Institut Curie, U1006 INSERM, UMR168 CNRS, 26 Rue d'Ulm, 75248 Paris, France.
J Struct Biol. 2011 Jan;173(1):138-45. doi: 10.1016/j.jsb.2010.08.010. Epub 2010 Aug 24.
The photosynthetic membrane in purple bacteria contains several pigment-protein complexes that assure light capture and establishment of the chemiosmotic gradient. The bioenergetic tasks of the photosynthetic membrane require the strong interaction between these various complexes. In the present work, we acquired the first images of the native outer membrane architecture and the supramolecular organization of the photosynthetic apparatus in vesicular chromatophores of Rhodobacter (Rb.) veldkampii. Mixed with LH2 (light-harvesting complex 2) rings, the PufX-containing LH1-RC (light-harvesting complex 1--reaction center) core complexes appear as C-shaped monomers, with random orientations in the photosynthetic membrane. Within the LH1 fence surrounding the RC, a remarkable gap that is probably occupied (or partially occupied) by PufX is visualized. Sequence alignment revealed that one specific region in PufX may be essential for PufX-induced core dimerization. In this region of ten amino acids in length all Rhodobacter species had five conserved amino acids, with the exception of Rb. veldkampii. Our findings provide direct evidence that the presence of PufX in Rb. veldkampii does not directly govern the dimerization of LH1-RC core complexes in the native membrane. It is indicated, furthermore, that the high membrane curvature of Rb. veldkampii chromatophores (Rb. veldkampii features equally small vesicular chromatophores alike Rb. sphaeroides) is not due to membrane bending induced by dimeric RC-LH1-PufX cores, as it has been proposed in Rb. sphaeroides.
紫细菌的光合膜包含几个色素-蛋白复合物,这些复合物确保了光的捕获和建立化学渗透梯度。光合膜的生物能任务需要这些不同复合物之间的强相互作用。在本工作中,我们首次获得了 Rhodobacter (Rb.) veldkampii 囊泡类囊体中天然外膜结构和光合装置超分子组织的图像。与 LH2(光捕获复合物 2)环混合的 PufX 包含的 LH1-RC(光捕获复合物 1-反应中心)核心复合物呈现为 C 形单体,在光合膜中具有随机取向。在 RC 周围的 LH1 围栏内,可视化到一个显著的间隙,该间隙可能被 PufX 占据(或部分占据)。序列比对表明,PufX 中的一个特定区域可能对 PufX 诱导的核心二聚化至关重要。在 PufX 长度为十个氨基酸的特定区域,所有 Rhodobacter 物种都有五个保守氨基酸,除了 Rb. veldkampii。我们的发现提供了直接证据,表明 PufX 在 Rb. veldkampii 中的存在并不直接控制天然膜中 LH1-RC 核心复合物的二聚化。此外,表明 Rb. veldkampii 类囊体的高膜曲率(Rb. veldkampii 具有与 Rb. sphaeroides 一样小的囊泡类囊体)不是由于二聚体 RC-LH1-PufX 核心诱导的膜弯曲引起的,正如在 Rb. sphaeroides 中提出的那样。