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Effects on prostate cancer cells of targeting RNA polymerase III

机译:对靶向RNA聚合酶III的前列腺癌细胞的影响

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摘要

RNA polymerase (pol) III occurs in two forms, containing either the POLR3G subunit or the related paralogue POLR3GL. Whereas POLR3GL is ubiquitous, POLR3G is enriched in undifferentiated cells. Depletion of POLR3G selectively triggers proliferative arrest and differentiation of prostate cancer cells, responses not elicited when POLR3GL is depleted. A small molecule pol III inhibitor can cause POLR3G depletion, induce similar differentiation and suppress proliferation and viability of cancer cells. This response involves control of the fate-determining factor NANOG by small RNAs derived from Alu short interspersed nuclear elements. Tumour initiating activity in vivo can be reduced by transient exposure to the pol III inhibitor. Untransformed prostate cells appear less sensitive than cancer cells to pol III depletion or inhibition, raising the possibility of a therapeutic window.
机译:RNA聚合酶(POL)III以两种形式发生,含有POLR3G亚基或相关助产剂POLR3G1。 虽然Polr3gl是普遍的,但PolR3G富集在未分化的细胞中。 PolR3G的耗竭选择性地触发前列腺癌细胞的增殖抑制和分化,当PolR3GL耗尽时,不引起的反应。 小分子POL III抑制剂可导致POLR3G耗尽,诱导类似的分化和抑制癌细胞的增殖和活力。 该响应涉及通过衍生自Alu短三孔的核元素的小RNA来控制命运确定因子纳米。 通过瞬时暴露于POL III抑制剂,可以减少体内肿瘤的引发活性。 未转化的前列腺细胞显得不如癌细胞对pol III耗尽或抑制的敏感性,提高治疗窗口的可能性。

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