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Human miR-1271 is a miR-96 paralog with distinct non-conserved brain expression pattern

机译:人miR-1271是miR-96旁系同源物,具有独特的非保守脑表达模式

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Recent deep-sequencing efforts have identified many novel non-conserved small RNAs that are expressed at low levels in certain mammalian cells. Whether these small RNAs are important for mammalian physiology is debatable, therefore we explored the function of one such RNA, human miR-1271. This small RNA is similar in sequence to miR-96, a highly conserved microRNA that when mutated causes hearing loss in humans and mice. Although the miR-1271 and miR-96 sequences differ slightly, our in vitro assays indicate that they have an identical regulatory activity. We have identified brain-expressed mRNAs from genes including, GPHN, RGS2, HOMER1 and KCC2, which share the same miR-96 and miR-1271 regulatory elements. Interestingly, human miR-1271 is expressed abundantly in brain tissue, where miR-96 is not highly expressed. The rodent miR-1271 precursor contains several sequence differences in the precursor stem, which appear to reduce the efficiency of microRNA processing. Our data indicate that although miR-1271 and miR-96 function identically in vitro, they function to some extent uniquely in vivo. Given the expression patterns and nature of the target genes, miR-1271 may have a significant, although non-conserved, role in regulating aspects of neural development or function in humans.
机译:最近的深度测序工作已经鉴定出许多新颖的非保守小RNA,它们在某些哺乳动物细胞中低水平表达。这些小RNA对哺乳动物的生理学是否重要尚有争议,因此我们探讨了一种这样的RNA的功能,即人miR-1271。这种小RNA的序列类似于miR-96,miR-96是高度保守的microRNA,突变后会导致人类和小鼠的听力丧失。尽管miR-1271和miR-96序列略有不同,但我们的体外分析表明它们具有相同的调节活性。我们从包含GPHN,RGS2,HOMER1和KCC2的基因中鉴定了大脑表达的mRNA,它们共享相同的miR-96和miR-1271调控元件。有趣的是,人类miR-1271在大脑组织中大量表达,而miR-96并未高度表达。啮齿动物miR-1271前体在前体茎中包含多个序列差异,这似乎降低了microRNA加工的效率。我们的数据表明,尽管miR-1271和miR-96在体外具有相同的功能,但它们在体内在某种程度上具有独特的功能。考虑到靶基因的表达方式和性质,miR-1271在调节人类神经发育或功能方面可能具有重要的作用,尽管是非保守的。

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