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S-Nitrosylation of cathepsin B affects autophagic flux and accumulation of protein aggregates in neurodegenerative disorders.
Kim, Ki-Ryeong; Cho, Eun-Jung; Eom, Jae-Won; Oh, Sang-Seok; Nakamura, Tomohiro; Oh, Chang-Ki; Lipton, Stuart A; Kim, Yang-Hee.
Afiliação
  • Kim KR; Department of Integrative Bioscience and Biotechnology, Sejong University, Seoul, 05006, Republic of Korea.
  • Cho EJ; Department of Integrative Bioscience and Biotechnology, Sejong University, Seoul, 05006, Republic of Korea.
  • Eom JW; Department of Integrative Bioscience and Biotechnology, Sejong University, Seoul, 05006, Republic of Korea.
  • Oh SS; Department of Integrative Bioscience and Biotechnology, Sejong University, Seoul, 05006, Republic of Korea.
  • Nakamura T; Neurodegeneration New Medicines Center, Departments of Molecular Medicine and Neuroscience, The Scripps Research Institute, La Jolla, CA, 92037, USA.
  • Oh CK; Neurodegeneration New Medicines Center, Departments of Molecular Medicine and Neuroscience, The Scripps Research Institute, La Jolla, CA, 92037, USA.
  • Lipton SA; Neurodegeneration New Medicines Center, Departments of Molecular Medicine and Neuroscience, The Scripps Research Institute, La Jolla, CA, 92037, USA. slipton@scripps.edu.
  • Kim YH; Department of Neurosciences, University of California, San Diego, School of Medicine, La Jolla, CA, 92093, USA. slipton@scripps.edu.
Cell Death Differ ; 29(11): 2137-2150, 2022 11.
Article em En | MEDLINE | ID: mdl-35462559
ABSTRACT
Protein S-nitrosylation is known to regulate enzymatic function. Here, we report that nitric oxide (NO)-related species can contribute to Alzheimer's disease (AD) by S-nitrosylating the lysosomal protease cathepsin B (forming SNO-CTSB), thereby inhibiting CTSB activity. This posttranslational modification inhibited autophagic flux, increased autolysosomal vesicles, and led to accumulation of protein aggregates. CA-074Me, a CTSB chemical inhibitor, also inhibited autophagic flux and resulted in accumulation of protein aggregates similar to the effect of SNO-CTSB. Inhibition of CTSB activity also induced caspase-dependent neuronal apoptosis in mouse cerebrocortical cultures. To examine which cysteine residue(s) in CTSB are S-nitrosylated, we mutated candidate cysteines and found that three cysteines were susceptible to S-nitrosylation. Finally, we observed an increase in SNO-CTSB in both 5XFAD transgenic mouse and flash-frozen postmortem human AD brains. These results suggest that S-nitrosylation of CTSB inhibits enzymatic activity, blocks autophagic flux, and thus contributes to AD pathogenesis.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Limite: Animals / Humans Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Limite: Animals / Humans Idioma: En Ano de publicação: 2022 Tipo de documento: Article