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pH对蓝藻聚球藻PCC6803中二聚体胆绿素-IXα还原酶初始速率动力学的影响。

The effect of pH on the initial rate kinetics of the dimeric biliverdin-IXalpha reductase from the cyanobacterium Synechocystis PCC6803.

作者信息

Hayes Jerrard M, Mantle Timothy J

机构信息

School of Biochemistry and Immunology, Trinity College, Dublin, Ireland.

出版信息

FEBS J. 2009 Aug;276(16):4414-25. doi: 10.1111/j.1742-4658.2009.07149.x. Epub 2009 Jul 15.

Abstract

Biliverdin-IXalpha reductase from Synechocystis PCC6803 (sBVR-A) is a stable dimer and this behaviour is observed under a range of conditions. This is in contrast to all other forms of BVR-A, which have been reported to behave as monomers, and places sBVR-A in the dihydrodiol dehydrogenase/N-terminally truncated glucose-fructose oxidoreductase structural family of dimers. The cyanobacterial enzyme obeys an ordered steady-state kinetic mechanism at pH 5, with NADPH being the first to bind and NADP(+) the last to dissociate. An analysis of the effect of pH on k(cat) with NADPH as cofactor reveals a pK of 5.4 that must be protonated for effective catalysis. Analysis of the effect of pH on k(cat)/K(m)(NADPH) identifies pK values of 5.1 and 6.1 in the free enzyme. Similar pK values are identified for biliverdin binding to the enzyme-NADPH complex. The lower pK values in the free enzyme (pK 5.1) and enzyme-NADPH complex (pK 4.9) are not evident when NADH is the cofactor, suggesting that this ionizable group may interact with the 2'-phosphate of NADPH. His84 is implicated as a crucial residue for sBVR-A activity because the H84A mutant has less than 1% of the activity of the wild-type and exhibits small but significant changes in the protein CD spectrum. Binding of biliverdin to sBVR-A is conveniently monitored by following the induced CD spectrum for biliverdin. Binding of biliverdin to wild-type sBVR-A induces a P-type spectrum. The H84A mutant shows evidence for weak binding of biliverdin and appears to bind a variant of the P-configuration. Intriguingly, the Y102A mutant, which is catalytically active, binds biliverdin in the M-configuration.

摘要

来自集胞藻PCC6803的胆绿素-IXα还原酶(sBVR-A)是一种稳定的二聚体,在一系列条件下均观察到这种行为。这与所有其他形式的BVR-A形成对比,据报道其他形式的BVR-A表现为单体,sBVR-A属于二氢二醇脱氢酶/N端截短的葡萄糖-果糖氧化还原酶二聚体结构家族。这种蓝细菌酶在pH 5时遵循有序的稳态动力学机制,NADPH最先结合,NADP(+)最后解离。以NADPH作为辅因子分析pH对k(cat)的影响,发现有一个5.4的pK值,必须质子化才能进行有效催化。分析pH对k(cat)/K(m)(NADPH)的影响,在游离酶中确定了5.1和6.1的pK值。对于胆绿素与酶-NADPH复合物的结合,也确定了类似的pK值。当NADH作为辅因子时,游离酶(pK 5.1)和酶-NADPH复合物(pK 4.9)中较低的pK值不明显,这表明这个可电离基团可能与NADPH的2'-磷酸基团相互作用。His84被认为是sBVR-A活性的关键残基,因为H84A突变体的活性不到野生型的1%,并且蛋白质CD光谱显示出微小但显著的变化。通过跟踪胆绿素的诱导CD光谱可以方便地监测胆绿素与sBVR-A的结合。胆绿素与野生型sBVR-A的结合诱导出P型光谱。H84A突变体显示出胆绿素弱结合的证据,并且似乎结合了P构型的变体。有趣的是,具有催化活性的Y102A突变体以M构型结合胆绿素。

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