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通过傅里叶变换红外差示光谱监测的绿硫红假单胞菌反应中心中的光诱导电荷分离:醌振动

Light-induced charge separation in Rhodopseudomonas viridis reaction centers monitored by Fourier-transform infrared difference spectroscopy: the quinone vibrations.

作者信息

Buchanan S, Michel H, Gerwert K

机构信息

Max-Planck-Institut für Biophysik, Frankfurt, Germany.

出版信息

Biochemistry. 1992 Feb 11;31(5):1314-22. doi: 10.1021/bi00120a006.

Abstract

Static FTIR light-induced difference spectra have been recorded for reaction centers from Rhodopseudomonas viridis in the following charge-separated states: P+QA(-)-PQA, P+QB(-)-PQB, I(-)-I, I-QA(-)-IQA, and I-QA(2-)-IQA. A comparison of the I(-)-I difference spectra with the I-QA(-)-IQA difference spectra reveals new bands which can be assigned to QA- vibrations; these vibrations are also observed in the P+QA(-)-PQA and P+QB(-)-PQB difference spectra. Through an analysis of all of the static difference spectra, the electron-transfer pathway can be monitored in the infrared from the primary donor, P, to the secondary acceptor, QB, via the intermediate acceptor, I, and the primary acceptor, QA. The difference spectra are dominated by absorbance changes of prosthetic groups, with very few identifiable contributions from amino acids and little overall structural change in the protein backbone, involving only one or two residues for the various charge-separated states. Oxidation of the primary donor in the reaction center shows the characteristic absorbance changes of the 9-keto and 10-ester carbonyl groups observed upon oxidation of bacteriochlorophyll b in a non-hydrogen-bonded environment [Ballschmiter, K. H., & Katz, J. J. (1969) J. Am. Chem. Soc. 91, 2661-2677]. Reduction of the quinones in the reaction center yields absorbance changes of the carbonyls observed during reduction of quinones in a hydrogen-bonded environment [Bauscher, M., Nabedryk, E., Bagley, K., Breton, J., & Mäntele, W. (1990) FEBS Lett. 261, 191-195].(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

已记录了绿脓杆菌反应中心在以下电荷分离状态下的静态傅里叶变换红外光诱导差光谱

P⁺QA⁻-PQA、P⁺QB⁻-PQB、I⁻-I、I-QA⁻-IQA和I-QA²⁻-IQA。将I⁻-I差光谱与I-QA⁻-IQA差光谱进行比较,发现了可归属于QA⁻振动的新谱带;这些振动也在P⁺QA⁻-PQA和P⁺QB⁻-PQB差光谱中观察到。通过对所有静态差光谱的分析,可以在红外波段监测从初级供体P到次级受体QB的电子转移途径,该途径经由中间受体I和初级受体QA。差光谱主要由辅基的吸光度变化主导,氨基酸的可识别贡献很少,蛋白质主链的整体结构变化也很小,在各种电荷分离状态下仅涉及一两个残基。反应中心中初级供体的氧化显示出在非氢键环境中细菌叶绿素b氧化时观察到的9-酮基和10-酯羰基的特征吸光度变化[巴尔施米特,K. H.,& 卡茨,J. J.(1969年)《美国化学会志》91,2661 - 2677]。反应中心中醌的还原产生了在氢键环境中醌还原过程中观察到的羰基吸光度变化[鲍舍尔,M.,纳贝德里克,E.,巴格利,K.,布雷东,J.,& 曼特勒,W.(1990年)《欧洲生物化学学会联合会快报》261,191 - 195]。(摘要截断于250字)

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