Guo Miao, Zhang Yan, Wu Lehao, Sheng Ye, Zhao Jiaqi, Wang Zeyuan, Wang Huiyu, Zhang Lu, Xiao Hua
State Key Laboratory of Microbial Metabolism, Joint International Research Laboratory of Metabolic & Developmental Sciences, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai 200240, China.
School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, China.
J Proteome Res. 2023 Jul 7;22(7):2364-2376. doi: 10.1021/acs.jproteome.3c00116. Epub 2023 Jun 27.
Bombesin receptor subtype-3 (BRS3) is an orphan G-protein coupled receptor (GPCR) that is involved in a variety of pathological and physiological processes, while its biological functions and underlying regulatory mechanisms remain largely unknown. In this study, a quantitative phosphoproteomics approach was employed to comprehensively decipher the signal transductions that occurred upon intracellular BRS3 activation. The lung cancer cell line H1299-BRS3 was treated with MK-5046, an agonist of BRS3, for different durations. Harvested cellular proteins were digested and phosphopeptides were enriched by immobilized titanium (IV) ion affinity chromatography (Ti-IMAC) for label-free quantification (LFQ) analysis. A total of 11,938 phosphopeptides were identified, corresponding to 3,430 phosphoproteins and 10,820 phosphosites. Data analysis revealed that 27 phosphopeptides corresponding to six proteins were involved in the Hippo signaling pathway, which was significantly regulated by BRS3 activation. Verification experiments demonstrated that downregulation of the Hippo signaling pathway caused by BRS3 activation could induce the dephosphorylation and nucleus localization of the Yes-associated protein (YAP), and its association with cell migration was further confirmed by kinase inhibition. Our data collectively demonstrate that BRS3 activation contributes to cell migration through downregulation of the Hippo signaling pathway.
胃泌素释放肽受体亚型3(BRS3)是一种孤儿G蛋白偶联受体(GPCR),参与多种病理和生理过程,但其生物学功能和潜在调控机制仍 largely未知。在本研究中,采用定量磷酸化蛋白质组学方法全面解析细胞内BRS3激活后发生的信号转导。用BRS3激动剂MK-5046处理肺癌细胞系H1299-BRS3不同时间。收获的细胞蛋白经消化后,通过固定化钛(IV)离子亲和色谱(Ti-IMAC)富集磷酸肽,用于无标记定量(LFQ)分析。共鉴定出11938个磷酸肽,对应3430个磷酸化蛋白和10820个磷酸化位点。数据分析显示,与六种蛋白对应的27个磷酸肽参与了Hippo信号通路,该通路受BRS3激活显著调控。验证实验表明,BRS3激活导致的Hippo信号通路下调可诱导Yes相关蛋白(YAP)的去磷酸化和核定位,激酶抑制进一步证实了其与细胞迁移的关联。我们的数据共同表明,BRS3激活通过下调Hippo信号通路促进细胞迁移。