Fowler G J, Hunter C N
Robert Hill Institute for Photosynthesis and Krebs Institute, Department of Molecular Biology and Biotechnology, University of Sheffield, Sheffield, S10 2TN United Kingdom.
J Biol Chem. 1996 Jun 7;271(23):13356-61. doi: 10.1074/jbc.271.23.13356.
Photosynthetic bacteria respond to lowered light intensity by increasing the level of the peripheral light-harvesting (LH2) complex. Several species possess an additional mechanism, responding to variations in light conditions by making different types of LH2 complex. However, the study of these complexes in isolation and in the native membrane environment has not been possible. Therefore two LH2 gene pairs from Rhodopseudomonas palustris, associated, respectively, with high light (pucBAa) and low light (pucBAd) growth conditions, were expressed in Rhodobacter sphaeroides. The high light LH2 complex PucBAa was synthesized at appreciable levels in R. sphaeroides, had near-infrared absorption bands at approximately 800-855 nm, and was able to transfer energy efficiently to the native LH1 complex. In contrast, the low light complex PucBAd was found at comparatively low levels, had absorption bands at approximately 797-830 nm, and did not transfer energy to the native LH1 complex efficiently. These observations are discussed in the light of site-directed studies on the R. sphaeroides LH2 complex, and the recently elucidated Rhodopseudomonas acidophila 10050 LH2 structure. Potentially important residues for energy transfer between LH2 and LH1 complexes are identified, as well as some of the factors that influence stability and assembly of LH2 complexes, such as the N-terminal sequences of their protein subunits and their carotenoid binding sites.
光合细菌通过增加外周光捕获(LH2)复合物的水平来响应光照强度的降低。几种光合细菌还拥有另一种机制,即通过产生不同类型的LH2复合物来响应光照条件的变化。然而,在分离状态和天然膜环境中对这些复合物进行研究一直无法实现。因此,分别与高光(pucBAa)和低光(pucBAd)生长条件相关的来自沼泽红假单胞菌的两对LH2基因,在球形红杆菌中进行了表达。高光LH2复合物PucBAa在球形红杆菌中以可观的水平合成,在约800 - 855 nm处有近红外吸收带,并能够有效地将能量转移到天然的LH1复合物。相比之下,低光复合物PucBAd的水平相对较低,在约797 - 830 nm处有吸收带,并且不能有效地将能量转移到天然的LH1复合物。根据对球形红杆菌LH2复合物的定点研究以及最近阐明的嗜酸红假单胞菌10050 LH2结构,对这些观察结果进行了讨论。确定了LH2和LH1复合物之间能量转移的潜在重要残基,以及一些影响LH2复合物稳定性和组装的因素,如它们蛋白质亚基的N端序列及其类胡萝卜素结合位点。