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双鳃甘油虫血红蛋白。一氧化碳血红蛋白在1.5埃分辨率下的X射线结构。

Glycera dibranchiata hemoglobin. X-ray structure of carbonmonoxide hemoglobin at 1.5 A resolution.

作者信息

Braden B C, Arents G, Padlan E A, Love W E

机构信息

Thomas C. Jenkins Department of Biophysics, Johns Hopkins University, Baltimore, MD 21218-2684.

出版信息

J Mol Biol. 1994 Apr 22;238(1):42-53. doi: 10.1006/jmbi.1994.1266.

Abstract

The structure of carbonmonoxide Glycera hemoglobin has been determined to 1.5 A resolution by X-ray diffraction. The model, including ordered solvent, has been refined by the method of restrained least-squares to an R-value of 0.146. The positions of 1104 protein atoms and the oxygens of 155 water molecules have been determined with an estimated r.m.s. error of 0.10 to 0.13 A. The r.m.s. errors in protein geometry are 0.027 A for bond distances, 0.038 A for angle distances and 0.012 A for deviations of planar groups from their least-squares planes. The iron lies exactly in the plane of the heme nitrogens and the heme is very slightly domed toward the proximal side. The carbon-oxygen bond in the carbon monoxide ligand is bent 7.9 degrees away from the normal to the plane of the heme nitrogens. The ligand is in close contact with, and slightly removed from the heme normal by distal residues Leu 58(E7) and Val62(E11). Comparison of the CO structure with the 1.5 A deoxy structure shows that the majority of the rather small structural changes occurring upon ligation are mediated by movement of the heme due to shortening of the five iron to nitrogen bonds. There is very little empty space inside the molecule, and no direct channel from the solvent into the heme pocket; however, rotation of the side-chain of the distal leucine residue Leu 58(E6) could provide a ligand pathway.

摘要

通过X射线衍射已确定一氧化碳甘油血红蛋白的结构分辨率为1.5埃。该模型,包括有序溶剂,已通过约束最小二乘法精修至R值为0.146。已确定1104个蛋白质原子的位置和155个水分子的氧原子位置,估计均方根误差为0.10至0.13埃。蛋白质几何结构的均方根误差为:键长0.027埃,键角0.038埃,平面基团与其最小二乘平面的偏差0.012埃。铁原子恰好位于血红素氮原子平面内,血红素向近端略微呈穹顶状。一氧化碳配体中的碳 - 氧键偏离血红素氮原子平面的法线7.9度。该配体与远端残基Leu 58(E7)和Val62(E11)紧密接触并略微偏离血红素法线。将CO结构与1.5埃的脱氧结构进行比较表明,结合时发生的大部分相当小的结构变化是由血红素的移动介导的,这是由于五个铁 - 氮键缩短所致。分子内部几乎没有空隙,也没有从溶剂到血红素口袋的直接通道;然而,远端亮氨酸残基Leu 58(E6)侧链的旋转可以提供一条配体途径。

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