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首页> 外文期刊>Cell death & disease. >ZIKA virus elicits P53 activation and genotoxic stress in human neural progenitors similar to mutations involved in severe forms of genetic microcephaly and p53
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ZIKA virus elicits P53 activation and genotoxic stress in human neural progenitors similar to mutations involved in severe forms of genetic microcephaly and p53

机译:Zika病毒在人类神经祖细胞中引发P53活化和遗传毒性应激,类似于遗传微症的严重形式的突变和p53

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摘要

Epidemiological evidence from the current outbreak of Zika virus (ZIKV) and recent studies in animal models indicate a strong causal link between ZIKV and microcephaly. ZIKV infection induces cell-cycle arrest and apoptosis in proliferating neural progenitors. However, the mechanisms leading to these phenotypes are still largely obscure. In this report, we explored the possible similarities between transcriptional responses induced by ZIKV in human neural progenitors and those elicited by three different genetic mutations leading to severe forms of microcephaly in mice. We found that the strongest similarity between all these conditions is the activation of common P53 downstream genes. In agreement with these observations, we report that ZIKV infection increases total P53 levels and nuclear accumulation, as well as P53 Ser15 phosphorylation, correlated with genotoxic stress and apoptosis induction. Interestingly, increased P53 activation and apoptosis are induced not only in cells expressing high levels of viral antigens but also in cells showing low or undetectable levels of the same proteins. These results indicate that P53 activation is an early and specific event in ZIKV-infected cells, which could result from cell-autonomous and/or non-cell-autonomous mechanisms. Moreover, we highlight a small group of P53 effector proteins that could act as critical mediators, not only in ZIKV-induced microcephaly but also in many genetic microcephaly syndromes.
机译:来自目前Zika病毒(Zikv)爆发的流行病学证据和近期动物模型的研究表明ZIKV和MicroCephaly之间的强烈因果关系。 ZIKV感染在增殖神经祖细胞中诱导细胞周期停滞和凋亡。然而,导致这些表型的机制仍然很大程度上是模糊的。在本报告中,我们探讨了ZIKV在人神经祖细胞中诱导的转录反应之间的可能相似性,并且由三种不同的遗传突变引发的那些导致小鼠的严重形式的微骨折。我们发现,所有这些条件之间的最强相似性是常见P53下游基因的激活。在与这些观察结果一致中,我们报告说,ZIKV感染增加了总P53水平和核积累,以及P53 Ser15磷酸化,与遗传毒性应激和凋亡诱导相关。有趣的是,不仅在表达高水平的病毒抗原的细胞中诱导了P53活化和细胞凋亡的增加,而且诱导了表现出相同蛋白质的低或无法检测的水平的细胞。这些结果表明P53活化是ZIKV感染细胞中的早期和特定事件,其可能由细胞 - 自主和/或非细胞自主机制产生。此外,我们突出了一小组P53效应蛋白,可以充当临界介质,不仅在Zikv诱导的微微术中,而且在许多遗传微症综合征中。

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