4.6 Article

Phosphorylation-dependent substrate selectivity of protein kinase B (AKT1)

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 295, 期 24, 页码 8120-8134

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.RA119.012425

关键词

peptide array; Akt PKB; RNA metabolism; substrate specificity; protein phosphorylation; cell signaling; post-translational modification (PTM); serine; threonine protein kinase; genetic code expansion; oriented peptide array library; phosphoinositide-dependent kinase 1; phosphoseryl-tRNA synthetase; tRNASep

资金

  1. Canadian Institutes of Health Research [165985]
  2. Natural Sciences and Engineering Research Council of Canada [04282]
  3. Canadian Cancer Society Research Institute innovation Grant [704324]
  4. Canada Foundation for Innovation Grant [229917]
  5. Ontario Research Fund [229917]
  6. Canadian Breast Cancer Foundation
  7. Canada Research Chairs [229917, 232341]

向作者/读者索取更多资源

Protein kinase B (AKT1) is a central node in a signaling pathway that regulates cell survival. The diverse pathways regulated by AKT1 are communicated in the cell via the phosphorylation of perhaps more than 100 cellular substrates. AKT1 is itself activated by phosphorylation at Thr-308 and Ser-473. Despite the fact that these phosphorylation sites are biomarkers for cancers and tumor biology, their individual roles in shaping AKT1 substrate selectivity are unknown. We recently developed a method to produce AKT1 with programmed phosphorylation at either or both of its key regulatory sites. Here, we used both defined and randomized peptide libraries to map the substrate selectivity of site-specific, singly and doubly phosphorylated AKT1 variants. To globally quantitate AKT1 substrate preferences, we synthesized three AKT1 substrate peptide libraries: one based on 84 ?known? substrates and two independent and larger oriented peptide array libraries (OPALs) of ?10(11)peptides each. We found that each phospho-form of AKT1 has common and distinct substrate requirements. Compared with pAKT1(T308), the addition of Ser-473 phosphorylation increased AKT1 activities on some, but not all of its substrates. This is the first report that Ser-473 phosphorylation can positively or negatively regulate kinase activity in a substrate-dependent fashion. Bioinformatics analysis indicated that the OPAL-activity data effectively discriminate known AKT1 substrates from closely related kinase substrates. Our results also enabled predictions of novel AKT1 substrates that suggest new and expanded roles for AKT1 signaling in regulating cellular processes.

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