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首页> 外文期刊>RSC Advances >Conformational flexibility influences structure–function relationships in tyrosyl protein sulfotransferase-2
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Conformational flexibility influences structure–function relationships in tyrosyl protein sulfotransferase-2

机译:构象灵活性影响酪氨酸蛋白磺霉转移酶-2中的结构功能关系

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Tyrosine sulfation is a very important posttranslational modification of proteins. It is catalyzed by tyrosylprotein sulfotransferase and recently became increasingly important for biomedicine and pharmacy. An important insight about structure–activity relationships of human tyrosylprotein sulfotransferase has been received by elucidating the crystal structure, but there is still no understanding about how conformational flexibility and dynamics which are fundamental protein properties influence structure–function relationships of the enzyme. In order to provide this missing but crucially important knowledge we performed a comprehensive atomistic molecular dynamics study which revealed that (i) the conformational flexibility influences sensitively key structural determinants and interactions between the enzyme, the substrate and the cofactor; (ii) a more open conformation adopted by the substrate for binding in TPST 2; (iii) the mutations of key residues related with catalysis and binding change alter the enzyme structure and influence important interactions between the enzyme, the cofactor and the substrate.
机译:酪氨酸硫化是蛋白质的一个非常重要的后期改性。它由酪氨酸氟苯甲酰旦酶催化催化,最近对生物医学和药学越来越重要。通过阐明晶体结构已经接受了对人酪蛋白酶蛋白酶酶的结构活性关系的重要见解,但仍然没有了解基本蛋白质特征的构象灵活性和动态影响酶的结构功能关系。为了提供这种缺失但重要的重要知识,我们进行了综合原子分子动力学研究,揭示了(i)构象灵活性影响敏感的关键结构决定簇和酶与辅因子之间的相互作用; (ii)基材采用的更开放的构象以在TPST 2中结合; (iii)与催化和结合变化相关的关键残基的突变改变酶结构并影响酶,辅因子和基材之间的重要相互作用。

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