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构巢曲霉异柠檬酸裂合酶的晶体结构及活性位点位置

The crystal structure and active site location of isocitrate lyase from the fungus Aspergillus nidulans.

作者信息

Britton K, Langridge S, Baker P J, Weeradechapon K, Sedelnikova S E, De Lucas J R, Rice D W, Turner G

机构信息

Department of Molecular Biology and Biotechnology, Krebs Institute for Biomolecular Research, The University of Sheffield, Sheffield, S10 2TN, UK.

出版信息

Structure. 2000 Apr 15;8(4):349-62. doi: 10.1016/s0969-2126(00)00117-9.

Abstract

BACKGROUND

Isocitrate lyase catalyses the first committed step of the carbon-conserving glyoxylate bypass, the Mg(2+)-dependent reversible cleavage of isocitrate into succinate and glyoxylate. This metabolic pathway is an inviting target for the control of a number of diseases, because the enzymes involved in this cycle have been identified in many pathogens including Mycobacterium leprae and Leishmania.

RESULTS

As part of a programme of rational drug design the structure of the tetrameric Aspergillus nidulans isocitrate lyase and its complex with glyoxylate and a divalent cation have been solved to 2.8 A resolution using X-ray diffraction. Each subunit comprises two domains, one of which adopts a folding pattern highly reminiscent of the triose phosphate isomerase (TIM) barrel. A 'knot' between subunits observed in the three-dimensional structure, involving residues towards the C terminus, implies that tetramer assembly involves considerable flexibility in this part of the protein.

CONCLUSIONS

Difference Fourier analysis together with the pattern of sequence conservation has led to the identification of both the glyoxylate and metal binding sites and implicates the C-terminal end of the TIM barrel as the active site, which is consistent with studies of other enzymes with this fold. Two disordered regions of the polypeptide chain lie close to the active site, one of which includes a critical cysteine residue suggesting that conformational rearrangements are essential for catalysis. Structural similarities between isocitrate lyase and both PEP mutase and enzymes belonging to the enolase superfamily suggest possible relationships in aspects of the mechanism.

摘要

背景

异柠檬酸裂解酶催化碳守恒乙醛酸旁路的首个关键步骤,即将异柠檬酸在镁离子依赖下可逆地裂解为琥珀酸和乙醛酸。这条代谢途径是控制多种疾病的一个有吸引力的靶点,因为参与此循环的酶已在包括麻风分枝杆菌和利什曼原虫在内的许多病原体中被鉴定出来。

结果

作为合理药物设计计划的一部分,利用X射线衍射,已将构巢曲霉四聚体异柠檬酸裂解酶及其与乙醛酸和二价阳离子的复合物的结构解析到2.8埃的分辨率。每个亚基由两个结构域组成,其中一个结构域采用的折叠模式与磷酸丙糖异构酶(TIM)桶高度相似。在三维结构中观察到亚基之间的一个“结”,涉及靠近C末端的残基,这意味着四聚体组装在蛋白质的这一部分涉及相当大的灵活性。

结论

差分傅里叶分析以及序列保守模式已导致确定了乙醛酸和金属结合位点,并表明TIM桶的C末端为活性位点,这与对具有这种折叠的其他酶的研究一致。多肽链的两个无序区域靠近活性位点,其中一个区域包含一个关键的半胱氨酸残基,这表明构象重排对于催化至关重要。异柠檬酸裂解酶与磷酸烯醇式丙酮酸变位酶以及属于烯醇酶超家族的酶之间的结构相似性表明在机制方面可能存在关系。

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