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PqsBC, a Condensing Enzyme in the Biosynthesis of the Pseudomonas aeruginosa Quinolone Signal

机译:PQSBC,在<斜体>假单胞菌铜绿假单胞菌的生物合成中的凝聚酶喹诺酮信号

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Pseudomonas aeruginosa produces a number of alkylquinolone-type secondary metabolites best known for their antimicrobial effects and involvement in cell-cell communication. In the alkylquinolone biosynthetic pathway, the β-ketoacyl-(acyl carrier protein) synthase III (FabH)-like enzyme PqsBC catalyzes the condensation of octanoyl-coenzyme A and 2-aminobenzoylacetate (2-ABA) to form the signal molecule 2-heptyl-4(1 H )-quinolone. PqsBC, a potential drug target, is unique for its heterodimeric arrangement and an active site different from that of canonical FabH-like enzymes. Considering the sequence dissimilarity between the subunits, a key question was how the two subunits are organized with respect to the active site. In this study, the PqsBC structure was determined to a 2 ? resolution, revealing that PqsB and PqsC have a pseudo-2-fold symmetry that unexpectedly mimics the FabH homodimer. PqsC has an active site composed of Cys-129 and His-269, and the surrounding active site cleft is hydrophobic in character and approximately twice the volume of related FabH enzymes that may be a requirement to accommodate the aromatic substrate 2-ABA. From physiological and kinetic studies, we identified 2-aminoacetophenone as a pathway-inherent competitive inhibitor of PqsBC, whose fluorescence properties could be used for in vitro binding studies. In a time-resolved setup, we demonstrated that the catalytic histidine is not involved in acyl-enzyme formation, but contributes to an acylation-dependent increase in affinity for the second substrate 2-ABA. Introduction of Asn into the PqsC active site led to significant activity toward the desamino substrate analog benzoylacetate, suggesting that the substrate 2-ABA itself supplies the asparagine-equivalent amino function that assists in catalysis.
机译:假单胞菌铜绿假单胞菌产生了许多烷基喹啉型次级代谢产物,其抗微生物作用和参与细胞间通信。在烷基喹啉生物合成途径中,β-酮酰基 - (酰基载体蛋白)合成酶III(FabH) - 样酶PQSBC催化辛酰基 - 辅酶A和2-氨基苯甲酰苯乙酸(2-ABA)的缩合以形成信号分子2-庚基-4(1小时)-quinolone。 PQSBC是一种潜在的药物靶标,对于其异二聚体布置和与典型Fabh样酶不同的活性位点是独特的。考虑亚基之间的序列异化,一个关键问题是两个亚基如何相对于活动位点组织。在这项研究中,将PQSBC结构确定为2?分辨率,揭示PQSB和PQSC具有伪-2折对称性,意外地模仿FabH同型二聚体。 PQSC具有由Cys-129和HIS-269组成的有源位点,周围的活性位点裂隙是疏水性的,并且大约两倍的相关FabH酶的体积,这可能是适应芳族基材2-ABA的要求。从生理和动力学研究中,我们将2-氨基酮酮确定为PQSBC的途径固有的竞争性抑制剂,其荧光性能可用于体外结合研究。在一个时间分辨的设置中,我们证明催化组氨酸不参与酰基酶形成,但有助于依赖于第二基板2-ABA的亲和力依赖性增加。 ASN进入PQSC活性位点导致了探针朝向亚胺氨基底底苯甲酰丙酸酯的显着活动,表明基材2-ABA本身提供有助于催化的天冬酰胺当量的氨基函数。

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