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Evolution of enzymatic activity in the tautomerase superfamily: Mechanistic and structural consequences of the L8R mutation in 4-oxalocrotonate tautomerase

机译:互变异构酶超家族中酶活性的演变:4-草酰巴豆酸酯互变异构酶L8R突变的机制和结构后果

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摘要

4-Oxalocrotonate tautomerase (4-OT) and trans-3-chloroacrylic acid dehalogenase (CaaD) are members of the tautomerase superfamily, a group of structurally homologous proteins that share a beta-alpha-beta fold and a catalytic amino-terminal proline. 4-OT, from Pseudomonas putida mt-2, catalyzes the conversion of 2-oxo-4-hexenedioate to 2-oxo-3-hexenedioate through the dienol intermediate 2-hydroxymuconate in a catabolic pathway for aromatic hydrocarbons. CaaD, from Pseudomonas pavonaceae 170, catalyzes the hydrolytic dehalogenation of trans-3-chloroacrylate in the trans-1,3-dichloropropene degradation pathway. Both reactions may involve an arginine-stabilized enediolate intermediate, a capability that may partially account for the low-level CaaD activity of 4-OT. Two active-site residues in 4-OT, Leu-8 and Ile-52, have now been mutated to the positionally conserved and catalytic ones in CaaD, alphaArg-8, and alphaGlu-52. The L8R and L8R/I52E mutants show improved CaaD activity (50- and 32-fold increases in k(cat)/K(m), respectively) and diminished 4-OT activity (5- and 1700-fold decreases in k(cat)/K(m), respectively). The increased efficiency of L8R-4-OT for the CaaD reaction stems primarily from an 8.8-fold increase in k(cat), whereas that of the L8R/I52E mutant is due largely to a 23-fold decrease in K(m). The presence of the additional arginine residue in the active site of L8R-4-OT does not alter the pK(a) of the Pro-1 amino group from that measured for the wild type (6.5 +/- 0.1 versus 6.4 +/- 0.2). Moreover, the crystal structure of L8R-4-OT is comparable to that of the wild type. Hence, the enhanced CaaD activity of L8R-4-OT is likely due to the additional arginine residue that can participate in substrate binding and/or stabilization of the putative enediolate intermediate. The results also suggest that the evolution of new functions within the tautomerase superfamily could be quite facile, requiring only a few strategically placed active-site mutations.
机译:4-氧代巴豆酸互变异构酶(4-OT)和反式3-氯丙烯酸脱卤素酶(CaaD)是互变异构酶超家族的成员,互家族是一组结构同源的蛋白质,具有β-α-β折叠和催化的氨基末端脯氨酸。来自恶臭假单胞菌mt-2的4-OT可以催化2-氧代4-己烯二酸酯通过芳族烃分解代谢途径中的二烯醇中间体2-羟基粘康酸酯转化为2-氧代-3-己烯二酸酯。来自假单胞菌170的CaaD催化反式1,3-二氯丙烯降解途径中反式3-氯丙烯酸酯的水解脱卤作用。这两个反应都可能涉及精氨酸稳定的烯丙酸酯中间体,这种能力可能部分解释了4-OT的低水平CaaD活性。现在已将4-OT中的两个活性位点残基Leu-8和Ile-52突变为CaaD,alphaArg-8和alphaGlu-52中位置保守和催化的残基。 L8R和L8R / I52E突变体显示出改善的CaaD活性(k(cat)/ K(m)分别增加50和32倍)和4-OT活性降低(k(cat)减少5和1700倍)/ K(m))。 L8R-4-OT对CaaD反应的效率提高主要是由于k(cat)升高了8.8倍,而L8R / I52E突变体的效率很大程度上是由于K(m)降低了23倍。 L8R-4-OT的活性位点中存在额外的精氨酸残基不会改变Pro-1氨基的pK(a)与野生型相比(6.5 +/- 0.1与6.4 +/- 0.2)。此外,L8R-4-OT的晶体结构与野生型相当。因此,L8R-4-OT的CaaD活性增强可能是由于额外的精氨酸残基可以参与底物结合和/或假定的烯二醇中间体的稳定化。结果还表明,互变异构酶超家族中新功能的进化可能非常容易,仅需要几个策略性定位的活性位点突变即可。

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