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Synthesis of a phosphonate-linked aminoglycoside-coenzyme A bisubstrate and use in mechanistic studies of an enzyme involved in aminoglycoside resistance

机译:膦酸酯连接的氨基糖苷-辅酶A的合成及其在涉及氨基糖苷抗性的酶的机理研究中的应用

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摘要

Aminoglycoside N-6′-acetyltransferases (AAC(6′)s) are important determinants of antibiotic resistance. A good mechanistic understanding of these enzymes is essential to overcome aminoglycoside resistance. We have previously reported the synthesis of amide-linked and sulfonamide-linked aminoglycoside-coenzyme A conjugates which were useful mechanistic and structural probes of AAC(6′)s. We report here the synthesis of a phosphonate-linked aminoglycoside-coenzyme A variant, which is expected to be a superior mimic of the tetrahedral intermediate proposed for catalysis by AAC(6′)s. This synthetic target is especially challenging for a number of reasons including the presence of multiple functional groups, the water solubility of both starting materials, and incompatibility of P(III) chemistry with water. We have overcome these challenges by adding the expensive coenzyme A in the last step via an elegant Michael-type addition onto a vinylphosphonate in water. Overall, a single protection step was needed. The decreased inhibitory potency of this bisubstrate compared to that of the amide-linked analog suggests that Enterococcus faecium AAC(6′)-Ii may not stabilize the proposed tetrahedral intermediate, and may act mainly via proximity catalysis.
机译:氨基糖苷N-6'-乙酰基转移酶(AAC(6')s)是抗生素耐药性的重要决定因素。对这些酶的良好机械理解对于克服氨基糖苷抗性至关重要。我们先前已经报道了酰胺连接和磺酰胺连接的氨基糖苷-辅酶A缀合物的合成,它们是AAC(6')s的有用的机理和结构探针。我们在这里报告了膦酸酯连接的氨基糖苷-辅酶A变体的合成,该变体有望成为拟由AAC(6')催化的四面体中间体的优良模拟物。由于多种原因,该合成靶标尤其具有挑战性,包括多个官能团的存在,两种原料的水溶性以及P(III)化学与水的不相容性。我们克服了这些挑战,在最后一步通过将优雅的Michael型添加物添加到水中的乙烯基膦酸酯中来添加昂贵的辅酶A。总体而言,需要一个保护步骤。与酰胺连接的类似物相比,该双底物的抑制力降低表明粪肠球菌AAC(6')-Ii可能无法稳定拟议的四面体中间体,并且可能主要通过邻近催化起作用。

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