绿色体
无氧光合作用
光养
紫色细菌
细菌叶绿素
光合反应中心
天线(收音机)
生物
光合作用
生物物理学
植物
物理
电信
计算机科学
作者
Guoqiang Huang,Shishang Dong,Lin Ma,Lin Li,Jin-Hee Ju,M.Y. Wang,Jianping Zhang,Sen‐Fang Sui,Xiaochun Qin
摘要
ABSTRACT Photosynthetic organisms have developed various light‐harvesting antenna systems to capture light and transfer energy to reaction centers (RCs). Simultaneous utilization of the integral membrane light‐harvesting antenna (LH complex) and the extrinsic antenna (chlorosomes) makes the phototrophic bacterium Chloroflexus ( Cfx .) aurantiacus an ideal model for studying filamentous anoxygenic phototrophs (FAPs). Here, we determined the structure of a minimal RC–LH photocomplex from Cfx. aurantiacus J‐10‐fl (CaRC–LH) at 3.05‐Å resolution. The CaRC–LH binds only to seven LH subunits, which form a crescent‐shaped antenna surrounding the movable menaquinone‐10 (Q B ) binding site of CaRC. In this complex with minimal LH units, an extra antenna is required to ensure sufficient light‐gathering, providing a clear explanation for the presence of chlorosomes in Cfx. aurantiacus . More importantly, the semicircle of the antenna represents a novel RC–LH assembly pattern. Our structure provides a basis for understanding the existence of chlorosomes in Cfx. aurantiacus and the possible assembly pattern of RC–LH.
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