45 耗竭后 Syntaxin16 和 Syntaxin6 的定位改变。总的来说,这些发现表明 hVps45 和 Rabenosyn-5 参与了早期内体后运输,我们提出它们的相互作用作为促进沿着内体-回收隔室和内体-高尔基体轴的双向运输的枢纽。