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分辨率为2.1埃和2.5埃的两种蓝藻C-藻蓝蛋白的精细三维结构。藻胆素-蛋白质相互作用的共同原理。

Refined three-dimensional structures of two cyanobacterial C-phycocyanins at 2.1 and 2.5 A resolution. A common principle of phycobilin-protein interaction.

作者信息

Schirmer T, Bode W, Huber R

机构信息

Max-Planck-Institut für Biochemie, Martinsried, F.R.G.

出版信息

J Mol Biol. 1987 Aug 5;196(3):677-95. doi: 10.1016/0022-2836(87)90040-4.

Abstract

The crystal structure of the light-harvesting protein-pigment complex C-phycocyanin (C-PC) from Mastigocladus laminosus (at 2.1 A resolution (1 A = 0.1 nm] has been refined by energy-restrained least-squares methods to a conventional R-factor of 21.7%. In the same way, the crystal structure of C-PC from Agmenellum quadruplicatum has been refined further (2.5 A, R = 18.4%); pyrrole rings C and D of the chromophore at position A84 have been corrected with respect to the previously reported structure. The two C-PC structures are very similar, 213 C alpha positions have a root-mean-square deviation of 0.49 A. Polar and ionic side-chain interactions are discussed in detail and the two subunits of C-PC from M. laminosus are compared to each other. All three chromophores are completely defined and their tetrapyrroles exhibit very similar geometry. The structure of a C-PC chromophore resembles a cleaved porphyrin which has been twisted roughly 180 degrees around the C-5-C-6 and C-14-C-15 bonds. Accordingly, the configuration/conformation of the chromophores is Z-anti, Z-syn, Z-anti (with the exception of the "configuration" of C-15 of chromophore B155, which is almost midway between Z and E). The three chromophores interact similarly with the protein. They arch around aspartate residues (A87, B87 and B39), and the nitrogens of pyrroles B and C are within hydrogen-bonding distance of one of the carboxylate oxygens. Most of the propionic side-chains of the chromophores form salt bridges with arginine and lysine residues. The updated relative chromophore distances and orientations confirm our conclusion that hexameric aggregates are probably the basic functional units, and that inter-hexameric energy transfer takes place preferentially via the central B84 chromophores.

摘要

层理鞭枝藻捕光蛋白色素复合物C-藻蓝蛋白(C-PC)的晶体结构(分辨率为2.1 Å(1 Å = 0.1 nm))已通过能量约束最小二乘法精修至传统R因子为21.7%。同样,四聚节球藻C-PC的晶体结构也得到了进一步精修(2.5 Å,R = 18.4%);相对于先前报道的结构,已对A84位发色团的吡咯环C和D进行了校正。这两种C-PC结构非常相似,213个Cα位置的均方根偏差为0.49 Å。详细讨论了极性和离子侧链相互作用,并对层理鞭枝藻C-PC的两个亚基进行了相互比较。所有三个发色团都已完全确定,其四吡咯呈现出非常相似的几何形状。C-PC发色团的结构类似于一个裂开的卟啉,它围绕C-5-C-6和C-14-C-15键大约扭曲了180度。因此,发色团的构型/构象为Z-反式、Z-顺式、Z-反式(发色团B155的C-15“构型”除外,其几乎处于Z型和E型之间的中间位置)。这三个发色团与蛋白质的相互作用方式相似。它们围绕天冬氨酸残基(A87、B87和B39)呈拱形,吡咯B和C的氮原子处于其中一个羧酸盐氧原子的氢键距离内。发色团的大多数丙酸侧链与精氨酸和赖氨酸残基形成盐桥。更新后的发色团相对距离和取向证实了我们的结论,即六聚体聚集体可能是基本功能单元,并且六聚体间的能量转移优先通过中心B84发色团进行。

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