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还原型欧芹质体蓝素的高分辨率溶液结构

High-resolution solution structure of reduced parsley plastocyanin.

作者信息

Bagby S, Driscoll P C, Harvey T S, Hill H A

出版信息

Biochemistry. 1994 May 31;33(21):6611-22. doi: 10.1021/bi00187a031.

Abstract

A high-resolution three-dimensional solution structure of parsley plastocyanin has been determined using 1H-NMR-derived data. An ensemble of 30 conformers has been calculated, exhibiting an atomic root mean square distribution about the mean coordinate positions of 0.37 +/- 0.03 A for backbone atoms and 0.75 +/- 0.04 A for all heavy atoms. (These values exclude residues 8-10 which are disordered.) The global fold of parsley plastocyanin is closely similar to those of other plastocyanins which have been structurally characterized by X-ray diffraction and NMR methods. However, deletion of residues at positions 57 and 58 of the consensus plastocyanin sequence causes elimination of a turn found in most higher plant plastocyanins. This turn is located in an acidic patch binding site, which consists of two clusters of acidic residues at positions 42-45 and 59-61. These residues surround the side chain of Tyr 83, which has been shown to be involved in binding of and electron transfer from cytochrome f, one of plastocyanin's physiological partners. The acidic recognition site is further disrupted in parsley plastocyanin by nonconservative substitution of two charged residues at positions 59 and 60. The NMR-derived structures show that E53, E85, and E95 compensate for these substitutions and give parsley plastocyanin an acidic recognition site of similar extent to that of other higher plant plastocyanins.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

利用源自1H-NMR的数据,已确定了欧芹质体蓝素的高分辨率三维溶液结构。已计算出30个构象体的集合,其主链原子围绕平均坐标位置的原子均方根分布为0.37±0.03 Å,所有重原子的为0.75±0.04 Å。(这些值不包括无序的8-10位残基。)欧芹质体蓝素的整体折叠与其他已通过X射线衍射和NMR方法进行结构表征的质体蓝素非常相似。然而,在共有质体蓝素序列的57和58位删除残基会导致大多数高等植物质体蓝素中发现的一个转角消失。这个转角位于一个酸性斑块结合位点,该位点由42-45位和59-61位的两簇酸性残基组成。这些残基围绕着Tyr 83的侧链,已证明该侧链参与质体蓝素的生理伙伴之一细胞色素f的结合和电子转移。在欧芹质体蓝素中,59和60位的两个带电荷残基的非保守取代进一步破坏了酸性识别位点。源自NMR的结构表明,E53、E85和E95补偿了这些取代,使欧芹质体蓝素具有与其他高等植物质体蓝素相似程度的酸性识别位点。(摘要截短于250词)

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