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球形红杆菌反应中心异二聚体突变体的斯塔克光谱学

Stark spectroscopy of the Rhodobacter sphaeroides reaction center heterodimer mutant.

作者信息

Hammes S L, Mazzola L, Boxer S G, Gaul D F, Schenck C C

机构信息

Department of Chemistry, Stanford University, CA 94305.

出版信息

Proc Natl Acad Sci U S A. 1990 Aug;87(15):5682-6. doi: 10.1073/pnas.87.15.5682.

Abstract

The effect of an electric field has been measured on the absorption spectrum (Stark effect) of the heterodimer mutant (M)H202L of Rhodobacter sphaeroides reaction centers, where the primary electron donor consists of one bacteriochlorophyll alpha and one bacteriopheophytin alpha. The electronic absorption spectrum of the heterodimer mutant from 820-950 nm is relatively featureless in a poly(vinyl alcohol) film, but it exhibits some structure in a glycerol/water glass at 77 K. A feature is seen in the Stark effect spectrum of the heterodimer at 77 K centered at 927 and 936 nm in poly(vinyl alcohol) and a glycerol/water glass, respectively. This feature has approximately the same shape and width as the Stark effect for the primary electron donor of the wild type, which consists of a pair of bacteriochlorophyll alpha molecules. The angle zeta A between the transition moment at the frequency of absorption and the difference dipole delta muA is 36 +/- 2 degrees in the wild type and 32 +/- 2 degrees for that feature in the heterodimer. A range of values for [delta muA] = (13-17)/f Debye units (where f is the local field correction) is obtained for the 936-nm feature in glycerol/water, depending on analysis method. This feature is interpreted as arising from a transition to the lower exciton state of the heterodimer, which is more strongly mixed with a low-lying charge transfer transition than in the wild type.

摘要

已经测量了电场对球形红杆菌反应中心异二聚体突变体(M)H202L吸收光谱(斯塔克效应)的影响,其中初级电子供体由一个细菌叶绿素α和一个细菌脱镁叶绿素α组成。在聚乙烯醇薄膜中,异二聚体突变体在820 - 950nm的电子吸收光谱相对无特征,但在77K的甘油/水玻璃中呈现出一些结构。在77K时,异二聚体的斯塔克效应光谱中分别在聚乙烯醇和甘油/水玻璃中出现了以927nm和936nm为中心的特征峰。该特征峰的形状和宽度与野生型初级电子供体的斯塔克效应大致相同,野生型初级电子供体由一对细菌叶绿素α分子组成。在野生型中,吸收频率处的跃迁矩与差分偶极矩δμA之间的夹角ζA为36±2度,而异二聚体中该特征峰的夹角为32±2度。根据分析方法的不同,对于甘油/水中936nm特征峰,[δμA]的值在(13 - 17)/f德拜单位范围内(其中f是局部场校正)。该特征峰被解释为源于异二聚体向较低激子态的跃迁,与野生型相比,该跃迁与低能电荷转移跃迁的混合更强。

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