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Induction of long noncoding RNA MALAT1 in hypoxic mice

机译:低氧小鼠中长非编码RNA MALAT1的诱导

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摘要

Long thought to be “junk DNA”, in recent years it has become clear that a substantial fraction of intergenic genomic DNA is actually transcribed, forming long noncoding RNA (lncRNA). Like mRNA, lncRNA can also be spliced, capped, and polyadenylated, affecting a multitude of biological processes. While the molecular mechanisms underlying the function of lncRNAs have just begun to be elucidated, the conditional regulation of lncRNAs remains largely unexplored. In genome-wide studies our group and others recently found hypoxic transcriptional induction of a subset of lncRNAs, whereof nuclear-enriched abundant/autosomal transcript 1 (NEAT1) and metastasis-associated lung adenocarcinoma transcript 1 (MALAT1) appear to be the lncRNAs most ubiquitously and most strongly induced by hypoxia in cultured cells. Hypoxia-inducible factor (HIF)-2 rather than HIF-1 seems to be the preferred transcriptional activator of these lncRNAs. For the first time, we also found strong induction primarily of MALAT1 in organs of mice exposed to inspiratory hypoxia. Most abundant hypoxic levels of MALAT1 lncRNA were found in kidney and testis. In situ hybridization revealed that the hypoxic induction in the kidney was confined to proximal rather than distal tubular epithelial cells. Direct oxygen-dependent regulation of MALAT1 lncRNA was confirmed using isolated primary kidney epithelial cells. In summary, high expression levels and acute, profound hypoxic induction of MALAT1 suggest a hitherto unrecognized role of this lncRNA in renal proximal tubular function.
机译:长期以来,人们一直认为它是“垃圾DNA”,很明显,实际上转录了大部分基因间基因组DNA,形成了长的非编码RNA(lncRNA)。像mRNA一样,lncRNA也可以剪接,加帽和聚腺苷酸化,影响多种生物过程。尽管刚刚阐明了lncRNAs功能的分子机制,但对lncRNAs的条件调控仍未探索。在全基因组研究中,我们小组和其他人最近发现了一部分lncRNA的低氧转录诱导,其中核富集的丰富/常染色体转录本1(NEAT1)和与转移相关的肺腺癌转录本1(MALAT1)似乎是最普遍的lncRNA。在培养细胞中由缺氧最强烈地诱导。缺氧诱导因子(HIF)-2而不是HIF-1似乎是这些lncRNA的首选转录激活因子。首次,我们还发现在吸入性缺氧的小鼠器官中主要强烈诱导MALAT1。在肾脏和睾丸中发现了最丰富的低氧水平的MALAT1 lncRNA。原位杂交显示,肾脏中的低氧诱导作用仅限于近端而非远端的肾小管上皮细胞。使用分离的原代肾上皮细胞证实了MALAT1 lncRNA的直接氧依赖性调节。总之,MALAT1的高表达水平和急性,严重的低氧诱导表明,该lncRNA在肾近端肾小管功能中迄今尚未被认识。

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