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Tankyrase promotes primary precursor miRNA processing to precursor miRNA

机译:Tankyrase促进原发性前体miRNA处理以前体miRNA

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Tankyrases (TNKS and TNKS2) are members of poly(ADP-ribose) polymerase (PARP) family proteins. Tankyrase has multiple ankyrin repeat cluster (ARC) domains, which recognize the tankyrase-binding motifs in proteins including the telomeric protein, TRF1 and Wnt signal regulators, AXINs. However, the functional significance of tankyrase interaction with many other putative binding proteins remains unknown. Here, we found that several proteins involved in microRNA (miRNA) processing have putative tankyrase-binding motifs and their functions are regulated by tankyrase. First, chemical inhibition of tankyrase PARP activity downregulated the expression levels of precursor miRNAs (pre-miRNAs) but not primary precursor miRNAs (pri-miRNAs). A subsequent reporter assay revealed that tankyrase inhibitors or PARP-dead mutant tankyrase overexpression repress pri-miRNA processing to pre-miRNA. Conversely, a PARP-1/2 inhibitor, olaparib, did not affect pri-miRNA processing. Tankyrase ARCs bound to DGCR8 and DROSHA, which are essential components for pri-miRNA processing and have putative tankyrase-binding motifs. These observations indicate that tankyrase binds to Microprocessor, DGCR8 and DROSHA complex and modulates pri-miRNA processing to pre-miRNA. (C) 2019 Elsevier Inc. All rights reserved.
机译:酸吡酶(TNKS和TNKS2)是聚(ADP-核糖)聚合酶(PARP)家族蛋白的成员。 Tankyrase具有多个Ankyrin重复簇(ARC)结构域,其识别蛋白质中的豆油酶结合基序,包括细胞蛋白质,TRF1和WNT信号调节器,轴线。然而,与许多其他推定的结合蛋白的酸肌酶相互作用的功能意义仍然未知。在这里,我们发现参与MicroRNA(miRNA)加工的几种蛋白质具有推定的不含脂肪酶结合基序,并且它们的功能由Tantysyase调节。首先,化学抑制脂肪酶PARP活性下调了前体miRNA(前miRNA)的表达水平,但不是原发性前体miRNA(PRI-miRNA)。随后的报告试验显示,不含脂肪酶抑制剂或PARP-DEAT突变体的脂肪酶过表达将PRI-miRNA处理抑制至预先生。相反,PARP-1/2抑制剂Olaparib不影响Pri-miRNA加工。不符合DGCR8和DROSHA的Tankyrase弧,这是PRI-miRNA加工的必要组分,并具有推定的不含脂肪酶结合基序。这些观察结果表明,Tankyrase与微处理器,DGCR8和DROSHA复合物结合,并调节PRI-miRNA处理至预先生。 (c)2019 Elsevier Inc.保留所有权利。

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