4.8 Article

PTP4A2 promotes lysophagy by dephosphorylation of VCP/p97 at Tyr805

期刊

AUTOPHAGY
卷 19, 期 5, 页码 1562-1581

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TAYLOR & FRANCIS INC
DOI: 10.1080/15548627.2022.2140558

关键词

Autophagy; dephosphorylation; ELDR complex; lysosome; PLAA; PRL phosphatase; UBXN6; VCP

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Overexpression of PTP4A phosphatases is associated with advanced cancers and their biological functions are not fully understood. In this study, we identified VCP/p97 as a substrate of PTP4A2. PTP4A2 dephosphorylates VCP at Tyr805, allowing the association of VCP with its cofactors in the ELDR complex, which is involved in lysophagy and lysosomal homeostasis. Deletion of Ptp4a2 disrupts lysosomal homeostasis and impairs recovery from acute kidney injury.
Overexpression of PTP4A phosphatases are associated with advanced cancers, but their biological functions are far from fully understood due to limited knowledge about their physiological substrates. VCP is implicated in lysophagy via collaboration with specific cofactors in the ELDR complex. However, how the ELDR complex assembly is regulated has not been determined. Moreover, the functional significance of the penultimate and conserved Tyr805 phosphorylation in VCP has not been established. Here, we use an unbiased substrate trapping and mass spectrometry approach and identify VCP/p97 as a bona fide substrate of PTP4A2. Biochemical studies show that PTP4A2 dephosphorylates VCP at Tyr805, enabling the association of VCP with its C-terminal cofactors UBXN6/UBXD1 and PLAA, which are components of the ELDR complex responsible for lysophagy, the autophagic clearance of damaged lysosomes. Functionally, PTP4A2 is required for cellular homeostasis by promoting lysophagy through facilitating ELDR-mediated K48-linked ubiquitin conjugate removal and autophagosome formation on the damaged lysosomes. Deletion of Ptp4a2 in vivo compromises the recovery of glycerol-injection induced acute kidney injury due to impaired lysophagy and sustained lysosomal damage. Taken together, our data establish PTP4A2 as a critical regulator of VCP and uncover an important role for PTP4A2 in maintaining lysosomal homeostasis through dephosphorylation of VCP at Tyr805. Our study suggests that PTP4A2 targeting could be a potential therapeutic approach to treat cancers and other degenerative diseases by modulating lysosomal homeostasis and macroautophagy/autophagy.

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