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Application of Fragment-Based Screening to the Design of Inhibitors of Escherichia coli DsbA

机译:基于片段的筛选在大肠杆菌DsbA抑制剂设计中的应用

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摘要

The thiol-disulfide oxidoreductase enzyme DsbA catalyzes the formation of disulfide bonds in the periplasm of Gram-negative bacteria. DsbA substrates include proteins involved in bacterial virulence. In the absence of DsbA, many of these proteins do not fold correctly, which renders the bacteria avirulent. Thus DsbA is a critical mediator of virulence and inhibitors may act as antivirulence agents. Biophysical screening has been employed to identify fragments that bind to DsbA from Escherichia coli. Elaboration of one of these fragments produced compounds that inhibit DsbA activity in vitro. In cell-based assays, the compounds inhibit bacterial motility, but have no effect on growth in liquid culture, which is consistent with selective inhibition of DsbA. Crystal structures of inhibitors bound to DsbA indicate that they bind adjacent to the active site. Together, the data suggest that DsbA may be amenable to the development of novel antibacterial compounds that act by inhibiting bacterial virulence.
机译:硫醇-二硫键氧化还原酶DsbA催化革兰氏阴性菌周质中二硫键的形成。 DsbA底物包括与细菌毒力有关的蛋白质。在缺乏DsbA的情况下,许多这些蛋白质无法正确折叠,从而使细菌无毒。因此,DsbA是毒力的关键介质,抑制剂可以充当抗毒剂。已采用生物物理筛选来鉴定与大肠杆菌中DsbA结合的片段。这些片段之一的加工产生了在体外抑制DsbA活性的化合物。在基于细胞的测定中,这些化合物抑制细菌运动,但对液体培养中的生长没有影响,这与DsbA的选择性抑制相一致。与DsbA结合的抑制剂的晶体结构表明它们与活性位点相邻结合。总之,数据表明DsbA可能适合通过抑制细菌毒力起作用的新型抗菌化合物。

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