首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Conjugation inhibitors compete with palmitic acid for binding to the conjugative traffic ATPase TrwD providing a mechanism to inhibit bacterial conjugation
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Conjugation inhibitors compete with palmitic acid for binding to the conjugative traffic ATPase TrwD providing a mechanism to inhibit bacterial conjugation

机译:结合抑制剂与棕榈酸竞争与结合交通ATPase TrwD的结合从而提供了抑制细菌结合的机制

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摘要

Bacterial conjugation is a key mechanism by which bacteria acquire antibiotic resistance. Therefore, conjugation inhibitors (COINs) are promising compounds in the fight against the spread of antibiotic resistance genes among bacteria. Unsaturated fatty acids (uFAs) and alkynoic fatty acid derivatives, such as 2-hexadecanoic acid (2-HDA), have been reported previously as being effective COINs. The traffic ATPase TrwD, a VirB11 homolog in plasmid R388, is the molecular target of these compounds, which likely affect binding of TrwD to bacterial membranes. In this work, we demonstrate that COINs are abundantly incorporated into Escherichia coli membranes, replacing palmitic acid as the major component of the membrane. We also show that TrwD binds palmitic acid, thus facilitating its interaction with the membrane. Our findings also suggest that COINs bind TrwD at a site that is otherwise occupied by palmitic acid. Accordingly, molecular docking predictions with palmitic acid indicated that it shares the same binding site as uFAs and 2-HDA, although it differs in the contacts involved in this interaction. We also identified 2-bromopalmitic acid, a palmitate analog that inhibits many membrane-associated enzymes, as a compound that effectively reduces TrwD ATPase activity and bacterial conjugation. Moreover, we demonstrate that 2-bromopalmitic and palmitic acids both compete for the same binding site in TrwD. Altogether, these detailed findings open up a new avenue in the search for effective synthetic inhibitors of bacterial conjugation, which may be pivotal for combating multidrug-resistant bacteria.
机译:细菌结合是细菌获得抗生素抗性的关键机制。因此,结合抑制剂(COINs)是对抗细菌中抗生素抗性基因传播的有前途的化合物。先前已报道不饱和脂肪酸(uFAs)和炔属脂肪酸衍生物,例如2-十六烷酸(2-HDA)是有效的COIN。交通ATPase TrwD是质粒R388中的VirB11同源物,是这些化合物的分子靶标,可能会影响TrwD与细菌膜的结合。在这项工作中,我们证明COINs已大量掺入大肠杆菌膜中,取代了棕榈酸作为膜的主要成分。我们还显示TrwD结合棕榈酸,从而促进其与膜的相互作用。我们的发现还表明,COIN在一个被棕榈酸占据的位点结合TrwD。因此,与棕榈酸的分子对接预测表明,尽管与这种相互作用涉及的接触不同,但它与uFA和2-HDA具有相同的结合位点。我们还确定了2-溴棕榈酸(一种抑制许多与膜相关的酶的棕榈酸酯类似物)作为有效降低TrwD ATPase活性和细菌结合的化合物。此外,我们证明了2-溴棕榈酸和棕榈酸都在TrwD中竞争相同的结合位点。总而言之,这些详细的发现为寻找有效的细菌结合抑制剂合成开辟了一条新途径,这可能是抵抗多药耐药细菌的关键。

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