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RGS19 inhibits oncogene-induced neoplastic transformation.

机译:RGS19抑制癌基因诱导的肿瘤转化。

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摘要

Many growth factors stimulate cell proliferation through mitogenic pathways such as the Ras/Raf/MEK/ERK cascade. Defective Ras signaling has long been associated with cancer progression and maintenance. Recently, numerous RGS proteins such as RGS1, RGS2, RGS4, RGS6, RGS17 and RGS19 have been shown to regulate cell proliferation, differentiation as well as cancer progression. The RGS proteins deactivate heterotrimeric G proteins rather than the Ras-like small GTPases. RGS19, also named as Galpha-interacting protein (GAIP), is a RGS protein which acts as a GTPase activating protein (GAP) for Galphai/o and Galphaq subunits. Being a RGS protein with multiple functional domains, RGS19 is capable of interacting with a variety of signaling molecules including those beyond G protein signaling. For instance, RGS19 binds to GIPN (GAIP-interacting N-terminal) and GIPC (GAIP-interacting C-terminal) to regulate protein degradation and growth factor signaling, respectively. Given that RGS19 stimulated cell proliferation in HEK 293 cells and exhibited a severely impaired Ras/Raf/MEK/ERK signaling, it would be extremely interesting to test the role of RGS19 in tumorigenesis, in terms of whether it has oncogenic potential or tumor suppressive effect.;In this study, upon coexpression of RGS19, but not RGSZ1 (which belongs to the same subfamily as RGS19, and shares a high sequence homology) or RasGAP (a well-defined GAP protein for Ras), all of the hallmarkers of neoplastic transformation induced by oncogenic RasGV (G12V mutant), including an increased cell growth rate, foci formation, anchorage-independent growth, and tumorigenesis in nude mice were significantly suppressed. Additionally, the knock down of endogenous RGS19 significantly enhanced the tumorigenic ability of human lung cancer H1299 cells. Moreover, RGS19 significantly suppressed oncogenic Src (Y527F mutant)-induced tumorigenesis through attenuation of Src, Ras, Jak activity by forming a complex in a Src kinase activity-dependent manner. Furthermore, the Ras/Raf/MEK/ERK signaling, which plays a key role in oncogenic Ras-mediated carcinogenesis, was significantly impaired by RGS19. Taken together, these results suggest that RGS19 specifically inhibited oncogene-induced neoplastic transformation both in vitro and in vivo , as well as attenuated Ras/Raf/MEK/ERK and Src/Jak signaling. Other than the tumor-suppressive effect on oncogene-mediated transformation, RGS19 enhanced the growth rate of NIH3T3 cells, but not for RGSZ1. RGS19 appeared to participate in the proliferation of human cancer cells, since the knock down of endogenous RGS19 significantly reduced the growth rate of H1299 and HeLa cells. Interestingly, proteasome inhibitor MG132 and Lactacystin inhibited the degradation of both RGS19 and RGSZ1. The pull down of RGS19 and RGSZ1 resulted in the co-immunoprecipitation of poly-ubiquitin, while the presence of xp-GIPN did not affect the degradation of RGS19. Thus RGS19 was degraded through an ubiquitin-dependent proteasome pathway, but GIPN was not involved in the degradation of RGS19.;The present study provided a highly interesting finding that RGS19, a negative regulator of G protein signaling, has inhibitory effect on oncogene-mediated neoplastic transformation. These results support the notion that RGS proteins are multi-functional and they do not simply serve as GAPs for Galpha proteins.
机译:许多生长因子通过有丝分裂途径(如Ras / Raf / MEK / ERK级联反应)刺激细胞增殖。长期以来,有缺陷的Ras信号传导与癌症的进展和维持有关。最近,许多RGS蛋白,如RGS1,RGS2,RGS4,RGS6,RGS17和RGS19已显示出调节细胞增殖,分化以及癌症进展的能力。 RGS蛋白使异源三聚体G蛋白失活,而不是像Ras一样的小GTPases失活。 RGS19,也称为Galpha相互作用蛋白(GAIP),是一种RGS蛋白,可充当Galphai / o和Galphaq亚基的GTPase激活蛋白(GAP)。作为具有多个功能域的RGS蛋白,RGS19能够与多种信号分子相互作用,包括G蛋白信号以外的信号分子。例如,RGS19与GIPN(与GAIP相互作用的N端)和GIPC(与GAIP相互作用的C端)结合,分别调节蛋白质降解和生长因子信号传导。鉴于RGS19刺激HEK 293细胞中的细胞增殖并显示出Ras / Raf / MEK / ERK信号转导严重受损,测试RGS19在肿瘤发生中的作用非常有意思,就其是否具有致癌潜力或抑癌作用而言。;在这项研究中,共表达RGS19,但不表达RGSZ1(与RGS19属于同一亚家族,并具有高序列同源性)或RasGAP(Ras的明确GAP蛋白)共表达,都是肿瘤的标志RasGV(G12V突变)致癌的RasGV诱导的转化,包括增加的细胞生长速度,病灶形成,锚定非依赖性生长和裸鼠的肿瘤发生均得到了显着抑制。另外,敲除内源性RGS19显着增强了人肺癌H1299细胞的致瘤能力。此外,RGS19通过以Src激酶活性依赖性方式形成复合物,通过减弱Src,Ras,Jak活性显着抑制致癌Src(Y527F突变体)诱导的肿瘤发生。此外,在致癌性Ras介导的致癌作用中起关键作用的Ras / Raf / MEK / ERK信号传导受到RGS19的显着损害。综上所述,这些结果表明RGS19在体外和体内都特异性抑制癌基因诱导的肿瘤转化,以及减弱的Ras / Raf / MEK / ERK和Src / Jak信号传导。除了对癌基因介导的转化具有肿瘤抑制作用外,RGS19增强了NIH3T3细胞的生长速率,但对RGSZ1却没有。 RGS19似乎参与了人类癌细胞的增殖,因为内源性RGS19的敲低显着降低了H1299和HeLa细胞的生长速度。有趣的是,蛋白酶体抑制剂MG132和Lactacystin抑制RGS19和RGSZ1的降解。 RGS19和RGSZ1的下拉导致多泛素的共免疫沉淀,而xp-GIPN的存在并不影响RGS19的降解。因此,RGS19通过遍在蛋白依赖性蛋白酶体途径降解,但GIPN并未参与RGS19的降解。本研究提供了一个非常有趣的发现,即RGS19是G蛋白信号的负调节剂,对癌基因介导的抑制作用肿瘤转化。这些结果支持了RGS蛋白具有多功能性,并且它们不仅仅充当Galpha蛋白的GAP的观点。

著录项

  • 作者

    Wang, Yingchun.;

  • 作者单位

    Hong Kong University of Science and Technology (Hong Kong).;

  • 授予单位 Hong Kong University of Science and Technology (Hong Kong).;
  • 学科 Chemistry Biochemistry.;Biology Cell.;Health Sciences Oncology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 227 p.
  • 总页数 227
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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