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Published on: March 17, 2014
SMURF1 controls the PPP3/calcineurin complex and TFEB at a regulatory node for lysosomal biogenesis
Qin Xia1, Hanfei Zheng1, Yang Li1
1Key Laboratory of Molecular Medicine and Biological Diagnosis and Treatment (Ministry of Industry and Information Technology), School of Life Science, Beijing Institute of Technology, Beijing, China.
Abstract:
Macroautophagy/autophagy is a homeostatic process in response to multiple signaling, such as the lysosome-dependent recycling process of cellular components. Starvation-induced MTOR inactivation and PPP3/calcineurin activation were shown to promote the nuclear translocation of TFEB. However, the mechanisms via which signals from endomembrane damage are transmitted to activate PPP3/calcineurin and orchestrate autophagic responses remain unknown. This study aimed to show that autophagy regulator SMURF1 controlled TFEB nuclear import for transcriptional activation of the lysosomal biogenesis. We showed that blocking SMURF1 affected lysosomal biogenesis in response to lysosomal damage by preventing TFEB nuclear translocation. It revealed galectins recognized endolysosomal damage, and led to recruitment of SMURF1 and the PPP3/calcineurin apparatus on lysosomes. SMURF1 interacts with both LGALS3 and PPP3CB to form the LGALS3-SMURF1-PPP3/calcineurin complex. Importantly, this complex further stabilizes TFEB, thereby activating TFEB for lysosomal biogenesis. We determined that LLOMe-mediated TFEB nuclear import is dependent on SMURF1 under the condition of MTORC1 inhibition. In addition, SMURF1 is required for PPP3/calcineurin activity as a positive regulator of TFEB. SMURF1 controlled the phosphatase activity of the PPP3CB by promoting the dissociation of its autoinhibitory domain (AID) from its catalytic domain (CD). Overexpression of SMURF1 showed similar effects as the constitutive activation of PPP3CB. Thus, SMURF1, which bridges environmental stress with the core autophagosomal and autolysosomal machinery, interacted with endomembrane sensor LGALS3 and phosphatase PPP3CB to control TFEB activation.Abbreviations: ATG: autophagy-related; LLOMe: L-Leucyl-L-Leucine methyl ester; ML-SA1: mucolipin synthetic agonist 1; MTOR: mechanistic target of rapamycin kinase; PPP3CB: protein phosphatase 3 catalytic subunit beta; RPS6KB1/p70S6K: ribosomal protein S6 kinase B1; SMURF1: SMAD specific E3 ubiquitin protein ligase 1; TFEB: transcription factor EB.
Insights
Autophagy regulator SMURF1 controls lysosomal biogenesis by promoting TFEB nuclear import. SMURF1 bridges endomembrane damage signals to activate the PPP3/calcineurin-TFEB pathway for cellular repair.
Area of Science:
- Cell Biology
- Molecular Biology
- Autophagy Research
Background:
- Macroautophagy/autophagy is crucial for cellular homeostasis, involving lysosome-dependent recycling.
- Nuclear translocation of transcription factor EB (TFEB) is promoted by starvation-induced MTOR inactivation and PPP3/calcineurin activation.
- Mechanisms linking endomembrane damage to PPP3/calcineurin activation and autophagy remain unclear.
Purpose of the Study:
- To elucidate the role of autophagy regulator SMURF1 in controlling TFEB nuclear import and lysosomal biogenesis.
- To identify how endomembrane damage signals are transmitted to activate the PPP3/calcineurin-TFEB pathway.
Main Methods:
- Investigated the effect of SMURF1 inhibition on lysosomal biogenesis and TFEB translocation.
- Examined the interaction between galectins, SMURF1, and PPP3/calcineurin in response to lysosomal damage.
- Assessed TFEB nuclear import and PPP3/calcineurin activity under SMURF1 modulation.
Main Results:
- Blocking SMURF1 impaired lysosomal biogenesis and TFEB nuclear translocation upon lysosomal damage.
- Galectins recognize endolysosomal damage, recruiting SMURF1 and PPP3/calcineurin to lysosomes.
- SMURF1 forms a complex with LGALS3 and PPP3CB, stabilizing TFEB and activating lysosomal biogenesis.
- SMURF1 is essential for LLOMe-induced TFEB nuclear import (under MTORC1 inhibition) and PPP3/calcineurin activity, by dissociating the autoinhibitory domain of PPP3CB.
Conclusions:
- SMURF1 acts as a critical link between environmental stress and the autophagy machinery.
- SMURF1, in complex with LGALS3 and PPP3CB, controls TFEB activation for lysosomal biogenesis.
- SMURF1 positively regulates PPP3/calcineurin phosphatase activity, enhancing TFEB-mediated transcriptional responses.
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