Richter Martin F, Baier Jürgen, Cogdell Richard J, Köhler Jürgen, Oellerich Silke
Lehrstuhl für Experimentalphysik IV and Bayreuther Institut für Makromolekülforschung, Universität Bayreuth, Bayreuth, Germany.
Biophys J. 2007 Jul 1;93(1):183-91. doi: 10.1529/biophysj.106.103606. Epub 2007 Apr 6.
The spectroscopic properties of the light-harvesting 2 complexes (LH2) from the purple bacterium Rhodopseudomonas acidophila (strain 10050) in detergent micelles and reconstituted into lipid membranes have been studied by single-molecule spectroscopy. When LH2 complexes are solubilized from their host biological membranes by nondenaturing detergents, such as LDAO, there is a small 2-nm spectral shift of the B850 absorption band in the ensemble spectrum. This is reversed when the LH2 complexes are put back into phospholipid vesicles, i.e., into a more native-like environment. The spectroscopic properties on the single-molecule level of the detergent-solubilized LH2 complexes were compared with those reconstituted into the lipid membranes to see if their detailed spectroscopic behavior was influenced by these small changes in the position of the B850 absorption band. A detailed analysis of the low-temperature single-molecule fluorescence-excitation spectra of the LH2 complexes in these two different conditions showed no significant differences. In particular, the distribution of the spectral splitting between the circular k = +/-1 exciton states of the B850 absorption band and the distribution of the mutual angle between the k = +/-1 exciton states are identical in both cases. It can be concluded, therefore, that the LH2 complexes from Rps. acidophila are equally stable when solubilized in detergent micelles as they are when membrane reconstituted. Moreover, when they are solubilized in a suitable detergent and spin coated onto a surface for the single-molecule experiments they do not display any more structural disorder than when in a phospholipid membrane.
通过单分子光谱研究了嗜酸红假单胞菌(菌株10050)的捕光2复合物(LH2)在去污剂胶束中以及重构到脂质膜中的光谱性质。当用非变性去污剂(如LDAO)从其宿主生物膜中溶解LH2复合物时,整体光谱中B850吸收带会有一个小的2纳米光谱位移。当LH2复合物重新放入磷脂囊泡中,即放入更类似天然的环境中时,这种位移会逆转。将去污剂溶解的LH2复合物在单分子水平上的光谱性质与重构到脂质膜中的光谱性质进行比较,以查看B850吸收带位置的这些微小变化是否会影响其详细的光谱行为。对这两种不同条件下LH2复合物的低温单分子荧光激发光谱进行的详细分析表明没有显著差异。特别是,在两种情况下,B850吸收带的圆k = +/-1激子态之间的光谱分裂分布以及k = +/-1激子态之间的相互角度分布都是相同的。因此可以得出结论,嗜酸红假单胞菌的LH2复合物在去污剂胶束中溶解时与重构到膜中时一样稳定。此外,当它们溶解在合适的去污剂中并旋涂到表面用于单分子实验时,与在磷脂膜中时相比,它们不会表现出更多的结构紊乱。