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可变鱼腥藻中还原质体蓝素的溶液结构

Solution structure of reduced plastocyanin from the blue-green alga Anabaena variabilis.

作者信息

Badsberg U, Jørgensen A M, Gesmar H, Led J J, Hammerstad J M, Jespersen L L, Ulstrup J

机构信息

Department of Chemistry, University of Copenhagen, H. C. Orsted Institute, Denmark.

出版信息

Biochemistry. 1996 Jun 4;35(22):7021-31. doi: 10.1021/bi960621y.

Abstract

The three-dimensional solution structure of plastocyanin from Anabaena variabilis (A.v.PCu) has been determined by nuclear magnetic resonance spectroscopy. Sixty structures were calculated by distance geometry from 1141 distance restraints and 46 dihedral angle restraints. The distance geometry structures were optimized by simulated annealing and restrained energy minimization. The average rms deviation from the mean structure for the 20 structures with the lowest total energy is 1.25 A for the backbone atoms and 1.75 A for all heavy atoms. Overall, the global tertiary fold of A.v.PCu resembles those of other plastocyanins which have been structurally characterized by X-ray diffraction and NMR methods. This holds even though A.v.PCu is longer than any other known plastocyanins, contains far less invariant amino acid residues, and has an overall charge that differs considerably from those of other plastocyanins (+1 vs -9 +/- 1 at pH > or = 7). The most striking feature of the A.v. PCu structure is the absence of the beta-turn, formed at the remote site by residues (58)-(61) in most higher plant plastocyanins. The displacement caused by the absence of this turn is compensated for by an extension of the small helix [from Ala53(51) to Ser60(58) in A.v.PCu] found in other plastocyanins. Moreover, the extra residues of A.v.PCu from Pro77 to Asp79 form an appended loop. These two features allow A.v.PCu to retain almost the same global fold as observed in other plastocyanins. From a comparison with the structures of other plastocyanins it is concluded that the lack of negatively charged residues at the remote site, rather than the specific structure of A.v.PCu, is the main reason for the failure of the remote site of this plastocyanin to function as a significant electron transfer site.

摘要

通过核磁共振光谱法测定了多变鱼腥藻质体蓝素(A.v.PCu)的三维溶液结构。利用距离几何算法从1141个距离约束和46个二面角约束计算出60种结构。通过模拟退火和受限能量最小化对距离几何结构进行了优化。对于总能量最低的20种结构,其主链原子与平均结构的平均均方根偏差为1.25埃,所有重原子的平均均方根偏差为1.75埃。总体而言,A.v.PCu的整体三级结构类似于其他已通过X射线衍射和核磁共振方法进行结构表征的质体蓝素。即便A.v.PCu比任何其他已知质体蓝素都长,含有的不变氨基酸残基少得多,且在pH≥7时其整体电荷与其他质体蓝素的整体电荷有很大差异(+1对-9±1),情况依然如此。A.v.PCu结构最显著的特征是不存在大多数高等植物质体蓝素中由残基(58)-(61)在远端位点形成的β-转角。在其他质体蓝素中发现的小螺旋[在A.v.PCu中从Ala53(51)延伸至Ser60(58)]的延长弥补了因该转角缺失而导致的位移。此外,A.v.PCu从Pro77到Asp79的额外残基形成了一个附加环。这两个特征使A.v.PCu能够保留与其他质体蓝素几乎相同的整体折叠。通过与其他质体蓝素的结构比较得出结论,该质体蓝素远端位点缺乏带负电荷的残基,而非A.v.PCu的特定结构,是该质体蓝素远端位点不能作为有效电子传递位点的主要原因。

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