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首页> 外文期刊>Journal of Molecular Biology >Crystal Structures of Mycobacteria tuberculosis and Klebsiella pneumoniae UDP-Galactopyranose Mutase in the Oxidised State and Klebsiella pneumoniae UDP-Galactopyranose Mutase in the (Active) Reduced State.
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Crystal Structures of Mycobacteria tuberculosis and Klebsiella pneumoniae UDP-Galactopyranose Mutase in the Oxidised State and Klebsiella pneumoniae UDP-Galactopyranose Mutase in the (Active) Reduced State.

机译:处于氧化态的肺结核分枝杆菌和肺炎克雷伯菌UDP-半乳糖吡喃糖突变酶的晶体结构和处于(活性)还原态的肺炎克雷伯菌UDP-半乳糖吡喃糖酶的晶体结构。

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摘要

Uridine diphosphogalactofuranose (UDP-Galf) is the precursor of the d-galactofuranose sugar found in bacterial and parasitic cell walls, including those of many pathogens. UDP-Galf is made from UDP-galactopyranose by the enzyme UDP-galactopyranose mutase. The enzyme requires the reduced FADH(-) co-factor for activity. The structure of the Mycobacterium tuberculosis mutase with FAD has been determined to 2.25A. The structures of Klebsiella pneumoniae mutase with FAD and with FADH(-) bound have been determined to 2.2A and 2.35A resolution, respectively. This is the first report of the FADH(-)-containing structure. Two flavin-dependent mechanisms for the enzyme have been proposed, one, which involves a covalent adduct being formed at the flavin and the other based on electron transfer. Using our structural data, we have examined the two mechanisms. The electron transfer mechanism is consistent with the structural data, not surprisingly, since it makes fewer demands on the precise positioning of atoms. A model based on a covalent adduct FAD requires repositioning of the enzyme active site and would appear to require the isoalloxazine ring of FADH(-) to buckle in a particular way. However, the FADH(-) structure reveals that the isoalloxazine ring buckles in the opposite sense, this apparently requires the covalent adduct to trigger profound conformational changes in the protein or to buckle the FADH(-) opposite to that seen in the apo structure.
机译:尿苷二磷酸半乳糖呋喃糖(UDP-Galf)是在细菌和寄生细胞壁(包括许多病原体的细胞壁)中发现的d-半乳糖呋喃糖糖的前体。 UDP-Galf是由UDP-半乳糖吡喃糖酶UDP-半乳糖吡喃糖制成的。该酶需要降低的FADH(-)辅助因子才能发挥作用。 FAD的结核分枝杆菌突变酶的结构已确定为2.25A。 FAD和FADH(-)绑定的肺炎克雷伯氏菌突变酶的结构已分别确定为2.2A和2.35A分辨率。这是含FADH(-)结构的第一个报告。已经提出了两种黄素依赖性酶的机理,一种涉及在黄素上形成共价加合物,另一种基于电子转移。使用我们的结构数据,我们检查了这两种机制。电子传输机制与结构数据一致,这不足为奇,因为它对原子的精确定位提出了更少的要求。基于共价加合物FAD的模型需要重新定位酶活性位点,并且似乎需要FADH(-)的异四嗪环以特定方式弯曲。但是,FADH(-)结构显示异恶嗪环以相反的方向弯曲,这显然需要共价加合物来触发蛋白质中的深刻构象变化,或使FADH(-)与apo结构相反。

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