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首页> 外文期刊>Archives of Biochemistry and Biophysics >Similar enzymes, different structures: Phthalate dioxygenase is an alpha(3)alpha(3) stacked hexamer, not an alpha(3)beta(3) trimer like 'normal' Rieske oxygenases
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Similar enzymes, different structures: Phthalate dioxygenase is an alpha(3)alpha(3) stacked hexamer, not an alpha(3)beta(3) trimer like 'normal' Rieske oxygenases

机译:类似的酶,不同的结构:邻苯二甲酸酯双加氧酶是一种alpha(3)alpha(3)堆积的六聚体,而不是像“正常” Rieske加氧酶那样的alpha(3)beta(3)三聚体

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Phthalate dioxygenase (PDO) is a member of a class of bacterial oxygenases that contain both Rieske [2Fe-2S] and Fe(II) mononuclear centers. Recent crystal structures of several Rieske dioxygenases showed that they exist as alpha(3)beta(3) multimers with subunits arranged head-to-tail in alpha and beta stacked planar rings. The structure of PDO, which consists of only alpha-subunits, remains to be solved. Although similar to other Rieske dioxygenases in many aspects, PDO was shown to differ in the mechanism of catalysis. Gel filtration and analytical centrifugation experiments, supplemented with mass spectrometric analysis (both ESI-MS and ESJ-GEMMA), in this work showed a hexameric arrangement of subunits in the PDO multimer. Our proposed model for the subunit arrangement in PDO postulates two alpha(3) planar rings one on top the other, similar to the alpha(3)beta(3) arrangement in other Rieske dioxygenases. Unlike other Rieske dioxygenases, this arrangement brings two Rieske and two mononuclear centers, all on separate subunits, into proximity, allowing their cooperation for catalysis. Potential reasons necessitating this unusual structural arrangement are discussed. (c) 2007 Elsevier Inc. All rights reserved.
机译:邻苯二甲酸酯双加氧酶(PDO)是一类细菌的加氧酶,其中既包含Rieske [2Fe-2S],又包含Fe(II)单核中心。几个里斯克双加氧酶的最新晶体结构表明,它们以alpha(3)beta(3)多聚体的形式存在,其亚基从头到尾排列在alpha和beta堆叠的平面环中。仅由α-亚基组成的PDO的结构仍有待解决。尽管在许多方面与其他Rieske双加氧酶相似,但PDO在催化机理上有所不同。凝胶过滤和分析离心实验,辅以质谱分析(ESI-MS和ESJ-GEMMA),在这项工作中显示了PDO多聚体中亚基的六聚体排列。我们为PDO中的亚基排列提出的模型假定两个alpha(3)平面环一个在另一个上,类似于其他Rieske双加氧酶中的alpha(3)beta(3)排列。与其他Rieske双加氧酶不同,这种安排使两个Rieske和两个单核中心(都位于单独的亚基上)接近,从而使它们可以协同催化。讨论了需要这种不同寻常的结构安排的潜在原因。 (c)2007 Elsevier Inc.保留所有权利。

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