GNAS复合轨迹
克拉斯
癌症研究
胰腺癌
突变体
STK11段
生物
激酶
细胞内
细胞生物学
内分泌学
内科学
突变
生物化学
癌症
医学
基因
遗传学
作者
Krushna C. Patra,Yasutaka Kato,Yusuke Mizukami,Sebastian A. Widholz,Myriam Boukhali,Iulia Revenco,Elizabeth A. Grossman,Fei Ji,Ruslan I. Sadreyev,Andrew S. Liss,Robert A. Screaton,Kei Sakamoto,David P. Ryan,Mari Mino–Kenudson,Carlos Fernández‐del Castillo,Daniel K. Nomura,Wilhelm Haas,Nabeel Bardeesy
标识
DOI:10.1038/s41556-018-0122-3
摘要
G protein αs (GNAS) mediates receptor-stimulated cAMP signalling, which integrates diverse environmental cues with intracellular responses. GNAS is mutationally activated in multiple tumour types, although its oncogenic mechanisms remain elusive. We explored this question in pancreatic tumourigenesis where concurrent GNAS and KRAS mutations characterize pancreatic ductal adenocarcinomas (PDAs) arising from intraductal papillary mucinous neoplasms (IPMNs). By developing genetically engineered mouse models, we show that GnasR201C cooperates with KrasG12D to promote initiation of IPMN, which progress to invasive PDA following Tp53 loss. Mutant Gnas remains critical for tumour maintenance in vivo. This is driven by protein-kinase-A-mediated suppression of salt-inducible kinases (Sik1–3), associated with induction of lipid remodelling and fatty acid oxidation. Comparison of Kras-mutant pancreatic cancer cells with and without Gnas mutations reveals striking differences in the functions of this network. Thus, we uncover Gnas-driven oncogenic mechanisms, identify Siks as potent tumour suppressors, and demonstrate unanticipated metabolic heterogeneity among Kras-mutant pancreatic neoplasms. Bardeesy and colleagues show that mutant GNAS suppresses salt-inducible kinases by activating PKA, leading to lipid remodelling and pancreatic tumourigenesis
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