The GTPase activating protein Gyp7 regulates Rab7/Ypt7 activity on late endosomes

Author:

Füllbrunn Nadia12ORCID,Nicastro Raffaele3ORCID,Mari Muriel4ORCID,Griffith Janice5,Herrmann Eric6ORCID,Rasche René6ORCID,Borchers Ann-Christin1ORCID,Auffarth Kathrin1ORCID,Kümmel Daniel6ORCID,Reggiori Fulvio45ORCID,De Virgilio Claudio3ORCID,Langemeyer Lars12ORCID,Ungermann Christian12ORCID

Affiliation:

1. Biochemistry Section, Osnabrück University 1 Department of Biology/Chemistry, , Osnabrück, Germany

2. Center of Cellular Nanoanalytics, Osnabrück University 2 , Osnabrück, Germany

3. University of Fribourg 3 Department of Biology, , Fribourg, Switzerland

4. Aarhus University 4 Department of Biomedicine, , Aarhus, Denmark

5. University Medical Center Utrecht 5 Department of Cell Biology, , Utrecht, Netherlands

6. Institute of Biochemistry, University of Münster 6 , Münster, Germany

Abstract

Organelles of the endomembrane system contain Rab GTPases as identity markers. Their localization is determined by guanine nucleotide exchange factors (GEFs) and GTPase activating proteins (GAPs). It remains largely unclear how these regulators are specifically targeted to organelles and how their activity is regulated. Here, we focus on the GAP Gyp7, which acts on the Rab7-like Ypt7 protein in yeast, and surprisingly observe the protein exclusively in puncta proximal to the vacuole. Mistargeting of Gyp7 to the vacuole strongly affects vacuole morphology, suggesting that endosomal localization is needed for function. In agreement, efficient endolysosomal transport requires Gyp7. In vitro assays reveal that Gyp7 requires a distinct lipid environment for membrane binding and activity. Overexpression of Gyp7 concentrates Ypt7 in late endosomes and results in resistance to rapamycin, an inhibitor of the target of rapamycin complex 1 (TORC1), suggesting that these late endosomes are signaling endosomes. We postulate that Gyp7 is part of regulatory machinery involved in late endosome function.

Funder

Deutsche Forschungsgemeinschaft

Swiss National Science Foundation

Open Competition ENW-KLEIN

Novo Nordisk Foundation

Universitätsbibliothek Osnabrück

Publisher

Rockefeller University Press

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