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The terminal loop region controls microRNA processing by Drosha and Dicer

机译:末端环区控制Drosha和Dicer对microRNA的加工

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摘要

microRNAs are widely expressed, similar to 22-nt-long regulatory RNAs. They are first transcribed as much longer primary transcripts, which then undergo a series of processing steps to yield the single-stranded, mature microRNAs, although the mechanisms are incompletely understood. Here, we show that the terminal loop region of human primary microRNA transcripts is an important determinant of microRNA biogenesis. Mutations that restrain the terminal loop region inhibit Drosha processing of primary microRNA transcripts as well as Dicer processing of precursor microRNA transcripts in vitro. The inhibition may result from lower enzyme turnover on the mutant transcripts. Consequently, the mutations reduce miRNA maturation in transfected human cells. We conclude that a flexible terminal loop region is critical for microRNA processing.
机译:microRNA广泛表达,类似于22 nt长的调控RNA。它们首先被转录为更长的初级转录本,然后经历一系列加工步骤以产生单链的成熟microRNA,尽管其机理尚不完全清楚。在这里,我们显示人类初级microRNA转录物的末端环区域是microRNA生物发生的重要决定因素。限制末端环区的突变会抑制Drosha对初级microRNA转录本的加工以及Dicer对前体microRNA转录本的加工。抑制作用可能是由于突变体转录物上较低的酶转换引起的。因此,这些突变降低了转染的人类细胞中miRNA的成熟。我们得出结论,灵活的末端环区对于microRNA加工至关重要。

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