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Exploring the Structural Mechanism of Covalently Bound E3 Ubiquitin Ligase: Catalytic or Allosteric Inhibition?

机译:探索共价结合E3泛素连接酶的结构机制:催化剂或变构抑制症?

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Covalent inhibition has recently gained a resurgence of interest in several drug discovery areas. The expansion of this approach is based on evidence elucidating the selectivity and potency of covalent inhibitors when bound to particular amino acids of a biological target. The Nedd4-1, an E3 ubiquitin ligase, is characterized by two covalent binding sites, of which catalytic Cys_(cat)and allosteric Cys_(allo)are enclosed. This enzyme has demonstrated inhibition at both the above-mentioned binding sites; however, a detailed molecular understanding of the structural mechanism of inhibition upon Cys_(cat)and Cys_(allo)binding remains vague. This prompted us to provide the first account of investigating the preferential covalent binding mode and the underlying structural and molecular dynamic implications. Based on the molecular dynamic analyses, it was evident that although both catalytic and allosteric covalent binding led to greater stability of the enzyme, a preferential covalent mechanism of inhibition was seen in the allosteric-targeted system. This was supported by a more favorable binding energy in the allosteric site compared to the catalytic site, in addition to the larger number of residue interactions and stabilizing hydrogen bonds occurring in the allosteric covalent bound complex. The fundamental dynamic analysis presented in this report compliments, as well as adds to previous experimental findings, thus leading to a crucial understanding of the structural mechanism by which Nedd4-1 is inhibited. The findings from this study may assist in the design of more target-specific Nedd4-1 covalent inhibitors exploring the surface-exposed cysteine residues.
机译:共价抑制最近获得了几种药物发现区域的感兴趣的重新疗效。这种方法的扩展是基于当与生物靶标的特定氨基酸结合时阐明共价抑制剂的选择性和效力的证据。 NEDD4-1,E3泛素连接酶的特征在于两个共价结合位点,其中封闭催化性Cys_(猫)和变构Cys_(Allo)。该酶在上述结合位点上表现出抑制;然而,对Cys_(猫)和Cys_(Allo)结合对Cys_(猫)和Cys_(Allo)结合的结构机制的详细分子理解仍然模糊。这促使我们提供第一个调查优先共价结合模式和潜在结构和分子动态影响的第一个叙述。基于分子动态分析,显然,尽管催化和变构共价结合均导致酶的较大稳定性,但在变构针对性的系统中观察到优先的抑制机制。除了在变型共价结合复合物中发生的较大数量的残余相互作用和稳定氢键之外,与催化部位相比,在变构位点中的更有利的结合能量是通过更有利的结合能量的支持。本报告称赞的基本动态分析以及增加了先前的实验结果,从而导致对抑制NEDD4-1的结构机制的关键理解。本研究的发现可以有助于设计更具体的特异性NEDD4-1共价抑制剂,探索表面暴露的半胱氨酸残基。

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