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首页> 外文期刊>The Journal of investigative dermatology. >Merkel cell polyomavirus-positive merkel cell carcinoma cells do not require expression of the viral small T antigen
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Merkel cell polyomavirus-positive merkel cell carcinoma cells do not require expression of the viral small T antigen

机译:默克尔细胞多瘤病毒阳性的默克尔细胞癌细胞不需要表达病毒性小T抗原

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摘要

Increasing evidence suggests that Merkel cell carcinoma (MCC) is caused by the Merkel cell polyomavirus (MCV). The viral sequence encodes for two potential oncoproteins, i.e., the small T antigen (sT) and the large T antigen (LT). Indeed, sT has recently been shown to bear transforming activity. Here, we confirm this observation by demonstrating focus formation upon expression of MCV sT in NIH3T3 fibroblasts. On the other hand, however, we provide evidence that established MCC cells do not require sT for growth and survival. Silencing of sT protein expression by two different sT-specific short hairpin RNAs (shRNAs) leads to variable degrees of growth retardation in MCV-positive MCC cell lines. However, these effects are not sT specific, as proliferation of MCV-negative cell lines is similarly affected by these sT shRNAs. Furthermore, ectopic expression of shRNA-insensitive sT does not revert the growth inhibition implicated by sT silencing. Finally, the unambiguous and specific growth inhibition induced by means of an shRNA targeting both T antigens, can be completely rescued by ectopic expression of LT alone, thus demonstrating a dispensable role of sT. Altogether, our results indicate that MCV LT is more relevant in maintaining the proliferation and survival of established MCC cell lines.
机译:越来越多的证据表明,默克尔细胞癌(MCC)是由默克尔细胞多瘤病毒(MCV)引起的。病毒序列编码两种潜在的癌蛋白,即小T抗原(sT)和大T抗原(LT)。实际上,最近已证明sT具有转化活性。在这里,我们通过证明在NIH3T3成纤维细胞中表达MCV sT形成焦点来证实这一观察。但是,另一方面,我们提供的证据表明,成熟的MCC细胞不需要sT即可生长和存活。两种不同的sT特异性短发夹RNA(shRNA)沉默sT蛋白表达会导致MCV阳性MCC细胞系中不同程度的生长迟缓。但是,这些作用不是sT特异的,因为MCV阴性细胞系的增殖同样受到这些sT shRNA的影响。此外,shRNA不敏感的sT的异位表达不能逆转sT沉默牵连的生长抑制作用。最后,通过单独靶向LT的异位表达可以完全挽救通过靶向两种T抗原的shRNA诱导的明确的和特异性的生长抑制,从而证明了sT的重要作用。总而言之,我们的结果表明MCV LT与维持已建立的MCC细胞系的增殖和存活更为相关。

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