首页> 外文OA文献 >Aberrant Overexpression of the Rgl2 Ral Small GTPase-specific Guanine Nucleotide Exchange Factor Promotes Pancreatic Cancer Growth through Ral-dependent and Ral-independent Mechanisms*
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Aberrant Overexpression of the Rgl2 Ral Small GTPase-specific Guanine Nucleotide Exchange Factor Promotes Pancreatic Cancer Growth through Ral-dependent and Ral-independent Mechanisms*

机译:Rgl2 Ral GTPase特异性鸟嘌呤核苷酸交换因子的异常过表达通过Ral依赖性和Ral依赖性机制促进胰腺癌的生长*

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摘要

Our recent studies established essential and distinct roles for RalA and RalB small GTPase activation in K-Ras mutant pancreatic ductal adenocarcinoma (PDAC) cell line tumorigencity, invasion, and metastasis. However, the mechanism of Ral GTPase activation in PDAC has not been determined. There are four highly related mammalian RalGEFs (RalGDS, Rgl1, Rgl2, and Rgl3) that can serve as Ras effectors. Whether or not they share distinct or overlapping functions in K-Ras-mediated growth transformation has not been explored. We found that plasma membrane targeting to mimic persistent Ras activation enhanced the growth-transforming activities of RalGEFs. Unexpectedly, transforming activity did not correlate directly with total cell steady-state levels of Ral activation. Next, we observed elevated Rgl2 expression in PDAC tumor tissue and cell lines. Expression of dominant negative Ral, which blocks RalGEF function, as well as interfering RNA suppression of Rgl2, reduced PDAC cell line steady-state Ral activity, growth in soft agar, and Matrigel invasion. Surprisingly, the effect of Rgl2 on anchorage-independent growth could not be rescued by constitutively activated RalA, suggesting a novel Ral-independent function for Rgl2 in transformation. Finally, we determined that Rgl2 and RalB both localized to the leading edge, and this localization of RalB was dependent on endogenous Rgl2 expression. In summary, our observations support nonredundant roles for RalGEFs in Ras-mediated oncogenesis and a key role for Rgl2 in Ral activation and Ral-independent PDAC growth.
机译:我们最近的研究确立了RalA和RalB小GTP酶激活在K-Ras突变型胰腺导管腺癌(PDAC)细胞系的致癌性,侵袭和转移中的重要作用和独特作用。但是,尚未确定PDAC中Ral GTPase激活的机制。有四种高度相关的哺乳动物RalGEF(RalGDS,Rgl1,Rgl2和Rgl3)可以用作Ras效应子。在K-Ras介导的生长转化中,它们是否共享不同的功能或重叠的功能尚未得到研究。我们发现质膜靶向模仿持久性Ras激活增强了RalGEFs的生长转化活性。出乎意料的是,转化活性与Ral活化的总细胞稳态水平没有直接相关。接下来,我们观察到PDAC肿瘤组织和细胞系中Rgl2表达升高。显性负性Ral的表达会阻断RalGEF的功能,并干扰RNA对Rgl2的抑制,从而降低PDAC细胞系稳态Ral活性,软琼脂的生长和基质胶的侵袭。出人意料的是,Rgl2对锚定非依赖性生长的影响无法通过组成性激活的RalA挽救,这提示Rgl2在转化中具有新的Ral非依赖性功能。最后,我们确定Rgl2和RalB都定位在前沿,而RalB的定位取决于内源性Rgl2表达。总之,我们的观察结果支持RalGEF在Ras介导的肿瘤发生中的非冗余作用,以及Rgl2在Ral激活和非Ral依赖性PDAC生长中的关键作用。

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