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首页> 外文期刊>Journal of Medicinal Chemistry >Macrocyclic inhibitors for Peptide deformylase: a structure-activity relationship study of the ring size.
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Macrocyclic inhibitors for Peptide deformylase: a structure-activity relationship study of the ring size.

机译:肽去甲酰基酶大环抑制剂:环大小的结构-活性关系研究。

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摘要

Peptide deformylase (PDF) catalyzes the removal of the N-terminal formyl group from newly synthesized polypeptides in eubacteria. Its essential role in bacterial cells but not in mammalian cells makes it an attractive target for antibacterial drug design. We have previously reported an N-formylhydroxylamine-based, metal-chelating macrocyclic PDF inhibitor, in which the P(1)' and P(3)' side chains are covalently joined. In this work, we have carried out a structure-activity relationship study on the size of the macrocycle and found that 15-17-membered macrocycles are optimal for binding to the PDF active site. Unlike the acyclic compounds, which are simple competitive inhibitors, the cyclic compounds all act as slow-binding inhibitors. As compared to their acyclic counterparts, the cyclic inhibitors displayed 20-50-fold higher potency against the PDF active site (K(I) as low as 70 pM), improved selectivity toward PDF, and improved the metabolic stability in rat plasma. Some of the macrocyclic inhibitorshad potent, broad spectrum antibacterial activity against clinically significant Gram-positive and Gram-negative pathogens. These results suggest that the macrocyclic scaffold provides an excellent lead for the development of a new class of antibiotics.
机译:肽去甲酰基化酶(PDF)催化从真细菌中新合成的多肽中去除N末端甲酰基。它在细菌细胞中而不是在哺乳动物细胞中的重要作用使其成为抗菌药物设计的有吸引力的靶标。我们以前曾报道过一种基于N-甲酰基羟胺的金属螯合大环PDF抑制剂,其中P(1)'和P(3)'侧链共价连接。在这项工作中,我们对大环的大小进行了结构-活性关系研究,发现15-17元大环最适合与PDF活性位点结合。与无环化合物(它们是简单的竞争性抑制剂)不同,这些环化合物均起缓慢结合抑制剂的作用。与它们的无环类似物相比,该环状抑制剂对PDF活性位点(K(I)低至70 pM)显示出20至50倍的效力,对PDF的选择性提高,并且在大鼠血浆中改善了代谢稳定性。一些大环抑制剂对临床上重要的革兰氏阳性和革兰氏阴性病原体具有有效的广谱抗菌活性。这些结果表明,大环支架为新型抗生素的开发提供了极好的线索。

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