Integrative Proteomics and Phosphoproteomics Profiling Reveals Dynamic Signaling Networks and Bioenergetics Pathways Underlying T Cell Activation

被引:273
作者
Tan, Haiyan [1 ,2 ,3 ]
Yang, Kai [4 ]
Li, Yuxin [1 ,2 ,3 ]
Shaw, Timothy I. [5 ]
Wang, Yanyan [4 ]
Blanco, Daniel Bastardo [4 ,6 ]
Wang, Xusheng [3 ]
Cho, Ji-Hoon [3 ]
Wang, Hong [1 ,2 ,6 ]
Rankin, Sherri [4 ]
Guy, Cliff [4 ]
Peng, Junmin [1 ,2 ,3 ]
Chi, Hongbo [4 ]
机构
[1] St Jude Childrens Res Hosp, Dept Biol Struct, 332 N Lauderdale St, Memphis, TN 38105 USA
[2] St Jude Childrens Res Hosp, Dept Dev Neurobiol, 332 N Lauderdale St, Memphis, TN 38105 USA
[3] St Jude Childrens Res Hosp, St Jude Prote Facil, 332 N Lauderdale St, Memphis, TN 38105 USA
[4] St Jude Childrens Res Hosp, Dept Immunol, 332 N Lauderdale St, Memphis, TN 38105 USA
[5] St Jude Childrens Res Hosp, Dept Computat Biol, 332 N Lauderdale St, Memphis, TN 38105 USA
[6] Univ Tennessee, Ctr Hlth Sci, Integrated Biomed Sci Program, Memphis, TN 38163 USA
关键词
MITOCHONDRIAL BIOGENESIS; GENE-EXPRESSION; HUMAN BRAIN; INHIBITION; QUIESCENCE; DIFFERENTIATION; HOMEOSTASIS; METABOLISM; PROTEINS; PROMOTES;
D O I
10.1016/j.immuni.2017.02.010
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
The molecular circuits by which antigens activate quiescent T cells remain poorly understood. We combined temporal profiling of the whole proteome and phosphoproteome via multiplexed isobaric labeling proteomics technology, computational pipelines for integrating multi-omics datasets, and functional perturbation to systemically reconstruct regulatory networks underlying T cell activation. T cell receptors activated the T cell proteome and phosphoproteome with discrete kinetics, marked by early dynamics of phosphorylation and delayed ribosome biogenesis and mitochondrial activation. Systems biology analyses identified multiple functional modules, active kinases, transcription factors and connectivity between them, and mitochondrial pathways including mitoribosomes and complex IV. Genetic perturbation revealed physiological roles for mitochondrial enzyme COX10-mediated oxidative phosphorylation in T cell quiescence exit. Our multi-layer proteomics profiling, integrative network analysis, and functional studies define landscapes of the T cell proteome and phosphoproteome and reveal signaling and bioenergetics pathways that mediate lymphocyte exit from quiescence.
引用
收藏
页码:488 / 503
页数:16
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