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Myo9b is a key player in SLIT/ROBO-mediated lung tumor suppression

机译:Myo9b是SLIT / ROBO介导的肺肿瘤抑制的关键因素

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摘要

Emerging evidence indicates that the neuronal guidance molecule SLIT plays a role in tumor suppression, as SLIT-encoding genes are inactivated in several types of cancer, including lung cancer; however, it is not clear how SLIT functions in lung cancer. Here, our data show that SLIT inhibits cancer cell migration by activating RhoA and that myosin 9b (Myo9b) is a ROBO-interacting protein that suppresses RhoA activity in lung cancer cells. Structural analyses revealed that the RhoGAP domain of Myo9b contains a unique patch that specifically recognizes RhoA. We also determined that the ROBO intracellular domain interacts with the Myo9b RhoGAP domain and inhibits its activity; therefore, SLIT-dependent activation of RhoA is mediated by ROBO inhibition of Myo9b. In a murine model, compared with control lung cancer cells, SLIT-expressing cells had a decreased capacity for tumor formation and lung metastasis. Evaluation of human lung cancer and adjacent nontumor tissues revealed that Myo9b is upregulated in the cancer tissue. Moreover, elevated Myo9b expression was associated with lung cancer progression and poor prognosis. Together, our data identify Myo9b as a key player in lung cancer and as a ROBO-interacting protein in what is, to the best of our knowledge, a newly defined SLIT/ROBO/Myo9b/RhoA signaling pathway that restricts lung cancer progression and metastasis. Additionally, our work suggests that targeting the SLIT/ROBO/Myo9b/RhoA pathway has potential as a diagnostic and therapeutic strategy for lung cancer.
机译:新兴证据表明神经元指导分子SLIT在肿瘤抑制中起作用,因为SLIT编码基因在包括肺癌在内的多种癌症中均失活。但是,尚不清楚SLIT在肺癌中的功能。在这里,我们的数据表明SLIT通过激活RhoA抑制癌细胞迁移,而肌球蛋白9b(Myo9b)是一种ROBO相互作用蛋白,可抑制肺癌细胞中RhoA的活性。结构分析表明,Myo9b的RhoGAP域包含一个独特的补丁,可以特异性识别RhoA。我们还确定了ROBO细胞内结构域与Myo9b RhoGAP结构域相互作用并抑制了其活性。因此,SLIT依赖的RhoA激活是由ROBO抑制Myo9b介导的。在鼠模型中,与对照肺癌细胞相比,表达SLIT的细胞的肿瘤形成和肺转移能力降低。对人肺癌和邻近的非肿瘤组织的评估显示,Myo9b在癌组织中上调。此外,Myo9b表达升高与肺癌进展和不良预后有关。在一起,我们的数据确定Myo9b是肺癌的关键参与者,并且是ROBO相互作用蛋白,据我们所知,这是一个新定义的SLIT / ROBO / Myo9b / RhoA信号传导途径,可限制肺癌的进展和转移。此外,我们的工作表明,靶向SLIT / ROBO / Myo9b / RhoA途径作为肺癌的诊断和治疗策略具有潜力。

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