新型氨酰基- trna合成酶抑制剂的抗菌作用。

J Pohlmann, H Brötz-Oesterhelt
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引用次数: 45

摘要

细菌对已知种类抗生素的耐药率不断上升,这是一项严峻的全球挑战。因此,寻找新的化学实体,解决新的细菌目标仍在进行中。氨基酰基trna合成酶(aa-RS)是蛋白质生物合成的必需酶,是抗菌研究中一个有趣的靶标。这些酶存在于所有生物体中,它们是信使rna (mRNA)模板通过特异性转移rna (tRNAs)作为适配器分子高度特异性翻译成蛋白质所必需的。当一个aa-RS被抑制时,相应的tRNA不带电,因此无法翻译。这导致蛋白质合成抑制,进而导致细胞生长停滞。因此,每一种抑制任何一种aa-RS的化合物都是潜在的抗菌剂。这一原理的临床应用被天然产物Ile-RS抑制剂假单酸所证实,目前作为局部应用的抗菌剂上市。已经确定了多种抑制aa-RS的化学结构。这些抑制剂要么是从天然来源分离出来的,要么是人工合成的。合成抑制剂是天然抑制剂的修饰物,天然合成酶底物和反应中间体的衍生物,或通过化合物文库筛选确定的化合物。本文综述了近年来不同类型的aa-RS抑制剂的研究进展及其在体外和体内的抗菌潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New aminoacyl-tRNA synthetase inhibitors as antibacterial agents.

Increasing rates of bacterial resistance to known classes of antibiotics present a severe global challenge. As a consequence, the search for new chemical entities that address novel bacterial targets remains ongoing. Aminoacyl-tRNA synthetases (aa-RS) are essential enzymes for protein biosynthesis and emerged as an interesting target class in antibacterial research. These enzymes are present in all living organisms, and they are indispensable for the highly specific translation of the messenger-RNA (mRNA) template into protein via specific transfer-RNAs (tRNAs) as adapter molecules. When one aa-RS is inhibited, the corresponding tRNA is not charged and is therefore unavailable for translation. This leads to protein synthesis inhibition, which, in turn, causes cell growth arrest. Consequently, each compound that inhibits any of the aa-RS is a potential antibacterial agent. The clinical utility of this principle is proven by the natural product Ile-RS inhibitor pseudomonic acid, which is currently marketed as an antibacterial agent for topical application. Various chemical structures that inhibit aa-RS have been identified. These inhibitors have either been isolated from natural sources or have been generated synthetically. The synthetic inhibitors are modifications of natural inhibitors, derivatives of the natural synthetase substrates and reaction intermediates, or have been identified by screening of compound libraries. The recent progress achieved with these different classes of aa-RS inhibitors and their antibacterial potential in vitro and in vivo is discussed in this review.

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