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首页> 外文期刊>Cellular & molecular biology letters. >Ras TRANSFORMATION OVERRIDES A PROLIFERATION DEFECT INDUCED BY Tpm3.1 KNOCKOUT
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Ras TRANSFORMATION OVERRIDES A PROLIFERATION DEFECT INDUCED BY Tpm3.1 KNOCKOUT

机译:Ras转换会覆盖Tpm3.1敲除导致的增殖缺陷

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Extensive re-organisation of the actin cytoskeleton and changes in the expression of its binding proteins is a characteristic feature of cancer cells. Previously we have shown that the tropomyosin isoform Tpm3.1, an integral component of the actin cytoskeleton in tumor cells, is required for tumor cell survival. Our objective was to determine whether cancer cells devoid of Tpm3.1 would evade the tumorgenic effects induced by H-Ras transformation. The tropomyosin isoform (Tpm) expression profile of a range of cancer cell lines (21) demonstrates that Tpm3.1 is one of the most broadly expressed Tpm isoform. Consequently, the contribution of Tpm3.1 to the transformation process was functionally evaluated. Primary embryonic fibroblasts isolated from wild type (WT) and Tpm3.1 knockout (KO) mice were transduced with retroviral vectors expressing SV40 large T antigen and an oncogenic allele of the H-Ras gene, H-RasV12, to generate immortalized and transformed WT and KO MEFs respectively. We show that Tpm3.1 is required for growth factor-independent proliferation in the SV40 large T antigen immortalized MEFs, but this requirement is overcome by H-Ras transformation. Consistent with those findings, we found that Tpm3.1 was not required for anchorage independent growth or growth of H-Ras-driven tumors in a mouse model. Finally, we show that pERK and Importin 7 protein interactions are significantly decreased in the SV40 large T antigen immortalized KO MEFs but not in the H-Ras transformed KO cells, relative to control MEFs. The data demonstrate that H-Ras transformation overrides a requirement for Tpm3.1 in growth factor-independent proliferation of immortalized MEFs. We propose that in the SV40 large T antigen immortalized MEFs, Tpm3.1 is partly responsible for the efficient interaction between pERK and Imp7 resulting in cell proliferation, but this is overidden by Ras transformation.
机译:肌动蛋白细胞骨架的广泛重组及其结合蛋白表达的变化是癌细胞的特征。先前我们已经表明,原代肌球蛋白同工型Tpm3.1是肿瘤细胞中肌动蛋白细胞骨架的组成部分,是肿瘤细胞存活所必需的。我们的目标是确定缺乏Tpm3.1的癌细胞是否能逃避H-Ras转化诱导的致瘤作用。一系列癌细胞系的原肌球蛋白同工型(Tpm)表达谱(21)证明Tpm3.1是表达最广泛的Tpm同工型之一。因此,从功能上评估了Tpm3.1对转化过程的贡献。从野生型(WT)和Tpm3.1基因敲除(KO)小鼠中分离的原代胚胎成纤维细胞用表达SV40大T抗原和H-Ras基因致癌等位基因H-RasV12的逆转录病毒载体转导,以产生永生化和转化的WT和KO MEF。我们显示,在SV40大T抗原永生化MEF中,生长因子非依赖性增殖需要Tpm3.1,但是H-Ras转化克服了这一需求。与这些发现一致,我们发现在小鼠模型中,锚​​定独立生长或H-Ras驱动的肿瘤的生长不需要Tpm3.1。最后,我们显示相对于对照MEF,在SV40大T抗原永生化的KO MEF中,pERK和Importin 7蛋白的相互作用显着降低,而在H-Ras转化的KO细胞中则没有。数据表明,在永生化MEF的生长因子非依赖性增殖中,H-Ras转化覆盖了对Tpm3.1的要求。我们建议,在SV40大T抗原永生化的MEF中,TPM3.1部分负责pERK和Imp7之间的有效相互作用,导致细胞增殖,但这被Ras转化所掩盖。

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