...
首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Fourier transform Raman investigation of the electronic structure and charge localization in a bacteriochlorophyll-bacteriopheophytin dimer of reaction centers from Rhodobacter sphaeroides
【24h】

Fourier transform Raman investigation of the electronic structure and charge localization in a bacteriochlorophyll-bacteriopheophytin dimer of reaction centers from Rhodobacter sphaeroides

机译:球形球形红细菌反应中心细菌叶绿素-噬菌丝素二聚体的电子结构和电荷定位的傅里叶变换拉曼研究

获取原文
获取原文并翻译 | 示例
           

摘要

The Raman spectra of a bacteriochlorophyll (BChl)-bacteriopheophytin (BPhe) heterodimeric primary electron donor from mutant Rhodobacter sphaeroides reaction centers, where histidine M202 has been replaced by leucine, have been obtained in (pre)resonance with its lowest electronic Qy state using 1064 nm excitation. For reaction centers where the heterodimer is in its reduced, neutral state, the dominant Raman scattering is from the BPhe constituent of the ground state heterodimer, and indicates that the 1064 nm-excitation wavelength is interacting with an electronic state or transition which is largely BPhe in character, such as a charge transfer state with a dominant (BChl+BPhe?) configuration. Previous electron paramagnetic studies have established that the unpaired electron spin density on the oxidized, cation radical heterodimer resides almost totally on the BChl constituent. Near infrared electronic absorption spectra of the oxidized heterodimer exhibit a weak band at 900 nm, characteristic of a BChl a·+ species. The (pre)resonance Raman spectrum of this cation radical, excited at 1064 nm, exhibits a 1723 cm?1 band attributable to the C9 keto carbonyl group of the BChl constituent whose corresponding band in wild type is observed at 1715–1717 cm?1. This 1723 cm?1 frequency for BChl in the oxidized heterodimer, compared to 1691 cm?1 for the reduced state, represents an oxidation-induced increase in frequency of +32 cm?1, similar to what is observed for the one-electron oxidation of chlorophylls in non-protic solvents. The results presented here indicate that the oxidation-induced change in vibrational frequency of the C9 keto carbonyl group of the BChl in the reaction center is not significantly perturbed by the protein.
机译:来自突变球形红球菌反应中心的细菌叶绿素(BChl)-细菌脱镁叶绿素(BPhe)异二聚体一级电子供体的拉曼光谱已在1064的电子Qy态下以(预)共振获得了组氨酸M202被亮氨酸取代,其中组氨酸M202被亮氨酸取代。 nm激发。对于异二聚体处于其还原的中性状态的反应中心,主要的拉曼散射来自基态异二聚体的BPhe成分,表明1064 nm激发波长与电子状态或跃迁(主要是BPhe)相互作用性质,例如具有显性(BChl + BPhe?)构型的电荷转移状态。先前的电子顺磁研究已确定,氧化的阳离子自由基异二聚体上的不成对电子自旋密度几乎完全位于BChl成分上。氧化的异二聚体的近红外电子吸收光谱在900 nm处显示弱带,这是BChl a +物种的特征。该阳离子自由基的(共振)拉曼光谱在1064 nm处激发,显示出1723 cm?1谱带,该谱带可归因于BChl成分的C9酮羰基,其对应的野生型谱带在1715–1717 cm?1 。与还原态的1691 cm?1相比,氧化异二聚体中的BChl的这一1723 cm?1频率代表+32 cm?1的氧化诱导频率增加,类似于单电子氧化所观察到的频率。非质子溶剂中的叶绿素含量。此处给出的结果表明,在反应中心,BChl的C9酮羰基的氧化诱导的振动频率变化并未受到蛋白质的明显干扰。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号