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首页> 外文期刊>Frontiers in Molecular Biosciences >Allosteric regulation of deubiquitylase activity through ubiquitination
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Allosteric regulation of deubiquitylase activity through ubiquitination

机译:通过泛素化对去泛素化酶活性的变构调节

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摘要

Ataxin-3, the protein responsible for spinocerebellar ataxia type-3, is a cysteine protease that specifically cleaves poly-ubiquitin chains and participates in the ubiquitin proteasome pathway. The enzymatic activity resides in the N-terminal Josephin domain. An unusual feature of ataxin-3 is its low enzymatic activity especially for mono-ubiquitinated substrates and short ubiquitin chains. However, specific ubiquitination at lysine 117 in the Josephin domain activates ataxin-3 through an unknown mechanism. Here, we investigate the effects of K117 ubiquitination on the structure and enzymatic activity of the protein. We show that covalently linked ubiquitin rests on the Josephin domain, forming a compact globular moiety and occupying a ubiquitin binding site previously thought to be essential for substrate recognition. In doing so, ubiquitination enhances enzymatic activity by locking the enzyme in an activated state. Our results indicate that ubiquitin functions both as a substrate and as an allosteric regulatory factor. We provide a novel example in which a conformational switch controls the activity of an enzyme that mediates deubiquitination.
机译:Ataxin-3是负责3型脊髓小脑共济失调的蛋白质,是一种半胱氨酸蛋白酶,可特异性切割聚泛素链并参与泛素蛋白酶体途径。酶活性位于N末端约瑟芬域中。 ataxin-3的一个不寻常的特征是它的低酶活性,特别是对于单泛素化的底物和短的泛素链。但是,约瑟芬域中赖氨酸117处的特异性泛素化通过未知机制激活了taxin-3。在这里,我们研究了K117泛素化对蛋白质结构和酶活性的影响。我们表明,共价连接的泛素位于约瑟芬域上,形成一个紧凑的球状部分,并占据一个以前认为对底物识别必不可少的泛素结合位点。这样做,泛素化通过将酶锁定在激活状态来增强酶的活性。我们的结果表明泛素既可作为底物,又可作为变构调节因子。我们提供了一个新的例子,其中构象开关控制介导去泛素化的酶的活性。

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