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Novel approach to quorum quenching: rational design of antibacterials in combination with hexahistidine-tagged organophosphorus hydrolase

机译:Quorum淬火的新方法:六三氨基标记的有机磷酶组合抗菌设计的理性设计

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摘要

N-acyl homoserine lactones (AHLs) are quorum sensing (QS) signal molecules used by most Gram-negative pathogenic bacteria. In this article the lactonase activity of the preparations based on hexahistidine-tagged organophosphorus hydrolase (His6-OPH) towards AHLs was studied. Initially, three of the most interesting β-lactam antibiotics were selected from seven that were trialed during molecular docking to His6-OPH. Combinations of antibiotics (meropenem, imipenem, ceftriaxone) and His6-OPH taken in the native form or in the form of non-covalent enzyme-polyelectrolyte complexes (EPCs) with poly(glutamic acid) or poly(aspartic acid) were obtained and investigated. The lactonase activity of the preparations was investigated under different physical-chemical conditions in the hydrolysis of AHLs [N-butyryl-D,L-homoserine lactone, N-(3-oxooctanoyl)-D,L-homoserine lactone, N-(3-oxododecanoyl)-L-homoserine lactone]. An increased efficiency of catalytic action and stability of the lactonase activity of His6-OPH was shown for its complexes with antibiotics and was confirmed in trials with bacterial strains. The broadening of the catalytic action of the enzyme against AHLs was revealed in the presence of the meropenem. Results of molecular docking of AHLs to the surface of the His6-OPH dimer in the presence of antibiotics allowed proposing the mechanism of such interference based on a steric repulsion of the carbon chain of hydrolyzed AHLs by the antibiotics bounded to the enzyme surface.
机译:N-酰基均静脉内酯(AHL)是大多数革兰氏阴性致病细菌使用的法定感测(QS)信号分子。在本文中,研究了基于六三氨基标记的有机磷酶水解酶(His6-OPH)朝向AHLs的制剂的乳酰酶活性。最初,其中三种最有趣的β-内酰胺抗生素选自七种在分子对接至His6-OPH期间试验。获得抗生素(MEROPENEM,IMIPENEM,CEFTRIAXONE)和HIS6-OPH以天然形式或具有聚(谷氨酸)或聚(天冬氨酸)的非共价酶 - 聚电解质配合物(EPC)的形式的组合进行了研究,并研究。在AHLS水解的不同物理化学条件下研究制剂的乳酰酶活性[N-丁酰基-D,L-均静脉内酯,N-(3-牛康辛酰基)-D,L-均静脉内酯,N-(3 -OxododeCanoyl)-L-均静脉内酯]。催化作用效率提高了His6-OPH的催化作用和稳定性,其复合物与抗生素的复合物,并在具有细菌菌株的试验中证实。在Meropenem存在下揭示了酶催化作用对AHL的催化作用。在存在抗生素存在下,在存在抗生素的情况下,基于酶表面的抗生素的碳链的碳链的碳链的空间排斥来提出这种干扰的机理的抗生素的碳链的机理。

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