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Mutant K-RAS Promotes Invasion and Metastasis in Pancreatic Cancer Through GTPase Signaling Pathways

机译:突变的K-RAS通过GTPase信号通路促进胰腺癌的侵袭和转移。

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Pancreatic ductal adenocarcinoma is one of the most aggressive malignancies, characterized by the local invasion into surrounding tissues and early metastasis to distant organs. Oncogenic mutations of the K-RAS gene occur in more than 90% of human pancreatic cancers. The goal of this study was to investigate the functional significance and downstream effectors of mutant K-RAS oncogene in the pancreatic cancer invasion and metastasis. We applied the homologous recombination technique to stably disrupt K-RAS oncogene in the human pancreatic cell line MiaPaCa-2, which carries the mutant K-RASG12C oncogene in both alleles. Using in vitro assays, we found that clones with disrupted mutant K-RAS gene exhibited low RAS activity, reduced growth rates, increased sensitivity to the apoptosis inducing agents, and suppressed motility and invasiveness. In vivo assays showed that clones with decreased RAS activity had reduced tumor formation ability in mouse xenograft model and increased survival rates in the mouse orthotopic pancreatic cancer model. We further examined molecular pathways downstream of mutant K-RAS and identified RhoA GTP activating protein 5, caveolin-1, and RAS-like small GTPase A (RalA) as key effector molecules, which control mutant K-RAS-dependent migration and invasion in MiaPaCa-2 cells. Our study provides rational for targeting RhoA and RalA GTPase signaling pathways for inhibition of pancreatic cancer metastasis.
机译:胰腺导管腺癌是最具侵袭性的恶性肿瘤之一,其特征是局部浸润到周围组织中以及早期转移到远处器官。 K-RAS基因的致癌突变发生在90%以上的人类胰腺癌中。这项研究的目的是调查突变K-RAS癌基因在胰腺癌侵袭和转移中的功能意义和下游效应物。我们应用同源重组技术稳定破坏人胰腺细胞系MiaPaCa-2中的K-RAS癌基因,该基因在两个等位基因中均携带突变K-RASG12C癌基因。使用体外试验,我们发现具有突变的突变K-RAS基因的克隆表现出较低的RAS活性,降低的生长速率,对凋亡诱导剂的敏感性增加以及运动性和侵袭性受到抑制。体内试验表明,RAS活性降低的克隆在小鼠异种移植模型中的肿瘤形成能力降低,在小鼠原位胰腺癌模型中的存活率提高。我们进一步检查了突变K-RAS下游的分子途径,并确定了RhoA GTP活化蛋白5,caveolin-1和RAS样小GTPase A(RalA)作为关键效应分子,它们控制着突变K-RAS依赖的迁移和侵袭。 MiaPaCa-2细胞。我们的研究为靶向RhoA和RalA GTPase信号通路抑制胰腺癌转移提供了合理的方法。

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