AI Article Synopsis

  • The small GTPase Rab5 is crucial for endocytic trafficking and animal development, but its activation mechanisms for cargo entry into early endosomes are not fully understood.* -
  • Drosophila Rabenosyn (Rbsn) acts as a Rab5 effector that connects Rab5 to the Vps45 protein, which works with syntaxin Avalanche (Avl) in early endosomes.* -
  • Mutant cells lacking Rbsn, Vps45, Avl, or Rab5 display defects in vesicle fusion, leading to loss of epithelial polarity and the potential development of tumors, indicating that this Rab5 effector plays a role as a tumor suppressor.*

Article Abstract

The small GTPase Rab5 has emerged as an important regulator of animal development, and it is essential for endocytic trafficking. However, the mechanisms that link Rab5 activation to cargo entry into early endosomes remain unclear. We show here that Drosophila Rabenosyn (Rbsn) is a Rab5 effector that bridges an interaction between Rab5 and the Sec1/Munc18-family protein Vps45, and we further identify the syntaxin Avalanche (Avl) as a target for Vps45 activity. Rbsn and Vps45, like Avl and Rab5, are specifically localized to early endosomes and are required for endocytosis. Ultrastructural analysis of rbsn, Vps45, avl, and Rab5 null mutant cells, which show identical defects, demonstrates that all four proteins are required for vesicle fusion to form early endosomes. These defects lead to loss of epithelial polarity in mutant tissues, which overproliferate to form neoplastic tumors. This work represents the first characterization of a Rab5 effector as a tumor suppressor, and it provides in vivo evidence for a Rbsn-Vps45 complex on early endosomes that links Rab5 to the SNARE fusion machinery.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2555928PMC
http://dx.doi.org/10.1091/mbc.e08-07-0716DOI Listing

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