Lapouge K, Näveke A, Robert B, Scheer H, Sturgis J N
Section de Biophysique des Protéines et des Membranes, DBCM/CEA, et URA CNRS 2096, C. E. Saclay 91 191 Gif sur Yvette Cedex, France.
Biochemistry. 2000 Feb 8;39(5):1091-9. doi: 10.1021/bi991423k.
The core light-harvesting LH1 complex of Rhodospirillum rubrum consists of an assembly of membrane-spanning alpha and beta polypeptides, each of which binds one bacteriochlorophyll (BChl) a molecule. In this work, we describe a technique that allows the replacement of the natural, Mg BChl a cofactors present in this protein by Zn-bacteriopheophytin (Zn-Bpheo). This technique makes use of the well-characterized, reversible dissociation of LH1 induced by the detergent beta-octylglucoside. Incubation of partially dissociated LH1 with exogeneous pigments induces an equilibrium between the protein-bound BChl and the exogeneous pigment. This results in the binding of chemically modified pigments to LH1, in amounts which depend on the pigment composition and concentration of the exchange buffer. This method can yield information on the relative affinities of the LH1 protein-binding sites for the different pigments BChl and Zn-Bpheo and can also be used to obtain fully reassociated LH1 proteins, with a variable content of modified pigment, which may be precisely monitored. Absorption and FT-Raman spectroscopy indicate that this exchange procedure leads to LH1 proteins containing modified pigments, but retaining a binding site structure identical to that of native LH1. Furthermore, examination of the binding curves suggests that there are two distinguishable binding sites, probably corresponding to the two polypeptides, with very different properties. One of these two binding sites shows a marked preference for Zn-Bpheo over BChl, while the other binding site appears to prefer BChl.
深红红螺菌的核心捕光LH1复合物由跨膜的α和β多肽组装而成,每个多肽结合一个细菌叶绿素(BChl)a分子。在这项工作中,我们描述了一种技术,该技术可以用锌细菌脱镁叶绿素(Zn-Bpheo)替代该蛋白中天然存在的镁细菌叶绿素a辅因子。该技术利用了由去污剂β-辛基葡萄糖苷诱导的LH1的充分表征的可逆解离。将部分解离的LH1与外源色素一起孵育会在蛋白质结合的BChl和外源色素之间诱导平衡。这导致化学修饰的色素与LH1结合,其结合量取决于交换缓冲液的色素组成和浓度。该方法可以提供关于LH1蛋白结合位点对不同色素BChl和Zn-Bpheo的相对亲和力的信息,也可用于获得完全重新结合的LH1蛋白,其修饰色素的含量可变,且可精确监测。吸收光谱和傅里叶变换拉曼光谱表明,这种交换过程会产生含有修饰色素的LH1蛋白,但保留与天然LH1相同的结合位点结构。此外,对结合曲线的检查表明存在两个可区分的结合位点,可能对应于两条多肽,其性质非常不同。这两个结合位点中的一个对Zn-Bpheo的偏好明显高于BChl,而另一个结合位点似乎更喜欢BChl。