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首页> 外文期刊>Archives of Biochemistry and Biophysics >Structural basis of substrate selectivity of Δ1-pyrroline- 5-carboxylate dehydrogenase (ALDH4A1): Semialdehyde chain length
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Structural basis of substrate selectivity of Δ1-pyrroline- 5-carboxylate dehydrogenase (ALDH4A1): Semialdehyde chain length

机译:Δ1-吡咯啉-5-羧酸脱氢酶(ALDH4A1)的底物选择性的结构基础:半醛链长

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The enzyme Δ1-pyrroline-5-carboxylate (P5C) dehydrogenase (aka P5CDH and ALDH4A1) is an aldehyde dehydrogenase that catalyzes the oxidation of γ-glutamate semialdehyde to l-glutamate. The crystal structures of mouse P5CDH complexed with glutarate, succinate, malonate, glyoxylate, and acetate are reported. The structures are used to build a structure-activity relationship that describes the semialdehyde carbon chain length and the position of the aldehyde group in relation to the cysteine nucleophile and oxyanion hole. Efficient 4- and 5-carbon substrates share the common feature of being long enough to span the distance between the anchor loop at the bottom of the active site and the oxyanion hole at the top of the active site. The inactive 2- and 3-carbon semialdehydes bind the anchor loop but are too short to reach the oxyanion hole. Inhibition of P5CDH by glyoxylate, malonate, succinate, glutarate, and l-glutamate is also examined. The K _i values are 0.27 mM for glyoxylate, 58 mM for succinate, 30 mM for glutarate, and 12 mM for l-glutamate. Curiously, malonate is not an inhibitor. The trends in K_i likely reflect a trade-off between the penalty for desolvating the carboxylates of the free inhibitor and the number of compensating hydrogen bonds formed in the enzyme-inhibitor complex.
机译:酶Δ1-吡咯啉-5-羧酸酯(P5C)脱氢酶(又名P5CDH和ALDH4A1)是一种醛脱氢酶,可催化γ-谷氨酸半醛氧化为l-谷氨酸。报道了与戊二酸酯,琥珀酸酯,丙二酸酯,乙醛酸酯和乙酸酯复合的小鼠P5CDH的晶体结构。该结构用于建立结构-活性关系,该关系描述半醛碳链长度和醛基相对于半胱氨酸亲核试剂和氧阴离子孔的位置。高效的4碳和5碳基材共有一个共同特征,即足够长,可以跨越活性部位底部的固定环与活性部位顶部的氧阴离子孔之间的距离。非活性的2和3碳半醛结合了锚环,但太短而无法到达氧阴离子孔。还研究了乙醛酸,丙二酸,琥珀酸,谷氨酸和l-谷氨酸对P5CDH的抑制作用。乙醛酸酯的K _i值为0.27 mM,琥珀酸酯的K _i值为58 mM,戊二酸酯的为30 mM,l-谷氨酸的为12 mM。奇怪的是,丙二酸酯不是抑制剂。 K_i的趋势可能反映了使游离抑制剂的羧酸盐去溶剂化的损失与酶-抑制剂复合物中形成的补偿氢键的数量之间的权衡。

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