首页 | 本学科首页   官方微博 | 高级检索  
   检索      


Protein structure,amino acid composition and sequence determine proteome vulnerability to oxidation‐induced damage
Authors:Roger L Chang  Julian A Stanley  Matthew C Robinson  Joel W Sher  Zhanwen Li  Yujia A Chan  Ashton R Omdahl  Ruddy Wattiez  Adam Godzik  Sabine Matallana&#x;Surget
Abstract:Oxidative stress alters cell viability, from microorganism irradiation sensitivity to human aging and neurodegeneration. Deleterious effects of protein carbonylation by reactive oxygen species (ROS) make understanding molecular properties determining ROS susceptibility essential. The radiation‐resistant bacterium Deinococcus radiodurans accumulates less carbonylation than sensitive organisms, making it a key model for deciphering properties governing oxidative stress resistance. We integrated shotgun redox proteomics, structural systems biology, and machine learning to resolve properties determining protein damage by γ‐irradiation in Escherichia coli and D. radiodurans at multiple scales. Local accessibility, charge, and lysine enrichment accurately predict ROS susceptibility. Lysine, methionine, and cysteine usage also contribute to ROS resistance of the D. radiodurans proteome. Our model predicts proteome maintenance machinery, and proteins protecting against ROS are more resistant in D. radiodurans. Our findings substantiate that protein‐intrinsic protection impacts oxidative stress resistance, identifying causal molecular properties.
Keywords:Deinococcus radiodurans  oxidative stress  protein carbonyl  radioresistance  structural systems biology
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号