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首页> 外文期刊>Human Molecular Genetics >Novel UCHL1 mutations reveal new insights into ubiquitin processing
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Novel UCHL1 mutations reveal new insights into ubiquitin processing

机译:新型UCHL1突变揭示了泛素加工的新见解

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Recessive loss of function of the neuronal ubiquitin hydrolase UCHL1 has been implicated in early-onset progressive neurodegeneration (MIM no. 615491), so far only in one family. In this study a second family is characterized, and the functional consequences of the identified mutations in UCHL1 are explored. Three siblings developed childhood-onset optic atrophy, followed by spasticity and ataxia. Whole exome sequencing identified compound heterozygous variants in UCHL1, c.533G > A (p.Arg178Gln) and c. 647C > A (p.Ala216Asp), cosegregating with the phenotype. Enzymatic activity of purified recombinant proteins analysed by ubiquitin hydrolase assays showed a 4-fold increased hydrolytic activity of the recombinant UCHL1 mutant Arg178Gln compared to wild type, whereas the Ala216Asp protein was insoluble. Structural 3D analysis of UCHL1 by computer modelling suggests that Arg178 is a rate-controlling residue in catalysis which is partly abolished in the Arg178Gln mutant and, consequently, the Arg178Gln mutant increases the enzymatic turnover. UCHL1 protein levels in fibroblasts measured by targeted mass spectrometry showed a total amount of UCHL1 in control fibroblasts about 4-fold higher than in the patients. Hence, studies of the identified missense variants reveal surprisingly different functional consequences as the insoluble Ala216Asp variant leads to loss of function, whereas the Arg178Gln leads to increased enzyme activity. The reported patients have remarkably preserved cognition, and we propose that the increased enzyme activity of the Arg178Gln variant offers a protective effect on cognitive function. This study establishes the importance of UCHL1 in neurodegeneration, provides new mechanistic insight about ubiquitin processing, and underlines the complexity of the different roles of UCHL1.
机译:神经元泛素水解酶UCHL1的功能性丧失已涉及早盘性渐进性(MIM NO.615491),只有一个家庭。在该研究中,表征了第二个家庭,探讨了UCHL1中所识别的突变的功能后果。三个兄弟姐妹开发了童年发病视神经萎缩,其次是痉挛和共济失调。鉴定了UCH11,C.533G> A(P.ARG178GLN)和C中的化合物杂合子变体。 647C> A(p.ala216ax),用表型Colegregating。通过泛素水解酶测定分析的纯化重组蛋白的酶活性显示出与野生型相比,重组UCH11突变体Arg178Gln的4倍增加的水解活性,而ALA216ASP蛋白不溶于溶解。计算机建模的UCHL1结构3D分析表明,Arg178是催化率控制残留物,其在Arg178GlN突变体中部分被废除,并且因此Arg178GlN突变体增加了酶促成果。通过靶向质谱法测量的成纤维细胞中的UCH11蛋白水平显示出比患者高约4倍的对照成纤维细胞中的UCHL1的总量。因此,鉴定的畸形变体的研究揭示了令人惊讶的不同功能后果,因为不溶性的ALA216ASP变体导致功能丧失,而ARG178GLN导致增加的酶活性。报告的患者具有显着的认知,我们提出了ARG178GLN变体的增加的酶活性对认知功能提供了保护作用。本研究建立了UCHL1在神经变性中的重要性,为泛素处理提供了新的机制洞察力,并强调了UCHL1不同角色的复杂性。

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