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A Rab3a-dependent complex essential for lysosome positioning and plasma membrane repair.


ABSTRACT: Lysosome exocytosis plays a major role in resealing plasma membrane (PM) disruptions. This process involves two sequential steps. First, lysosomes are recruited to the periphery of the cell and then fuse with the damaged PM. However, the trafficking molecular machinery involved in lysosome exocytosis and PM repair (PMR) is poorly understood. We performed a systematic screen of the human Rab family to identify Rabs required for lysosome exocytosis and PMR. Rab3a, which partially localizes to peripheral lysosomes, was one of the most robust hits. Silencing of Rab3a or its effector, synaptotagmin-like protein 4a (Slp4-a), leads to the collapse of lysosomes to the perinuclear region and inhibition of PMR. Importantly, we have also identified a new Rab3 effector, nonmuscle myosin heavy chain IIA, as part of the complex formed by Rab3a and Slp4-a that is responsible for lysosome positioning at the cell periphery and lysosome exocytosis.

SUBMITTER: Encarnacao M 

PROVIDER: S-EPMC4915190 | biostudies-literature | 2016 Jun

REPOSITORIES: biostudies-literature

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A Rab3a-dependent complex essential for lysosome positioning and plasma membrane repair.

Encarnação Marisa M   Espada Lília L   Escrevente Cristina C   Mateus Denisa D   Ramalho José J   Michelet Xavier X   Santarino Inês I   Hsu Victor W VW   Brenner Michael B MB   Barral Duarte C DC   Vieira Otília V OV  

The Journal of cell biology 20160601 6


Lysosome exocytosis plays a major role in resealing plasma membrane (PM) disruptions. This process involves two sequential steps. First, lysosomes are recruited to the periphery of the cell and then fuse with the damaged PM. However, the trafficking molecular machinery involved in lysosome exocytosis and PM repair (PMR) is poorly understood. We performed a systematic screen of the human Rab family to identify Rabs required for lysosome exocytosis and PMR. Rab3a, which partially localizes to peri  ...[more]

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2019-11-06 | GSE106928 | GEO