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Crystal structures of trypanosoma brucei oligopeptidase B broaden the paradigm of catalytic regulation in prolyl oligopeptidase family enzymes

机译:布鲁氏锥虫寡肽酶B的晶体结构拓宽了脯氨酰寡肽酶家族酶的催化调控范式

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摘要

Oligopeptidase B cleaves after basic amino acids in peptides up to 30 residues. As a virulence factor in bacteria and trypanosomatid pathogens that is absent in higher eukaryotes, this is a promising drug target. Here we present ligand-free open state and inhibitor-bound closed state crystal structures of oligopeptidase B from Trypanosoma brucei, the causative agent of African sleeping sickness. These (and related) structures show the importance of structural dynamics, governed by a fine enthalpic and entropic balance, in substrate size selectivity and catalysis. Peptides over 30 residues cannot fit the enzyme cavity, preventing the complete domain closure required for a key propeller Asp/Glu to fix the catalytic His and Arg in the catalytically competent conformation. This size exclusion mechanism protects larger peptides and proteins from degradation. Similar bacterial prolyl endopeptidase and archael acylaminoacyl peptidase structures demonstrate this mechanism is conserved among oligopeptidase family enzymes across all three domains of life.
机译:寡肽酶B在肽中的碱性氨基酸之后切割,直至30个残基。作为高级真核生物中不存在的细菌和锥虫病原体中的毒力因子,这是一种有前途的药物靶标。在这里,我们介绍了来自非洲锥虫病(Trypanosoma brucei)的寡肽酶B的寡肽酶B的无配体开放状态和抑制剂结合的封闭状态晶体结构。这些(及相关的)结构显示了在底物尺寸选择性和催化作用中,由良好的焓和熵平衡控制的结构动力学的重要性。超过30个残基的肽无法容纳酶腔,从而阻止了关键螺旋桨Asp / Glu将催化的His和Arg固定在能催化的构象中所需的完全域封闭。这种大小排阻机制可保护较大的肽和蛋白质免于降解。相似的细菌脯氨酰内肽酶和古细菌酰基氨酰基肽酶结构表明,该机制在生命的所有三个域中的寡肽酶家族酶中都是保守的。

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