Rana Meenakshi, Lachmann Jens, Ungermann Christian
Biochemistry Section, Department of Biology/Chemistry, University of Osnabrück, 49076 Osnabrück, Germany.
Biochemistry Section, Department of Biology/Chemistry, University of Osnabrück, 49076 Osnabrück, Germany
Mol Biol Cell. 2015 Jul 1;26(13):2535-49. doi: 10.1091/mbc.E15-02-0062. Epub 2015 May 13.
Transport within the endocytic pathway depends on a consecutive function of the endosomal Rab5 and the late endosomal/lysosomal Rab7 GTPases to promote membrane recycling and fusion in the context of endosomal maturation. We previously identified the hexameric BLOC-1 complex as an effector of the yeast Rab5 Vps21, which also recruits the GTPase-activating protein (GAP) Msb3. This raises the question of when Vps21 is inactivated on endosomes. We provide evidence for a Rab cascade in which activation of the Rab7 homologue Ypt7 triggers inactivation of Vps21. We find that the guanine nucleotide exchange factor (GEF) of Ypt7 (the Mon1-Ccz1 complex) and BLOC-1 both localize to the same endosomes. Overexpression of Mon1-Ccz1, which generates additional Ypt7-GTP, or overexpression of activated Ypt7 promotes relocalization of Vps21 from endosomes to the endoplasmic reticulum (ER), which is indicative of Vps21 inactivation. This ER relocalization is prevented by loss of either BLOC-1 or Msb3, but it also occurs in mutants lacking endosome-vacuole fusion machinery such as the HOPS tethering complex, an effector of Ypt7. Importantly, BLOC-1 interacts with the HOPS on vacuoles, suggesting a direct Ypt7-dependent cross-talk. These data indicate that efficient Vps21 recycling requires both Ypt7 and endosome-vacuole fusion, thus suggesting extended control of a GAP cascade beyond Rab interactions.
内吞途径中的运输依赖于内体Rab5和晚期内体/溶酶体Rab7 GTP酶的连续作用,以在内体成熟的背景下促进膜回收和融合。我们之前鉴定出六聚体BLOC-1复合物是酵母Rab5 Vps21的效应器,它还募集GTP酶激活蛋白(GAP)Msb3。这就提出了Vps21在内体上何时失活的问题。我们提供了一个Rab级联的证据,其中Rab7同源物Ypt7的激活触发了Vps21的失活。我们发现Ypt7的鸟嘌呤核苷酸交换因子(GEF)(Mon1-Ccz1复合物)和BLOC-1都定位于相同的内体。Mon1-Ccz1的过表达会产生额外的Ypt7-GTP,或者激活的Ypt7的过表达会促进Vps21从内体重新定位到内质网(ER),这表明Vps21失活。BLOC-1或Msb3的缺失会阻止这种ER重新定位,但它也会在缺乏内体-液泡融合机制的突变体中发生,如HOPS拴系复合物,它是Ypt7的效应器。重要的是,BLOC-1与液泡上的HOPS相互作用,表明存在直接的Ypt7依赖性串扰。这些数据表明,有效的Vps21回收需要Ypt7和内体-液泡融合,因此表明对GAP级联的控制超出了Rab相互作用的范围。