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通过黄素光还原探测不同形式细胞色素 c 的反应活性。

Probing the reactivity of different forms of azurin by flavin photoreduction.

机构信息

Gorlaeus Laboratories, Leiden Institute of Chemistry, Leiden University, Leiden, The Netherlands.

出版信息

FEBS J. 2011 May;278(9):1506-21. doi: 10.1111/j.1742-4658.2011.08067.x. Epub 2011 Mar 22.

DOI:10.1111/j.1742-4658.2011.08067.x
PMID:21352498
Abstract

The reactivity of a variant of the blue copper protein, azurin from Pseudomonas aeruginosa, was investigated with laser flash photolysis and compared with the reactivity of the wild-type (WT) protein. The variant was obtained by changing the Cu ligating His117 for a glycine. The mutation creates a gap in the ligand shell of the Cu that can be filled with external ligands or water molecules. The crystal structure of the H117G variant is reported. It shows that the immediate surrounding of the Cu site in the variant exhibits less rigidity than in the WT protein and that the loop containing the Cu ligands Cys112, His117 and Met121 in the WT protein has gained flexibility in the H117G variant. Flash photolysis experiments were performed with 5-deazariboflavin and 8α-imidazolyl-(N-propylyl)-amino riboflavin as electron donors to probe the reactivity of WT and H117G azurin, and of H117G azurin for which the gap in the Cu co-ordination shell was filled with imidazole. 8α-Imidazolyl-(N-propylyl)-amino riboflavin appears one to two orders less efficient as a photo-flash reductant than 5-deazariboflavin. The reactivity of the H117G variant in the absence of external ligands appears to be 2.5-fold lower than the WT reactivity (second-order rate constants of 51 ± 2 × 10(7) m(-1) ·s(-1) versus 21 ± 1 × 10(7) m(-1) ·s(-1) ), whereas the addition of imidazole restores reactivity to above the WT level (71 ± 4 × 10(7) m(-1) ·s(-1) ). The differences are discussed in terms of structural modifications and changes in reorganizational energy and electronic coupling. Database Structural data are available in the Protein Data Bank under the accession number 3N2J.

摘要

用激光闪光光解法研究了铜蓝蛋白变体(绿脓假单胞菌来源的天青蛋白)的反应活性,并将其与野生型(WT)蛋白的反应活性进行了比较。该变体是通过将 Cu 配体 His117 的组氨酸突变为甘氨酸而获得的。该突变在 Cu 的配体壳中产生了一个空隙,可以被外部配体或水分子填充。报道了 H117G 变体的晶体结构。结果表明,变体中 Cu 位点的直接周围环境比 WT 蛋白中的刚性更小,并且 WT 蛋白中包含 Cu 配体半胱氨酸 Cys112、组氨酸 His117 和蛋氨酸 Met121 的环在 H117G 变体中获得了灵活性。使用 5-脱氮黄素和 8α-咪唑基-(N-丙基)-氨基黄素作为电子供体进行闪光光解实验,以探测 WT 和 H117G 天青蛋白以及用咪唑填充 Cu 配位壳空隙的 H117G 天青蛋白的反应活性。8α-咪唑基-(N-丙基)-氨基黄素作为光闪还原剂的效率比 5-脱氮黄素低 1 到 2 个数量级。在没有外部配体的情况下,H117G 变体的反应活性似乎比 WT 活性低 2.5 倍(二级速率常数分别为 51 ± 2 × 10(7) m(-1) ·s(-1) 和 21 ± 1 × 10(7) m(-1) ·s(-1)),而添加咪唑可将反应活性恢复到高于 WT 水平(71 ± 4 × 10(7) m(-1) ·s(-1))。这些差异是根据结构修饰以及重组能和电子耦合的变化来讨论的。数据库结构数据可在蛋白质数据库(PDB)中以 3N2J 的访问号获得。

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