首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Tudor Staphylococcal Nuclease (Tudor-SN) Participates in Small Ribonucleoprotein (snRNP) Assembly via Interacting with Symmetrically Dimethylated Sm Proteins
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Tudor Staphylococcal Nuclease (Tudor-SN) Participates in Small Ribonucleoprotein (snRNP) Assembly via Interacting with Symmetrically Dimethylated Sm Proteins

机译:都铎葡萄球菌核酸酶(Tudor-SN)通过与对称二甲基化Sm蛋白相互作用参与小核糖核蛋白(snRNP)大会。

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摘要

Human Tudor staphylococcal nuclease (Tudor-SN) is composed of four tandem repeats of staphylococcal nuclease (SN)-like domains, followed by a tudor and SN-like domain (TSN) consisting of a central tudor flanked by two partial SN-like sequences. The crystal structure of the tudor domain displays a conserved aromatic cage, which is predicted to hook methyl groups. Here, we demonstrated that the TSN domain of Tudor-SN binds to symmetrically dimethylarginine (sDMA)-modified SmB/B′ and SmD1/D3 core proteins of the spliceosome. We demonstrated that this interaction ability is reduced by the methyltransferase inhibitor 5-deoxy-5-(methylthio)adenosine. Mutagenesis experiments indicated that the conserved amino acids (Phe-715, Tyr-721, Tyr-738, and Tyr-741) in the methyl-binding cage of the TSN domain are required for Tudor-SN-SmB interaction. Furthermore, depletion of Tudor-SN affects the association of Sm protein with snRNAs and, as a result, inhibits the assembly of uridine-rich small ribonucleoprotein mediated by the Sm core complex in vivo. Our results reveal the molecular basis for the involvement of Tudor-SN in regulating small nuclear ribonucleoprotein biogenesis, which provides novel insight related to the biological activity of Tudor-SN.
机译:人Tudor葡萄球菌核酸酶(Tudor-SN)由葡萄球菌核酸酶(SN)样结构域的四个串联重复序列组成,随后是Tudor和SN样结构域(TSN),其结构由中央Tudor组成,两侧是两个部分的SN-like序列。都铎结构域的晶体结构显示出保守的芳族笼,预计其会钩住甲基。在这里,我们证明了Tudor-SN的TSN域与剪接体的对称二甲基精氨酸(sDMA)修饰的SmB / B'和SmD1 / D3核心蛋白结合。我们证明了这种相互作用能力被甲基转移酶抑制剂5-脱氧-5-(甲硫基)腺苷降低了。诱变实验表明,Tudor-SN-SmB相互作用需要TSN域甲基结合笼中的保守氨基酸(Phe-715,Tyr-721,Tyr-738和Tyr-741)。此外,Tudor-SN的耗竭会影响Sm蛋白与snRNA的结合,因此,会抑制体内由Sm核心复合物介导的富含尿苷的小核糖核蛋白的组装。我们的结果揭示了Tudor-SN参与调节小核糖核糖核蛋白生物发生的分子基础,这提供了与Tudor-SN的生物学活性有关的新见解。

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