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多胺氧化酶晶体结构中一条30埃长的U形催化通道。

A 30-angstrom-long U-shaped catalytic tunnel in the crystal structure of polyamine oxidase.

作者信息

Binda C, Coda A, Angelini R, Federico R, Ascenzi P, Mattevi A

机构信息

Dipartimento di Genetica e Microbiologia, Università di Pavia, Via Abbiategrasso 207, I-27100 Pavia, Italy.

出版信息

Structure. 1999 Mar 15;7(3):265-76. doi: 10.1016/s0969-2126(99)80037-9.

Abstract

BACKGROUND

Polyamines are essential for cell growth and differentiation; compounds interfering with their metabolism are potential anticancer agents. Polyamine oxidase (PAO) plays a central role in polyamine homeostasis. The enzyme utilises an FAD cofactor to catalyse the oxidation of the secondary amino groups of spermine and spermidine.

RESULTS

The first crystal structure of a polyamine oxidase has been determined to a resolution of 1.9 Angstroms. PAO from Zea mays contains two domains, which define a remarkable 30 Angstrom long U-shaped catalytic tunnel at their interface. The structure of PAO in complex with the inhibitor MDL72527 reveals the residues forming the catalytic machinery and unusual enzyme-inhibitor CH.O H bonds. A ring of glutamate and aspartate residues surrounding one of the two tunnel openings contributes to the steering of the substrate towards the inside of the tunnel.

CONCLUSIONS

PAO specifically oxidizes substrates that have both primary and secondary amino groups. The complex with MDL72527 shows that the primary amino groups are essential for the proper alignment of the substrate with respect to the flavin. Conservation of an N-terminal sequence motif indicates that PAO is member of a novel family of flavoenzymes. Among these, monoamine oxidase displays significant sequence homology with PAO, suggesting a similar overall folding topology.

摘要

背景

多胺对细胞生长和分化至关重要;干扰其代谢的化合物是潜在的抗癌剂。多胺氧化酶(PAO)在多胺稳态中起核心作用。该酶利用黄素腺嘌呤二核苷酸(FAD)辅因子催化精胺和亚精胺仲氨基的氧化。

结果

已确定多胺氧化酶的首个晶体结构,分辨率为1.9埃。来自玉米的PAO包含两个结构域,在它们的界面处形成一个显著的30埃长的U形催化通道。与抑制剂MDL72527结合的PAO结构揭示了形成催化机制的残基以及不寻常的酶 - 抑制剂C-H…O氢键。围绕两个通道开口之一的谷氨酸和天冬氨酸残基环有助于将底物导向通道内部。

结论

PAO特异性氧化具有伯氨基和仲氨基的底物。与MDL72527的复合物表明,伯氨基对于底物相对于黄素的正确排列至关重要。N端序列基序的保守性表明PAO是一个新的黄素酶家族的成员。其中,单胺氧化酶与PAO显示出显著的序列同源性,表明总体折叠拓扑结构相似。

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