Department of Biology/Chemistry, Biochemistry Section, Osnabrück University, Osnabrück, Germany.
Center of Cellular Nanoanalytics Osnabrück (CellNanOs), Osnabrück University, Osnabrück, Germany.
J Cell Biol. 2021 Sep 6;220(9). doi: 10.1083/jcb.202105120. Epub 2021 Aug 12.
The eukaryotic endomembrane system consists of multiple interconnected organelles. Rab GTPases are organelle-specific markers that give identity to these membranes by recruiting transport and trafficking proteins. During transport processes or along organelle maturation, one Rab is replaced by another, a process termed Rab cascade, which requires at its center a Rab-specific guanine nucleotide exchange factor (GEF). The endolysosomal system serves here as a prime example for a Rab cascade. Along with endosomal maturation, the endosomal Rab5 recruits and activates the Rab7-specific GEF Mon1-Ccz1, resulting in Rab7 activation on endosomes and subsequent fusion of endosomes with lysosomes. In this review, we focus on the current idea of Mon1-Ccz1 recruitment and activation in the endolysosomal and autophagic pathway. We compare identified principles to other GTPase cascades on endomembranes, highlight the importance of regulation, and evaluate in this context the strength and relevance of recent developments in in vitro analyses to understand the underlying foundation of organelle biogenesis and maturation.
真核细胞的内膜系统由多个相互连接的细胞器组成。Rab GTPases 是细胞器特异性标记物,通过招募运输和转运蛋白赋予这些膜以身份。在运输过程中或沿着细胞器成熟过程中,一种 Rab 被另一种 Rab 取代,这个过程被称为 Rab 级联,它需要以 Rab 特异性鸟嘌呤核苷酸交换因子(GEF)为中心。内体溶酶体系统就是 Rab 级联的一个主要例子。随着内体的成熟,内体 Rab5 招募并激活 Rab7 特异性 GEF Mon1-Ccz1,导致 Rab7 在内涵体上激活,随后内涵体与溶酶体融合。在这篇综述中,我们重点介绍了 Mon1-Ccz1 在内体溶酶体和自噬途径中的募集和激活的当前观点。我们将已确定的原理与其他内膜系统上的 GTPase 级联进行了比较,强调了调节的重要性,并在此背景下评估了体外分析中最近的发展在理解细胞器发生和成熟的基础方面的优势和相关性。
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