ESCRT-I fuels lysosomal degradation to restrict TFEB/TFE3 signaling via the Rag-mTORC1 pathway

Author:

Wróbel Marta1ORCID,Cendrowski Jarosław1ORCID,Szymańska Ewelina1ORCID,Grębowicz-Maciukiewicz Malwina1ORCID,Budick-Harmelin Noga1,Macias Matylda2,Szybińska Aleksandra2,Mazur Michał1,Kolmus Krzysztof1ORCID,Goryca Krzysztof3,Dąbrowska Michalina3,Paziewska Agnieszka4,Mikula Michał3,Miączyńska Marta1ORCID

Affiliation:

1. Laboratory of Cell Biology, International Institute of Molecular and Cell Biology, Warsaw, Poland

2. Microscopy and Cytometry Facility, International Institute of Molecular and Cell Biology, Warsaw, Poland

3. Department of Genetics, Maria Skłodowska-Curie National Research Institute of Oncology, Warsaw, Poland

4. Department of Gastroenterology, Hepatology and Clinical Oncology, Medical Center for Postgraduate Education, Warsaw, Poland

Abstract

Within the endolysosomal pathway in mammalian cells, ESCRT complexes facilitate degradation of proteins residing in endosomal membranes. Here, we show that mammalian ESCRT-I restricts the size of lysosomes and promotes degradation of proteins from lysosomal membranes, including MCOLN1, a Ca2+ channel protein. The altered lysosome morphology upon ESCRT-I depletion coincided with elevated expression of genes annotated to biogenesis of lysosomes due to prolonged activation of TFEB/TFE3 transcription factors. Lack of ESCRT-I also induced transcription of cholesterol biosynthesis genes, in response to inefficient delivery of cholesterol from endolysosomal compartments. Among factors that could possibly activate TFEB/TFE3 signaling upon ESCRT-I deficiency, we excluded lysosomal cholesterol accumulation and Ca2+-mediated dephosphorylation of TFEB/TFE3. However, we discovered that this activation occurs due to the inhibition of Rag GTPase–dependent mTORC1 pathway that specifically reduced phosphorylation of TFEB at S122. Constitutive activation of the Rag GTPase complex in cells lacking ESCRT-I restored S122 phosphorylation and prevented TFEB/TFE3 activation. Our results indicate that ESCRT-I deficiency evokes a homeostatic response to counteract lysosomal nutrient starvation, that is, improper supply of nutrients derived from lysosomal degradation.

Funder

Foundation for Polish Science, TEAM

Foundation for Polish Science, HOMING

National Science Centre, Opus

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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