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A new family of covalent inhibitors block nucleotide binding to the active site of pyruvate kinase

机译:一个新的共价抑制剂家族可阻断核苷酸与丙酮酸激酶活性位点的结合

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PYK (pyruvate kinase) plays a central role in the metabolism of many organisms and cell types, but the elucidation of the details of its function in a systems biology context has been hampered by the lack of specific high-affinity small-molecule inhibitors. High-throughput screening has been used to identify a family of saccharin derivatives which inhibit LmPYK (Leishmania mexicana PYK) activity in a time- (and dose-) dependent manner, a characteristic of irreversible inhibition. The crystal structure of DBS {4-[(l,l-dioxo-l,2-benzothiazol-3-yl)sulfanyl]benzoic acid} complexed with LmPYK shows that the saccharin moiety reacts with an active-site lysine residue (Lys~(335)), forming a covalent bond and sterically hindering the binding of ADP/ATP. Mutation of the lysine residue to an arginine residue eliminatedthe effect of the inhibitor molecule, providing confirmation of the proposed inhibitor mechanism. This lysine residue is conserved in the active sites of the four human PYK isoenzymes, which were also found to be irreversibly inhibited by DBS. X-ray structures of PYK isoforms show structural differences at the DBS-binding pocket, and this covalent inhibitor of PYK provides a chemical scaffold for the design of new families of potentially isoform-specific irreversible inhibitors.
机译:PYK(丙酮酸激酶)在许多生物和细胞类型的代谢中起着核心作用,但是由于缺乏特定的高亲和力小分子抑制剂,在系统生物学中阐明其功能的细节受到阻碍。高通量筛选已用于鉴定糖精衍生物家族,其以时间(和剂量)依赖性方式抑制LmPYK(墨西哥利什曼原虫PYK)活性,这是不可逆抑制的特征。 DBS {4-[((1,1-二氧杂-1,2-苯并噻唑-3-基)硫烷基]苯甲酸}与LmPYK络合的晶体结构表明糖精部分与活性位点赖氨酸残基反应(Lys〜 (335)),形成共价键并在空间上阻碍ADP / ATP的结合。赖氨酸残基突变为精氨酸残基消除了抑制剂分子的作用,从而证实了所提出的抑制剂机理。该赖氨酸残基在四个人PYK同工酶的活性位点中是保守的,也被DBS不可逆地抑制。 PYK同工型的X射线结构在DBS结合口袋处显示出结构差异,并且这种PYK共价抑制剂为设计新的潜在同工型特异性不可逆抑制剂家族提供了化学支架。

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