コンテンツへスキップ
Merck
  • Noise Exposures Causing Hearing Loss Generate Proteotoxic Stress and Activate the Proteostasis Network.

Noise Exposures Causing Hearing Loss Generate Proteotoxic Stress and Activate the Proteostasis Network.

Cell reports (2020-11-26)
Nopporn Jongkamonwiwat, Miguel A Ramirez, Seby Edassery, Ann C Y Wong, Jintao Yu, Tirzah Abbott, Kwang Pak, Allen F Ryan, Jeffrey N Savas
要旨

Exposure to excessive sound causes noise-induced hearing loss through complex mechanisms and represents a common and unmet neurological condition. We investigate how noise insults affect the cochlea with proteomics and functional assays. Quantitative proteomics reveals that exposure to loud noise causes proteotoxicity. We identify and confirm hundreds of proteins that accumulate, including cytoskeletal proteins, and several nodes of the proteostasis network. Transcriptomic analysis reveals that a subset of the genes encoding these proteins also increases acutely after noise exposure, including numerous proteasome subunits. Global cochlear protein ubiquitylation levels build up after exposure to excess noise, and we map numerous posttranslationally modified lysines residues. Several collagen proteins decrease in abundance, and Col9a1 specifically localizes to pillar cell heads. After two weeks of recovery, the cochlea selectively elevates the abundance of the protein synthesis machinery. We report that overstimulation of the auditory system drives a robust cochlear proteotoxic stress response.

材料
製品番号
ブランド
製品内容

Sigma-Aldrich
Triton X-100, Molecular Biology
Sigma-Aldrich
抗グルタミン受容体2抗体 細胞外 クローン6C4, clone 6C4, Chemicon®, from mouse
Sigma-Aldrich
10倍カゼイン阻止緩衝液, for Northern and Southern blotting, solution
Sigma-Aldrich
インドール-3-酢酸 ナトリウム塩, suitable for plant cell culture, BioReagent, ≥98%
Millipore
Inulin Discs, suitable for microbiology, Sterile filter paper discs impregnated with inulin