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Characterization of DGCR8/Pasha, the essential cofactor for Drosha in primary miRNA processing

机译:DGCR8 / Pasha的表征,Drosha在主要miRNA加工中必不可少的辅助因子

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DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin structures embedded in long primary microRNA transcripts (pri-miRNAs) in eukaryotes. Although our knowledge of pri-miRNA processing has significantly advanced in recent years, the precise role of DGCR8 in this pathway remains unclear. In our present study, we dissect the domains in DGCR8 that contribute to the processing of pri-miRNAs and the subcellular localization of DGCR8. Drosha is stabilized through an interaction between its middle domain and the conserved C-terminal domain of DGCR8. Furthermore, DGCR8, but not Drosha, can directly and stably interact with pri-miRNAs, and the tandem dsRNA-binding domains (dsRBDs) in DGCR8 are responsible for this recognition. Moreover, the DGCR8 N-terminal region upstream of its dsRBDs is unnecessary for pri-miRNA processing but is critical for nuclear localization. Our study thus provides further insights into the mechanism of action of the Drosha-DGCR8 complex in pri-miRNA processing.
机译:DGCR8 / Pasha是Drosha的重要辅助因子,Drosha是一种核RNase III,可裂解真核生物中长的初级microRNA转录物(pri-miRNA)中嵌入的局部发夹结构。尽管近年来我们对pri-miRNA加工的了解已大大提高,但尚不清楚DGCR8在该途径中的确切作用。在我们目前的研究中,我们解剖了DGCR8中有助于pri-miRNA加工和DGCR8亚细胞定位的结构域。 Drosha通过其中间结构域与DGCR8保守C端结构域之间的相互作用而稳定。此外,DGCR8(而不是Drosha)可以直接且稳定地与pri-miRNA相互作用,而DGCR8中的串联dsRNA结合域(dsRBD)负责这种识别。此外,其dsRBD上游的DGCR8 N端区域对于pri-miRNA加工不是必需的,但对核定位至关重要。因此,我们的研究为pri-miRNA加工中Drosha-DGCR8复合物的作用机理提供了进一步的见解。

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