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5-氨基乙酰丙酸脱水酶:大肠杆菌酶的α和β金属结合位点的表征

5-Aminolaevulinic acid dehydratase: characterization of the alpha and beta metal-binding sites of the Escherichia coli enzyme.

作者信息

Spencer P, Jordan P M

机构信息

School of Biological Sciences, Queen Mary and Westfield College, University of London, UK.

出版信息

Ciba Found Symp. 1994;180:50-64; discussion 64-9. doi: 10.1002/9780470514535.ch4.

Abstract

The alpha and beta metal-binding sites of 5-aminolaevulinic acid dehydratase (ALAD) (porphobilinogen synthase, EC 4.2.1.24) from Escherichia coli were investigated to determine the function of each metal ion and the role of the reactive cysteines in metal binding. Occupancy of the alpha site by Zn2+ restored virtually all catalytic activity to the inactive metal-depleted ALAD (apoALAD). Occupancy of the alpha site by Co2+ also yielded an active enzyme and resulted in a charge-transfer band indicative of a single cysteine amongst the metal ligands. Subsequent labelling of this cysteine residue with 14C-labelled N-ethylmaleimide, followed by peptide analysis, indicated the involvement of Cys-130. The metal ion at the alpha site is thought to be essential for binding of the second molecule of substrate at the A substrate-binding site that forms the acetic acid side of the product, porphobilinogen. Binding of Zn2+ to the beta site restored little activity if the alpha site was unfilled. Metal ion binding to the beta site could be monitored by following the change in protein fluorescence with Zn2+ titration of apoALAD at pH 6. A conformational change upon beta site occupancy may explain why binding of Mg2+ at the alpha site can occur only if Zn2+ is bound at the beta site. The binding of Co2+ at the beta site produced an inactive enzyme that exhibited a charge-transfer band indicative of at least three cysteine ligands.

摘要

对来自大肠杆菌的5-氨基乙酰丙酸脱水酶(ALAD)(胆色素原合酶,EC 4.2.1.24)的α和β金属结合位点进行了研究,以确定每种金属离子的功能以及反应性半胱氨酸在金属结合中的作用。Zn2+占据α位点几乎使无活性的金属耗尽型ALAD(脱辅基ALAD)恢复了所有催化活性。Co2+占据α位点也产生了一种活性酶,并导致了一个电荷转移带,表明金属配体中有单个半胱氨酸。随后用14C标记的N-乙基马来酰亚胺对该半胱氨酸残基进行标记,然后进行肽分析,表明Cys-130参与其中。α位点的金属离子被认为对于在形成产物胆色素原乙酸侧的A底物结合位点上结合第二个底物分子至关重要。如果α位点未被占据,Zn2+与β位点的结合几乎不会恢复活性。通过在pH 6下用Zn2+滴定脱辅基ALAD来跟踪蛋白质荧光的变化,可以监测金属离子与β位点的结合。β位点被占据时的构象变化可能解释了为什么只有当Zn2+结合在β位点时,Mg2+才能在α位点结合。Co2+在β位点的结合产生了一种无活性的酶,该酶表现出一个电荷转移带,表明至少有三个半胱氨酸配体。

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