bioRxiv · 10.1101/2020.09.11.292607
mTOR S-nitrosylation inhibits autophagy and lysosomal proteolysis
Abstract
Mammalian Target of Rapamycin (mTOR) is a master regulator of autophagy and lysosomes, and its downstream kinase-dependent pathways have been extensively characterized. Here, we report an unexpected kinase-independent regulation of autophagy and lysosomes by S-nitrosylation at Cys423 position of mTOR that resulted in suppression of VPS34 and PIKfyve-dependent phosphoinositide synthesis. Physiologically, S-nitrosylation of mTOR reduced basal lysosomal proteolysis via nitric oxide synthase (NOS)-mediated synthesis of NO from lysosomal arginine precursor, a marker of cellular nutrition status. Significantly, we found increased lysosomal NOS-mTOR complexes in APP-PS1 Alzheimers disease (AD) murine model, and increased mTOR S-nitrosylation in AD patient-derived fibroblasts. Lastly, we demonstrated that pharmacological inhibition of NOS or overexpression of mTORCys423Ala mutant reversed lysosomal and autophagic dysfunction in AD patient-derived fibroblasts, suggesting novel therapeutic strategies for autophagosome-lysosomal activation.
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Tan, B. W. Q., Tan, S., Tan, B. W. L., Navakkode, S., Ng, C. Y., Yuan, S., Liang, M. C., Liu, C., Yin, S., Chai, C., Chew, K. C. M., Tai, Y. K., Sreedharan, S., Lam, Y., Liao, P., Shen, H.-M., Lim, K. L., Wong, E., Soong, T. W.. 2020-09-11. mTOR S-nitrosylation inhibits autophagy and lysosomal proteolysis. https://doi.org/10.1101/2020.09.11.292607
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