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首页> 外文期刊>Journal of Molecular Biology >Crystal Structure of the Schiff Base Intermediate Prior to Decarboxylation in the Catalytic Cycle of Aspartate alpha-Decarboxylase.
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Crystal Structure of the Schiff Base Intermediate Prior to Decarboxylation in the Catalytic Cycle of Aspartate alpha-Decarboxylase.

机译:天门冬氨酸α-脱羧酶催化循环中,在脱羧之前,席夫碱中间体的晶体结构。

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摘要

l-Aspartate alpha-decarboxylase (ADC), encoded by the panD gene, catalyzes the conversion of l-aspartate into beta-alanine. In the microorganisms, beta-alanine is required for the synthesis of pantothenate (vitamin B(5)), which is the precursor of 4'-phosphopantetheine and coenzyme A. We have determined the crystal structure of Helicobacter pylori ADC, a tetrameric enzyme, in two forms: the apo structure at 2.0A resolution and the isoasparagine complex structure at 1.55A resolution. All subunits of the tetramer are self-processed at the Gly24-Ser25 linkage, producing the smaller beta chain (residues 1-24) and the larger alpha chain (residues 25-117). Each subunit contains nine beta-strands and three alpha-helices; it is folded into the double-psi beta-barrel structure. In the apo structure, the new amino terminus of the alpha chain, Ser25, is converted into a pyruvoyl group. In the isoasparagine complex structure, the substrate analog is covalently attached to the pyruvoyl group. This structure represents the enzyme-substrate Schiff base intermediate that was proposed to form prior to the decarboxylation step in the catalytic cycle of ADC. Thus our study provides direct structural evidence for the reaction mechanism of ADC.
机译:由panD基因编码的L-天冬氨酸α-脱羧酶(ADC)催化L-天冬氨酸转化为β-丙氨酸。在微生物中,β-丙氨酸是泛酸(维生素B(5))的合成所必需的,泛酸是4'-磷酸泛素和辅酶A的前体。我们已经确定了幽门螺杆菌ADC(一种四聚体酶)的晶体结构,有两种形式:分辨率为2.0A的apo结构和分辨率为1.55A的异天冬酰胺复合物结构。四聚体的所有亚基都在Gly24-Ser25连锁处进行自我加工,从而产生较小的β链(残基1-24)和较大的α链(残基25-117)。每个亚基包含9个β链和3个α螺旋。将其折叠成双psiβ-桶形结构。在载脂蛋白结构中,α链的新氨基末端Ser25被转化为丙酮酰基。在异天冬酰胺复合物结构中,底物类似物共价附于丙酮酰基上。该结构代表了提议在ADC催化循环中的脱羧步骤之前形成的酶-底物席夫碱中间体。因此,我们的研究为ADC的反应机理提供了直接的结构证据。

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