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DGCR8 recognizes primary transcripts of microRNAs through highly cooperative binding and formation of higher-order structures.

机译:DGCR8通过高度协作的结合和高阶结构的形成来识别microRNA的主要转录本。

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DiGeorge critical region 8 (DGCR8) is essential for maturation of microRNAs (miRNAs) in animals. In the cleavage of primary transcripts of miRNAs (pri-miRNAs) by the Drosha nuclease, the DGCR8 protein directly binds and recognizes pri-miRNAs through a mechanism currently controversial. Our previous data suggest that DGCR8 trimerizes upon cooperative binding to pri-mir-30a. However, a separate study proposed a model in which a DGCR8 molecule contacts one or two pri-miRNA molecules using its two double-stranded RNA binding domains. Here, we extensively characterized the interaction between DGCR8 and pri-miRNAs using biochemical and structural methods. First, a strong correlation was observed between the association of DGCR8 with pri-mir-30a and the rate of pri-miRNA processing in vitro. Second, we show that the high binding cooperativity allows DGCR8 to distinguish pri-miRNAs from a nonspecific competitor with subtle differences in dissociation constants. The highly cooperative binding of DGCR8 to a pri-miRNA is mediated by the formation of higher-order structures, most likely a trimer of DGCR8 dimers, on the pri-miRNA. These properties are not limited to its interaction with pri-mir-30a. Furthermore, the amphipathic C-terminal helix of DGCR8 is important both for trimerization of DGCR8 on pri-miRNAs and for the cleavage of pri-miRNAs by Drosha. Finally, our three-dimensional model from electron tomography analysis of the negatively stained DGCR8-pri-mir-30a complex directly supports the trimerization model. Our study provides a molecular basis for recognition of pri-miRNAs by DGCR8. We further propose that the higher-order structures of the DGCR8-pri-miRNA complexes trigger the cleavage of pri-miRNAs by Drosha.
机译:DiGeorge关键区域8(DGCR8)对于动物中microRNA(miRNA)的成熟至关重要。在Drosha核酸酶切割miRNAs(pri-miRNAs)的主要转录本中,DGCR8蛋白通过目前有争议的机制直接结合并识别pri-miRNAs。我们之前的数据表明,DGCR8在与pri-mir-30a协同结合时具有三聚作用。但是,另一项研究提出了一个模型,其中DGCR8分子使用其两个双链RNA结合结构域接触一个或两个pri-miRNA分子。在这里,我们使用生化和结构方法广泛表征了DGCR8和pri-miRNA之间的相互作用。首先,观察到DGCR8与pri-mir-30a的关联与pri-miRNA的体外加工速率之间有很强的相关性。其次,我们证明了高结合协同作用使DGCR8能够将pri-miRNA与非特异性竞争者区别开来,其解离常数存在细微差异。 DGCR8与pri-miRNA的高度协作结合是通过在pri-miRNA上形成更高阶结构(最有可能是DGCR8二聚体的三聚体)来介导的。这些特性不限于其与pri-mir-30a的相互作用。此外,DGCR8的两亲性C末端螺旋对于pri-miRNA上DGCR8的三聚和Drosha切割pri-miRNA都很重要。最后,我们通过对负染色的DGCR8-pri-mir-30a复合物进行电子层析成像分析得到的三维模型直接支持了三聚化模型。我们的研究为DGCR8识别pri-miRNA提供了分子基础。我们进一步提出,DGCR8-pri-miRNA复合物的高阶结构触发Drosha对pri-miRNA的切割。

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