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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Molecular characterization of human homologs of yeast MOB1.
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Molecular characterization of human homologs of yeast MOB1.

机译:酵母MOB1的人类同源物的分子表征。

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摘要

MOB (Mps one binder) was originally identified in yeast as a regulator of mitotic exit and cytokinesis, and was later identified as a tumor suppressor and a component of an emerging Hippo-LATS tumor suppressor pathway in Drosophila (D). So far, 7 human homologs of yeast MOB (hMOB1A, 1B, 2A, 2B, 2C, 3, 4) have been identified. Although hMOB1A/B has been extensively studied, the biological features of other hMOBs are largely unknown. In addition, while hMOB1 has been reported to interact with and activate LATS (Large tumor suppressor)/Warts tumor suppressor, the functional significance of this is unknown. In this study, we have characterized, for the first time, the cellular and biochemical function of all human MOBs. By examining hMOB mRNAs expression in various human tissues, we found that hMOBs demonstrated different expression patterns. Further biochemical characterization of hMOBs showed that only hMOB1A and hMOB1B interact with both LATS1 and LATS2 in vitro and in vivo. Significantly, we have discovered that overexpression of hMOB1 in human cancer cells activated LATS activity and inhibited cell proliferation or caused apoptosis while hMOB1, targeting the plasma membrane, led to a more significant phenotype. Reciprocally, short-hairpin (sh) RNA-mediated suppression of hMOB1 causes increased cell proliferation. Our findings provided evidence that hMOB1A and hMOB1B are 2 LATS-binding proteins that may function as tumor suppressors in human cancer cells.
机译:MOB(Mps一种结合剂)最初在酵母中被鉴定为有丝分裂出口和胞质分裂的调节剂,后来被鉴定为果蝇(D)中的抑癌剂和新兴的Hippo-LATS抑癌途径的组成部分。到目前为止,已鉴定出7种酵母MOB的人类同源物(hMOB1A,1B,2A,2B,2C,3、4)。尽管已经对hMOB1A / B进行了广泛的研究,但其他hMOB的生物学特征却鲜为人知。另外,尽管已经报道hMOB1与LATS(大肿瘤抑制物)/ Warts肿瘤抑制物相互作用并激活,但其功能意义尚不清楚。在这项研究中,我们首次表征了所有人类MOB的细胞和生化功能。通过检查hMOB mRNA在各种人体组织中的表达,我们发现hMOB表现出不同的表达模式。 hMOBs的进一步生化特征表明,只有hMOB1A和hMOB1B在体外和体内都与LATS1和LATS2相互作用。重要的是,我们发现人类癌细胞中hMOB1的过度表达激活了LATS活性并抑制了细胞增殖或引起了细胞凋亡,而靶向浆膜的hMOB1导致了更为显着的表型。相反,短发夹(sh)RNA介导的hMOB1抑制作用导致细胞增殖增加。我们的发现提供了证据,证明hMOB1A和hMOB1B是2个LATS结合蛋白,可能在人类癌细胞中起抑癌作用。

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