The yeast LYST homolog Bph1 is a Rab5 effector and prevents Atg8 lipidation at endosomes

Author:

Vargas Duarte Prado1,Hardenberg Ralph2,Mari Muriel2,Walter Stefan3,Reggiori Fulvio2ORCID,Fröhlich Florian34,González Montoro Ayelén35ORCID,Ungermann Christian13ORCID

Affiliation:

1. Osnabrück University, Department of Biology/Chemistry, Biochemistry section, Barbarastrasse 13, 49076 Osnabrück, Germany

2. Department of Biomedical Sciences of Cells and Systems, University of Groningen, University Medical Center Groningen, 9700 Groningen, The Netherlands

3. Osnabrück University, Center of Cellular Nanoanalytic Osnabrück (CellNanOs), Barbarastrasse 11, 49076 Osnabrück, Germany

4. Osnabrück University, Department of Biology/Chemistry, Molecular Membrane Biology section, Barbarastrasse 13, 49076 Osnabrück, Germany

5. Osnabrück University, Department of Biology/Chemistry, Cellular Communication Laboratory, Barbarastrasse 13, 49076 Osnabrück, Germany

Abstract

ABSTRACT Lysosomes mediate degradation of macromolecules to their precursors for cellular recycling. Additionally, lysosome-related organelles mediate cell type-specific functions. Chédiak–Higashi syndrome is an autosomal, recessive disease, in which loss of the protein LYST causes defects in lysosomes and lysosome-related organelles. The molecular function of LYST, however, is largely unknown. Here, we dissected the function of the yeast LYST homolog, Bph1. We show that Bph1 is an endosomal protein and an effector of the minor Rab5 isoform Ypt52. Strikingly, bph1Δ mutant cells have lipidated Atg8 on their endosomes, which is sorted via late endosomes into the vacuole lumen under non-autophagy-inducing conditions. In agreement with this, proteomic analysis of bph1Δ vacuoles reveals an accumulation of Atg8, reduced flux via selective autophagy, and defective endocytosis. Additionally, bph1Δ cells have reduced autophagic flux under starvation conditions. Our observations suggest that Bph1 is a novel Rab5 effector that maintains endosomal functioning. When Bph1 is lost, Atg8 is lipidated at endosomes even during normal growth and ends up in the vacuole lumen. Thus, our results contribute to the understanding of the role of LYST-related proteins and associated diseases.

Funder

Deutsche Forschungsgemeinschaft

ZonMw

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

H2020 Marie Skłodowska-Curie Actions

Publisher

The Company of Biologists

Subject

Cell Biology

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