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首页> 外文期刊>Seminars in cancer biology >G protein-coupled receptor kinases (GRKs) in tumorigenesis and cancer progression: GPCR regulators and signaling hubs
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G protein-coupled receptor kinases (GRKs) in tumorigenesis and cancer progression: GPCR regulators and signaling hubs

机译:G蛋白偶联受体激酶(胶卷)和癌症进展:GPCR调节剂和信号枢纽

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摘要

Increasing evidences point to G protein-coupled receptor kinases (GRKs), a subfamily of protein kinase A/G/C-like kinases, as relevant players in cancer progression, in a cell-type and tumor-specific way. Alterations in the expression and/or activity of particular GRKs have been identified in several types of tumors, and demonstrated to modulate the proliferation, survival or invasive properties of tumor cells by acting as integrating signaling nodes. GRKs are able to regulate the functionality of both G protein-coupled receptors (GPCR) and growth factor receptors and to directly control cytosolic, cytoskeletal or nuclear signaling components of pathways relevant for these processes. Furthermore, many chemokines as well as angiogenic and inflammatory factors present in the tumor microenvironment act through GPCR and other GRK-modulated signaling modules. Changes in the dosage of certain GRKs in the tumor stroma can alter tumor angiogenesis and the homing of immune cells, thus putting forward these kinases as potentially relevant modulators of the carcinoma-fibroblast-endothelial-immune cell network fostering tumor development and dissemination. A better understanding of the alterations in different GRK isoforms taking place during cancer development and metastasis in specific tumors and cell types and of its impact in signaling pathways would help to design novel therapeutic strategies.
机译:随着细胞型和肿瘤特异性的方式,增加证据点向G蛋白偶联的受体激酶(GRKS),蛋白激酶A / G / C样激酶的蛋白激酶A / G / C样激酶。在若干类型的肿瘤中鉴定了特定麦克饼表达和/或活性的改变,并证明通过用作集成信号节点来调节肿瘤细胞的增殖,存活或侵入性。胶羊能够调节G蛋白偶联受体(GPCR)和生长因子受体的功能,并直接控制与这些过程相关的途径的细胞溶质,细胞骨骼或核信号传导组分。此外,许多趋化因子以及肿瘤微环境中存在的血管生成和炎症因子通过GPCR和其他GRK调制的信号调节模块作用。肿瘤基质中某些胶囊的剂量的变化可以改变肿瘤血管生成和免疫细胞的归巢,从而使这些激酶提出作为癌细胞 - 成纤维细胞 - 内皮 - 免疫细胞网络的潜在相关调节剂,培养肿瘤发育和传播。更好地理解在癌症发育和特异性肿瘤和细胞类型中发生的不同GRK同种型的改变以及其在信号通道中的影响有助于设计新的治疗策略。

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