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Loss-of-function screening to identify miRNAs involved in senescence: tumor suppressor activity of miRNA-335 and its new target CARF

机译:功能丧失筛选以鉴定参与衰老的miRNA:miRNA-335及其新靶标CARF的肿瘤抑制活性

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摘要

Significance of microRNAs (miRs), small non-coding molecules, has been implicated in a variety of biological processes. Here, we recruited retroviral insertional mutagenesis to obtain induction of an arbitrary noncoding RNAs, and coupled it with a cell based loss-of-function (5-Aza-2′-deoxycytidine (5Aza-dC)-induced senescence bypass) screening system. Cells that escaped 5-Aza-dC-induced senescence were subjected to miR-microarray analysis with respect to the untreated control. We identified miR-335 as one of the upregulated miRs. In order to characterize the functional significance, we overexpressed miR-335 in human cancer cells and found that it caused growth suppression. We demonstrate that the latter accounted for inhibition of 5-Aza-dC incorporation into the cell genome, enabling them to escape from induction of senescence. We also report that CARF (Collaborator of ARF) is a new target of miR-335 that regulates its growth suppressor function by complex crosstalk with other proteins including p16INK4A, pRB, HDM2 and p21WAF1.
机译:微小的非编码分子microRNA(miRs)的意义已经涉及多种生物学过程。在这里,我们募集了逆转录病毒插入诱变以获得任意非编码RNA的诱导,并将其与基于细胞的功能丧失(5-Aza-2'-脱氧胞苷(5Aza-dC)诱导的衰老旁路)筛选系统结合。相对于未处理的对照,对逃脱5-Aza-dC诱导的衰老的细胞进行miR-微阵列分析。我们将miR-335鉴定为上调的miR之一。为了表征功能重要性,我们在人类癌细胞中过度表达了miR-335,并发现其导致了生长抑制。我们证明后者解释了对5-Aza-dC掺入细胞基因组的抑制作用,使它们能够逃避衰老的诱导。我们还报告说CARF(ARF的合作者)是miR-335的新靶标,它通过与其他蛋白质(包括p16 INK4A ,pRB,HDM2和p21 WAF1)的复杂串扰来调节其生长抑制功能

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