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首页> 外文期刊>Cell death & disease. >MiR-125a-5p decreases after long non-coding RNA HOTAIR knockdown to promote cancer cell apoptosis by releasing caspase 2
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MiR-125a-5p decreases after long non-coding RNA HOTAIR knockdown to promote cancer cell apoptosis by releasing caspase 2

机译:长时间的非编码RNA HOTAIR 敲低以释放caspase 2促进癌细胞凋亡后,MiR-125a-5p降低

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HOTAIR (homeobox transcript antisense RNA), one of the prototypical long non-coding RNAs, has been verified overexpressed in multiple carcinomas and has emerged as a promising novel anticancer target. Its well-established role is acting as a predictor of poor prognosis and promoting cancer cell metastasis. Recently, another important mission of HOTAIR was uncovered that targeting HOTAIR caused cancer cell apoptosis. Nevertheless, so far there is no published data elaborating the mechanism. Here, we report that microRNA miR-125a-5p decreases and releases caspase 2 to promote cancer cell apoptosis after HOTAIR knockdown. We applied siRNAs targeting HOTAIR to various cancer cells, and observed apoptosis in all of these cell lines. RNA sequencing detected that miR-125a-5p was decreased after HOTAIR knockdown and miR-125a-5p mimics could rescue the apoptosis induced by HOTAIR deficiency. Luciferase assays identified caspase 2, an initiator caspase, to be a new target of miR-125a-5p. Elevated expression and subsequent cleavage of caspase 2 was observed after HOTAIR knockdown or inhibition of miR-125a-5p. RNAi of caspase 2 could attenuate the apoptosis induced by HOTAIR knockdown. In 80 clinical colon cancer tissues, HOTAIR and miR-125a-5p levels were higher than adjacent tissues, whereas caspase 2 was lower. MiR-125a-5p expression level was significantly correlated with colon tumor size, lymph node metastasis and clinical stage. These findings indicate that miR-125a-5p decreases after HOTAIR knockdown to promote cancer cell apoptosis by releasing caspase 2. Our work reveals a previously unidentified apoptotic mechanism, which might be exploitable in anticancer drug development.
机译:HOTAIR(同源异型盒转录本反义RNA)是一种典型的长非编码RNA,已在多种癌症中过表达,并已成为一种有希望的新型抗癌靶标。它已经确立的作用是预后不良并促进癌细胞转移。最近,HOTAIR的另一个重要任务被发现,靶向HOTAIR会导致癌细胞凋亡。然而,到目前为止,尚无公开的数据阐明该机制。在这里,我们报告microRNA miR-125a-5p减少并释放caspase 2以促进HOTAIR敲低后癌细胞凋亡。我们将靶向HOTAIR的siRNA应用于各种癌细胞,并观察了所有这些细胞系的凋亡。 RNA测序检测到HOTAIR敲低后miR-125a-5p降低,而miR-125a-5p模拟物可以挽救HOTAIR缺乏诱导的凋亡。萤光素酶测定法确定半胱天冬酶2(一种引发半胱天冬酶)是miR-125a-5p的新靶标。 HOTAIR敲低或抑制miR-125a-5p后观察到caspase 2的表达升高和随后的切割。半胱天冬酶2的RNAi可以减弱HOTAIR敲低诱导的细胞凋亡。在80个临床结肠癌组织中,HOTAIR和miR-125a-5p的水平高于邻近组织,而半胱天冬酶2则较低。 MiR-125a-5p表达水平与结肠肿瘤大小,淋巴结转移和临床分期显着相关。这些发现表明,在HOTAIR敲低后,miR-125a-5p减少,通过释放caspase 2来促进癌细胞凋亡。我们的工作揭示了以前未知的凋亡机制,可用于抗癌药物的开发。

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