RUFY1 binds Arl8b and mediates endosome-to-TGN CI-M6PR retrieval for cargo sorting to lysosomes

Author:

Rawat Shalini1ORCID,Chatterjee Dhruba1,Marwaha Rituraj1,Charak Gitanjali1,Kumar Gaurav2,Shaw Shrestha1,Khatter Divya1,Sharma Sheetal2,de Heus Cecilia3ORCID,Liv Nalan3ORCID,Klumperman Judith3ORCID,Tuli Amit2ORCID,Sharma Mahak1ORCID

Affiliation:

1. Department of Biological Sciences, Indian Institute of Science Education and Research Mohali (IISERM), Punjab, India 1

2. Division of Cell Biology and Immunology, CSIR-Institute of Microbial Technology (IMTECH), Chandigarh, India 2

3. Section Cell Biology, Center for Molecular Medicine, University Medical Center Utrecht, Utrecht, Netherlands 3

Abstract

Arl8b, an Arf-like GTP-binding protein, regulates cargo trafficking and positioning of lysosomes. However, it is unknown whether Arl8b regulates lysosomal cargo sorting. Here, we report that Arl8b binds to the Rab4 and Rab14 interaction partner, RUN and FYVE domain-containing protein (RUFY) 1, a known regulator of cargo sorting from recycling endosomes. Arl8b determines RUFY1 endosomal localization through regulating its interaction with Rab14. RUFY1 depletion led to a delay in CI-M6PR retrieval from endosomes to the TGN, resulting in impaired delivery of newly synthesized hydrolases to lysosomes. We identified the dynein-dynactin complex as an RUFY1 interaction partner, and similar to a subset of activating dynein adaptors, the coiled-coil region of RUFY1 was required for interaction with dynein and the ability to mediate dynein-dependent organelle clustering. Our findings suggest that Arl8b and RUFY1 play a novel role on recycling endosomes, from where this machinery regulates endosomes to TGN retrieval of CI-M6PR and, consequently, lysosomal cargo sorting.

Funder

Indian Institute of Science Education and Research Mohali

Council of Scientific and Industrial Research

The Wellcome Trust DBT India Alliance

ZonMW TOP

National Roadmap for Large-Scale Research Infrastructure

Dutch Research Council

Publisher

Rockefeller University Press

Subject

Cell Biology

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