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首页> 外文期刊>Human Molecular Genetics >The exon 2b region of the spinal muscular atrophy protein, SMN, is involved in self-association and SIP1 binding.
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The exon 2b region of the spinal muscular atrophy protein, SMN, is involved in self-association and SIP1 binding.

机译:脊髓性肌萎缩蛋白SMN的外显子2b区参与自我缔合和SIP1结合。

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摘要

Spinal muscular atrophy (SMA) is caused by mutations in the SMN (survival of motor neurons) gene and there is a correlation between disease severity and levels of functional SMN protein. Studies of structure-function relationships in SMN protein may lead to a better understanding of SMA pathogenesis. Self-association of the spinal muscular atrophy protein, SMN, is important for its function in RNA splicing. Biomolecular interaction analysis core analysis now shows that SMN self-association occurs via SMN regions encoded by exons 2b and 6, that exon 2b encodes a binding site for SMN-interacting protein-1 and that interaction occurs between exon 2- and 4-encoded regions within the SMN monomer. The presence of two separate self-association sites suggests a novel mechanism by which linear oligomers or closed rings might be formed from SMN monomers.
机译:脊髓性肌萎缩症(SMA)是由SMN(运动神经元存活)基因突变引起的,疾病严重程度与功能性SMN蛋白水平之间存在相关性。对SMN蛋白中结构-功能关系的研究可能会导致对SMA发病机理的更好理解。脊髓肌肉萎缩蛋白SMN的自缔合对其在RNA剪接中的功能很重要。生物分子相互作用分析核心分析现在表明SMN自缔合通过外显子2b和6编码的SMN区域发生,外显子2b编码SMN相互作用蛋白1的结合位点,相互作用发生在外显子2和4编码区域之间。在SMN单体中。两个独立的自缔合位点的存在表明一种新的机制,通过该机制,SMN单体可能会形成线性低聚物或闭环。

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