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马心铁细胞色素c的构象能量优化

Conformational energy refinement of horse-heart ferricytochrome c.

作者信息

Warme P K, Scheraga H A

出版信息

Biochemistry. 1975 Aug 12;14(16):3509-17. doi: 10.1021/bi00687a001.

Abstract

The reported X-ray structure of horse-heart ferricytochrome c has been refined by conformational energy calculations, using a three-stage computational procedure. In stage I, the atomic positions are adjusted to conform to idealized bond lengths and bond angles characteristic of small amino acid derivatives, while yet remaining as close as possible to the X-ray coordinates. In stage II, atomic overlaps are eliminated by adjusting the backbone and side-chain dihedral angles to minimize the nonbonded energy, hydrogen-bonded energy, and rotational energy contributions. In the final stage of refinement, the electrostatic energy and a more accurate hydrogen-bonded energy treatment are considered, in addition to the energy contributions of stage II. A "fitting potential" of gradually decreasing strength is imposed in both stages II and III, in order to keep the computed structure as similar to the x-ray structure as is consistent with a low-energy conformation. The final computed structure of cytochrome c exhibits a very low conformational energy (-504 kcal/mol) and also closely resembles the X-ray structure (RMS deviation = 0.77 A for all atoms). However, a special treatment was required in order to alter the location of the phenyl ring of phenylalanine-82. In contrast to the originally published X-ray structure, which shows the phenyl ring pointing away from the heme, the phenyl ring in the computed structure is tucked into the heme crevice, in a position similar to that observed in the reduced form of tuna cytochrome c, in the oxidized form of Rhodospirillum rubrum cytochrome c2, and also in the recently determined structure of oxidized tuna cytochrome c.

摘要

已通过构象能量计算,采用三阶段计算程序,对报道的马心铁细胞色素c的X射线结构进行了优化。在第一阶段,调整原子位置以符合小氨基酸衍生物特有的理想键长和键角,同时尽可能接近X射线坐标。在第二阶段,通过调整主链和侧链二面角来消除原子重叠,以最小化非键能、氢键能和旋转能贡献。在优化的最后阶段,除了考虑第二阶段的能量贡献外,还考虑了静电能和更精确的氢键能处理。在第二阶段和第三阶段都施加了强度逐渐降低的“拟合势”,以使计算得到的结构与X射线结构尽可能相似,同时符合低能量构象。细胞色素c的最终计算结构显示出非常低的构象能量(-504千卡/摩尔),并且也与X射线结构非常相似(所有原子的均方根偏差 = 0.77 Å)。然而,为了改变苯丙氨酸-82苯环的位置,需要进行特殊处理。与最初发表的X射线结构不同,后者显示苯环远离血红素,计算结构中的苯环被塞进血红素裂隙中,其位置类似于在金枪鱼细胞色素c的还原形式、红螺菌细胞色素c2的氧化形式以及最近测定的氧化金枪鱼细胞色素c结构中观察到的位置。

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