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荚膜红细菌基因工程反应中心的电子顺磁共振表征

EPR characterization of genetically modified reaction centers of Rhodobacter capsulatus.

作者信息

Bylina E J, Kolaczkowski S V, Norris J R, Youvan D C

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Biochemistry. 1990 Jul 3;29(26):6203-10. doi: 10.1021/bi00478a013.

Abstract

Electron paramagnetic resonance (EPR) has been used to investigate the cation and triplet states of Rhodobacter capsulatus reaction centers (RCs) containing amino acid substitutions affecting the primary donor, monomeric bacteriochlorophylls (Bchls), and the photoactive bacteriopheophytin (Bphe). The broadened line width of the cation radical in HisM200----Leu and HisM200----Phe reaction centers, whose primary donor consists of a Bchl-Bphe heterodimer, indicates a highly asymmetric distribution of the unpaired electron over the heterodimer. A T0 polarized triplet state with reduced yield is observed in heterodimer-containing RCs. The zero field splitting parameters indicate that this triplet essentially resides on the Bchl half of the heterodimer. The cation and triplet states of reaction centers containing HisM200----Gln, HisL173----Gln, GluL104----Gln, or GluL104----Leu substitutions are similar to those observed in wild type. Oligonucleotide-mediated mutagenesis has been used to change the histidine residues that are positioned near the central Mg2+ ions of the reaction center monomeric bacteriochlorophylls. Reaction centers containing serine substitutions at M180 and L153 or a threonine substitution at L153 have unaltered pigment compositions and are photochemically active. The cation and triplet states of HisL153----Leu reaction centers are similar to those observed in wild type. Triplet energy transfer to carotenoid is not observed at 100 K in HisM180----Arg chromatophores. These results have important implications for the structural requirements of tetrapyrrole binding and for our understanding of the mechanisms of primary electron transfer in the reaction center.

摘要

电子顺磁共振(EPR)已被用于研究含有影响初级供体、单体细菌叶绿素(Bchls)和光活性细菌脱镁叶绿素(Bphe)的氨基酸取代的荚膜红细菌反应中心(RCs)的阳离子态和三重态。在初级供体由Bchl - Bphe异二聚体组成的HisM200→Leu和HisM200→Phe反应中心中,阳离子自由基的线宽变宽,表明未成对电子在异二聚体上的分布高度不对称。在含有异二聚体的RCs中观察到产率降低的T0极化三重态。零场分裂参数表明该三重态基本上位于异二聚体的Bchl一半上。含有HisM200→Gln、HisL173→Gln、GluL104→Gln或GluL104→Leu取代的反应中心的阳离子态和三重态与野生型中观察到的相似。寡核苷酸介导的诱变已被用于改变位于反应中心单体细菌叶绿素中心Mg2 +离子附近的组氨酸残基。在M180和L153处含有丝氨酸取代或在L153处含有苏氨酸取代的反应中心具有未改变的色素组成并且具有光化学活性。HisL153→Leu反应中心的阳离子态和三重态与野生型中观察到的相似。在HisM180→Arg色素体中,在100 K时未观察到三重态向类胡萝卜素的能量转移。这些结果对于四吡咯结合的结构要求以及我们对反应中心初级电子转移机制的理解具有重要意义。

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