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首页> 外文期刊>Journal of Medicinal Chemistry >Bacterial Sliding Clamp Inhibitors that Mimic the Sequential Binding Mechanism of Endogenous Linear Motifs
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Bacterial Sliding Clamp Inhibitors that Mimic the Sequential Binding Mechanism of Endogenous Linear Motifs

机译:模仿内源性线性序列的顺序结合机制的细菌滑动夹具抑制剂。

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摘要

The bacterial DNA replication machinery presents new targets for the development of antibiotics acting via novel mechanisms. One such target is the protein-protein interaction between the DNA sliding clamp and the conserved peptide linear motifs in DNA polymerases. We previously established that binding of linear motifs to the Escherichia coli sliding clamp occurs via a sequential mechanism that involves two subsites (I and II). Here, we report the development of small-molecule inhibitors that mimic this mechanism. The compounds contain tetrahydrocarbazole moieties as "anchors" to occupy subsite I. Functional groups appended at the tetrahydrocarbazole nitrogen bind to a channel gated by the side chain of M362 and lie at the edge of subsite II. One derivative induced the formation of a new binding pocket, termed subsite III, by rearrangement of a loop adjacent to subsite I. Discovery of the extended binding area will guide further inhibitor development.
机译:细菌DNA复制机制为通过新机制起作用的抗生素的开发提出了新的目标。一种这样的靶标是DNA聚合酶与DNA聚合酶中保守的肽线性基序之间的蛋白质-蛋白质相互作用。我们先前确定,线性基序与大肠杆菌滑动夹具的结合是通过涉及两个亚位点(I和II)的顺序机制发生的。在这里,我们报道了模仿这种机制的小分子抑制剂的发展。该化合物包含四氢咔唑部分作为“锚”以占据亚位点I。在四氢咔唑氮上附加的官能团结合至由M362侧链封闭的通道,并位于亚位点II的边缘。一种衍生物通过与亚位点I相邻的环的重排诱导了新的结合口袋的形成,称为亚位点III。扩展结合区的发现将指导进一步的抑制剂开发。

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