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豌豆光敏色素A发色团口袋的突变分析:脱辅基光敏色素A的发色团组装及光可逆性

Mutational analysis of the pea phytochrome A chromophore pocket: chromophore assembly with apophytochrome A and photoreversibility.

作者信息

Deforce L, Furuya M, Song P S

机构信息

Department of Chemistry, University of Nebraska, Lincoln 68588-0304.

出版信息

Biochemistry. 1993 Dec 28;32(51):14165-72. doi: 10.1021/bi00214a014.

Abstract

Ten site-specific mutants of pea apophytochrome A were expressed in Saccharomyces cerevisiae and analyzed for chromophore assembly with apoprotein and photoreversible absorbance changes. The mutants constitute two specific changes for each of five conserved amino acid residues located in the microenvironment of the chromophore attachment residue, which is Cys-323 in pea phytochrome A. All mutant apophytochromes were autocatalytically able to covalently attach phycocyanobilin, indicating that there were no major structural perturbations in the apoproteins. However, the rate of chromophore ligation varied significantly among the mutants. Spectrally, the mutant holophytochromes are of three types: mutant phytochromes that are indistinguishable from the wild-type adduct, mutants with blue-shifted Pr and Pfr absorption maxima compared to the wild-type adduct, and mutants that are not photoreversible. From an analysis of the results, we concluded that the residues Asp-309, Arg-318, His-321, and Gln-326 are probably not catalytically involved in the chromophore ligation reaction, but some residues may play significant structural and stereochemical roles. Arg-318 might anchor the chromophore, as has been suggested [Partis, M. D., & Grimm, R. (1990) Z. Naturforsch, 45c, 987-998; Parker, W., et al. (1993) Bioconjugate Chem. (in press)]. The conserved Gln-326, three residues downstream from the chromophore attachment site, is not electrostatically critical for the spectral integrity and photoreversibility of phytochrome, but this residue is sterically important to the lyase activity. It appears that the role of the five amino acid residues in the N- and C-terminal vicinities of the chromophore binding Cys-323 is structural rather than catalytic for the ligation reaction.

摘要

豌豆脱辅基光敏色素A的10个位点特异性突变体在酿酒酵母中表达,并分析其与脱辅基蛋白的发色团组装情况以及光可逆吸光度变化。这些突变体针对位于发色团附着残基微环境中的5个保守氨基酸残基中的每一个都构成了两个特定变化,该发色团附着残基在豌豆光敏色素A中为Cys-323。所有突变体脱辅基光敏色素都能自动催化共价连接藻蓝胆素,这表明脱辅基蛋白中没有重大的结构扰动。然而,发色团连接的速率在突变体之间有显著差异。从光谱上看,突变体全光敏色素有三种类型:与野生型加合物无法区分的突变体光敏色素、与野生型加合物相比Pr和Pfr吸收最大值发生蓝移的突变体以及不可逆光的突变体。通过对结果的分析,我们得出结论,Asp-309、Arg-318、His-321和Gln-326残基可能在发色团连接反应中不具有催化作用,但某些残基可能发挥重要的结构和立体化学作用。正如所提出的那样,Arg-318可能锚定发色团[Partis, M. D., & Grimm, R. (1990) Z. Naturforsch, 45c, 987-998; Parker, W., et al. (1993) Bioconjugate Chem. (in press)]。保守的Gln-326位于发色团附着位点下游三个残基处,对光敏色素的光谱完整性和光可逆性在静电方面并不关键,但该残基对裂合酶活性在空间上很重要。看来,发色团结合Cys-323的N端和C端附近的5个氨基酸残基在连接反应中的作用是结构性的而非催化性的。

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