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Mechanistic Studies of 1-Aminocyclopropane-1-carboxylate Deaminase: Characterization of an Unusual Pyridoxal 5 '-Phosphate-Dependent Reaction

机译:1-氨基环丙烷-1-羧酸脱氨酶的机理研究:异常的吡咯醛5'-磷酸盐依赖性反应的表征

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1-Aminocyclopropane-1-carboxylic acid (ACC) deaminase (ACCD) is a pyridoxal 5'-phosphate (PLP)-dependent enzyme that cleaves the cyclopropane ring of ACC, to give alpha-ketobutyric acid and ammonia as products. The cleavage of the C-alpha-C-beta bond of an amino acid substrate is a rare event in PLP-dependent enzyme catalysis. Potential chemical mechanisms involving nucleophile- or acid-catalyzed cyclopropane ring opening have been proposed for the unusual transformation catalyzed by ACCD, but the actual mode of cyclopropane ring cleavage remains obscure. In this report, we aim to elucidate the mechanistic features of ACCD catalysis by investigating the kinetic properties of ACCD from Pseudomonas sp. ACP and several of its mutant enzymes. Our studies suggest that the pK(a) of the conserved active site residue, Tyr294, is lowered by a hydrogen bonding interaction with a second conserved residue, Tyr268. This allows Tyr294 to deprotonate the incoming amino group of ACC to initiate the aldimine exchange reaction between ACC and the PLP coenzyme and also likely helps to activate Tyr294 for a role as a nucleophile to attack and cleave the cyclopropane ring of the substrate. In addition, solvent kinetic isotope effect (KIE), proton inventory, and C-13 KIE studies of the wild type enzyme suggest that the C-alpha-C-beta bond cleavage step in the chemical mechanism is at least partially rate-limiting under k(cat)/K-m conditions and is likely preceded in the mechanism by a partially rate-limiting step involving the conversion of a stable gem-diamine intermediate into a reactive external aldimine intermediate that is poised for cyclopropane ring cleavage. When viewed within the context of previous mechanistic and structural studies of ACCD enzymes, our studies are most consistent with a mode of cyclopropane ring cleavage involving nucleophilic catalysis by Tyr294.
机译:1-氨基环丙烷-1-甲酸(ACC)脱氨酶(ACCD)是一种吡咯醛5'-磷酸(PLP)依赖性酶,可裂解ACC的环丙烷环,生成α-酮丁酸和氨。氨基酸底物的C-α-C-β键断裂在PLP依赖性酶催化中是罕见的。对于ACCD催化的异常转化,已提出了涉及亲核试剂或酸催化的环丙烷开环的潜在化学机理,但是环丙烷环裂解的实际模式仍然不清楚。在本报告中,我们旨在通过研究假单胞菌属的ACCD的动力学特性来阐明ACCD催化的机理。 ACP及其几种突变酶。我们的研究表明,与第二个保守残基Tyr268的氢键相互作用降低了保守的活性位点残基Tyr294的pK(a)。这使Tyr294能够使ACC的传入氨基去质子化,从而启动ACC与PLP辅酶之间的醛亚胺交换反应,还可能有助于激活Tyr294,使其具有亲核试剂的功能,攻击并裂解底物的环丙烷环。此外,溶剂动力学同位素效应(KIE),质子库和对野生型酶的C-13 KIE研究表明,化学机理中的C-α-C-β键裂解步骤至少在以下条件下是限速的k(cat)/ Km条件,并且可能是在机理中先进行了部分限速步骤,该步骤涉及将稳定的宝石二胺中间体转化为反应性外部醛亚胺中间体,该中间体准备进行环丙烷环裂解。当在以前的ACCD酶的机理和结构研究的背景下进行观察时,我们的研究与涉及Tyr294亲核催化的环丙烷环裂解方式最一致。

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