Gardiner Alastair T, Naydenova Katerina, Castro-Hartmann Pablo, Nguyen-Phan Tu C, Russo Christopher J, Sader Kasim, Hunter C Neil, Cogdell Richard J, Qian Pu
Institute of Molecular, Cell and Systems Biology, Glasgow University, Glasgow G12 8QQ, UK.
MRC Laboratory of Molecular Biology, Francis Crick Avenue, Cambridge CB2 0QH, UK.
Sci Adv. 2021 Feb 12;7(7). doi: 10.1126/sciadv.abe4650. Print 2021 Feb.
We report the 2.4 Ångström resolution structure of the light-harvesting 2 (LH2) complex from () determined by cryogenic electron microscopy. The structure contains a heptameric ring that is unique among all known LH2 structures, explaining the unusual spectroscopic properties of this bacterial antenna complex. We identify two sets of distinct carotenoids in the structure and describe a network of energy transfer pathways from the carotenoids to bacteriochlorophyll molecules. The geometry imposed by the heptameric ring controls the resonant coupling of the long-wavelength energy absorption band. Together, these details reveal key aspects of the assembly and oligomeric form of purple bacterial LH2 complexes that were previously inaccessible by any technique.
我们报告了通过低温电子显微镜确定的来自()的光捕获2(LH2)复合物的2.4埃分辨率结构。该结构包含一个七聚体环,这在所有已知的LH2结构中是独特的,解释了这种细菌天线复合物不寻常的光谱特性。我们在该结构中鉴定出两组不同的类胡萝卜素,并描述了从类胡萝卜素到细菌叶绿素分子的能量转移途径网络。七聚体环所施加的几何形状控制着长波长能量吸收带的共振耦合。这些细节共同揭示了紫色细菌LH2复合物的组装和寡聚形式的关键方面,而这些方面以前是任何技术都无法获得的。