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首页> 外文期刊>Human Molecular Genetics >Essential role for the tudor domain of SMN in spliceosomal U snRNP assembly: implications for spinal muscular atrophy.
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Essential role for the tudor domain of SMN in spliceosomal U snRNP assembly: implications for spinal muscular atrophy.

机译:SMN的tudor域在剪接U snRNP装配中的重要作用:对脊髓性肌萎缩的影响。

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Spinal muscular atrophy (SMA) is a neurodegenerative disease of spinal motor neurons caused by reduced levels of functional survival of motor neurons (SMN) protein. SMN is part of a macromolecular complex that contains the SMN-interacting protein 1 (SIP1) and spliceosomal Sm proteins. Although it is clear that SIP1 as a component of this complex is essential for spliceosomal uridine-rich small ribonucleoprotein (U snRNP) assembly, the role of SMN and its functional interactions with SIP1 and Sm proteins are poorly understood. Here we show that the central region of SMN comprising a tudor domain facilitates direct binding to Sm proteins. Strikingly, the SMA-causing missense mutation E134K within the tudor domain severely reduced the ability of SMN to interact with Sm proteins. Moreover, antibodies directed against the tudor domain prevent Sm protein binding to SMN and abolish assembly of U snRNPs in vivo. Thus, our data show that SMN is an essential U snRNP assembly factor and establish a direct correlation between defects in the biogenesis of U snRNPs and SMA.
机译:脊髓性肌萎缩症(SMA)是由运动神经元(SMN)蛋白功能存活水平降低引起的脊髓运动神经元的神经退行性疾病。 SMN是包含SMN相互作用蛋白1(SIP1)和剪接Sm蛋白的大分子复合物的一部分。尽管很明显,SIP1作为这种复合物的组成部分对于剪接体富含尿苷的小核糖核蛋白(U snRNP)组装是必不可少的,但人们对SMN的作用及其与SIP1和Sm蛋白的相互作用的了解却很少。在这里,我们显示SMN的中央区域包括一个tudor域促进直接结合到Sm蛋白。引人注目的是,在都铎域内导致SMA的错义突变E134K严重降低了SMN与Sm蛋白相互作用的能力。而且,针对Tudor结构域的抗体在体内阻止了Sm蛋白与SMN的结合并废除了U snRNP的装配。因此,我们的数据表明SMN是必需的U snRNP装配因子,并在U snRNP和SMA的生物发生中的缺陷之间建立了直接相关性。

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