Sheriff S, Hendrickson W A, Smith J L
Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY 10032.
J Mol Biol. 1987 Sep 20;197(2):273-96. doi: 10.1016/0022-2836(87)90124-0.
The molecular model of myohemerythrin, an oxygen-carrying protein from sipunculan worms, has been refined by stereochemically restrained least-squares minimization at 1.7/1.3 A resolution to a conventional R-value of 0.158. The estimated positional standard deviation is better than 0.15 A for most of the 979 protein atoms. The average isotropic displacement parameter, B, for the protein atoms is 23.1 A2. This high average B parameter appears to be due to the overall motion of the molecule, which correlates with the observed anisotropic diffraction. The side-chains of seven residues were modeled in two conformations, i.e. the side-chains were discretely disordered, and B parameters for several lysine and glutamate side-chains indicate that they are poorly localized. Of the residues in myohemerythrin, 66% are helical, with 62% occurring in four long alpha-helices with mean values for the backbone torsion angles of phi = -65 degrees, psi = -42 degrees, and for the hydrogen bonds distances of N ... O, 3.0 A and H ... O, 2.1 A, and angles of N ... O = C, 153 degrees, N-H ... O, 157 degrees, and H ... O = C, 147 degrees. For two-thirds of the alpha-helical residues, the torsional rotation of the C alpha-C beta bond, chi 1, is approximately -60 degrees, and for one-third chi 1 is approximately 180 degrees. Although most turns in myohemerythrin are well-categorized by previous classification, two do not fit in established patterns. Also included in the refined model are three sulfate ions, all partially occupied, and 157 water molecules, 40% of which are modeled fully occupied. Only one water molecule is internal to the protein, the remainder occur on the surface and are observed principally between symmetry-related molecules contributing, along with van der Waals' contacts, most of the interactions between molecules. There are eight intermolecular protein-protein hydrogen bonds, of which only four are between well-located atoms.
来自星虫的携氧蛋白肌红血球素的分子模型,通过在1.7/1.3埃分辨率下进行立体化学约束最小二乘优化,常规R值达到了0.158。对于979个蛋白质原子中的大多数,估计的位置标准偏差优于0.15埃。蛋白质原子的平均各向同性位移参数B为23.1埃²。这种较高的平均B参数似乎是由于分子的整体运动,这与观察到的各向异性衍射相关。七个残基的侧链以两种构象建模,即侧链离散无序,几个赖氨酸和谷氨酸侧链的B参数表明它们定位不佳。肌红血球素中66%的残基是螺旋状的,其中62%存在于四个长α螺旋中,主链扭转角的平均值为φ = -65°,ψ = -42°,氢键距离N...O为3.0埃,H...O为2.1埃,角度N...O = C为153°,N - H...O为157°,H...O = C为147°。对于三分之二的α螺旋残基,Cα - Cβ键的扭转旋转χ1约为-60°,对于三分之一的残基,χ1约为180°。尽管肌红血球素中的大多数转角已被先前的分类很好地归类,但有两个不符合既定模式。精修模型中还包括三个硫酸根离子,均为部分占据,以及157个水分子,其中40%被建模为完全占据。只有一个水分子在蛋白质内部,其余的在表面,主要出现在对称相关分子之间,与范德华接触一起构成了分子间的大部分相互作用。有八个分子间蛋白质 - 蛋白质氢键,其中只有四个是在定位良好的原子之间。