Suppr超能文献

组氨酸190在光系统II供体侧电子/质子转移反应中对D1蛋白的参与。

Involvement of histidine 190 on the D1 protein in electron/proton transfer reactions on the donor side of photosystem II.

作者信息

Mamedov F, Sayre R T, Styring S

机构信息

Department of Biochemistry, Center for Chemistry and Chemical Engineering, University of Lund, Sweden.

出版信息

Biochemistry. 1998 Oct 6;37(40):14245-56. doi: 10.1021/bi980194j.

Abstract

Flash-induced chlorophyll fluorescence kinetics from photosystem II in thylakoids from the dark-grown wild type and two site-directed mutants of the D1 protein His190 residue (D1-H190) in Chlamydomonas reinhardtii have been characterized. Induction of the chlorophyll fluorescence on the first flash, reflecting electron transport from YZ to P680(+), exhibited a strong pH dependence with a pK of 7.6 in the dark-grown wild type which lacks the Mn cluster. The chlorophyll fluorescence decay, measured in the presence of DCMU, which reflects recombination between QA- and YZox, was also pH-dependent with a similar pK of 7.5. These results indicate participation by the same base, which is suggested to be D1-H190, in oxidation and reduction of YZ in forward electron transfer and recombination pathways, respectively. This hypothesis was tested in the D1-H190 mutants. Induction of chlorophyll fluorescence in these H190 mutants has been observed to be inefficient due to slow electron transfer from YZ to P680(+) [Roffey, R. A., et al. (1994) Biochim. Biophys. Acta 1185, 257-270]. We show that this reaction is pH-dependent, with a pK of 8. 1, and at pH >/=9, the fluorescence induction is efficient in the H190 mutants, suggesting direct titration of YZ. The efficient oxidation of YZ ( approximately 70% at pH 9.0) at high pH was confirmed by kinetic EPR measurements. In contrast to the wild type, the H190 mutants show little or no observable fluorescence decay. Our data suggest that H190 is an essential component in the electron transfer reactions in photosystem II and acts as a proton acceptor upon YZ oxidation. In the H190 mutants, this reaction is inefficient and YZ oxidation only occurs at elevated pHs when YZ itself probably is deprotonated. We also propose that H190 is able to return a proton to YZox during electron recombination from QA- in a reaction which does not take place in the D1-H190 mutants.

摘要

对莱茵衣藻中黑暗生长的野生型以及D1蛋白His190残基(D1-H190)的两个定点突变体类囊体中光系统II的闪光诱导叶绿素荧光动力学进行了表征。首次闪光时叶绿素荧光的诱导反映了从YZ到P680(+)的电子传递,在缺乏锰簇的黑暗生长野生型中,其表现出强烈的pH依赖性,pK为7.6。在DCMU存在下测量的叶绿素荧光衰减反映了QA-和YZox之间的复合,其也具有pH依赖性,pK类似,为7.5。这些结果表明,在正向电子传递和复合途径中,YZ的氧化和还原分别由同一个碱基参与,推测该碱基为D1-H190。在D1-H190突变体中对这一假设进行了验证。由于从YZ到P680(+)的电子传递缓慢,在这些H190突变体中观察到叶绿素荧光的诱导效率低下[Roffey, R. A., 等人(1994年)《生物化学与生物物理学报》1185, 257 - 270]。我们表明该反应具有pH依赖性,pK为8.1,并且在pH≥9时,H190突变体中的荧光诱导是有效的,这表明YZ被直接滴定。通过动力学EPR测量证实了在高pH下YZ的高效氧化(在pH 9.0时约为70%)。与野生型相比,H190突变体几乎没有或没有可观察到的荧光衰减。我们的数据表明,H190是光系统II中电子传递反应的重要组成部分,并且在YZ氧化时作为质子受体。在H190突变体中,该反应效率低下,并且只有在YZ本身可能去质子化的较高pH下才会发生YZ氧化。我们还提出,在电子从QA-复合的反应中,H190能够在D1-H190突变体中不发生的反应中,将一个质子返还给YZox。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验