"V体育安卓版" Uncharged tRNA activates GCN2 by displacing the protein kinase moiety from a bipartite tRNA-binding domain
- PMID: 10983975
- DOI: "V体育2025版" 10.1016/s1097-2765(00)00028-9
Uncharged tRNA activates GCN2 by displacing the protein kinase moiety from a bipartite tRNA-binding domain
Abstract
Protein kinase GCN2 regulates translation in amino acid-starved cells by phosphorylating elF2. GCN2 contains a regulatory domain related to histidyl-tRNA synthetase (HisRS) postulated to bind multiple deacylated tRNAs as a general sensor of starvation. In accordance with this model, GCN2 bound several deacylated tRNAs with similar affinities, and aminoacylation of tRNAphe weakened its interaction with GCN2. Unexpectedly, the C-terminal ribosome binding segment of GCN2 (C-term) was required in addition to the HisRS domain for strong tRNA binding. A combined HisRS+ C-term segment bound to the isolated protein kinase (PK) domain in vitro, and tRNA impeded this interaction. An activating mutation (GCN2c-E803V) that weakens PK-C-term association greatly enhanced tRNA binding by GCN2 VSports手机版. These results provide strong evidence that tRNA stimulates the GCN2 kinase moiety by preventing an inhibitory interaction with the bipartite tRNA binding domain. .
VSports最新版本 - Publication types
- Actions (VSports最新版本)
MeSH terms
- VSports手机版 - Actions
- "V体育平台登录" Actions
- Actions (V体育2025版)
- Actions (VSports)
- "V体育官网" Actions
- VSports在线直播 - Actions
- "V体育2025版" Actions
- VSports在线直播 - Actions
Substances
- Actions (V体育2025版)
- VSports - Actions
- "VSports" Actions
LinkOut - more resources
V体育ios版 - Full Text Sources
"VSports app下载" Other Literature Sources
Molecular Biology Databases
