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首页> 外文期刊>The FEBS journal >Dimers of light-harvesting complex 2 from Rhodobacter sphaeroides characterized in reconstituted 2D crystals with atomic force microscopy
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Dimers of light-harvesting complex 2 from Rhodobacter sphaeroides characterized in reconstituted 2D crystals with atomic force microscopy

机译:球形红球菌采光复合物2的二聚体,其特征在于通过原子力显微镜对二维晶体进行重构

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摘要

Microscopic and light spectroscopic investigations on the supramolecular architecture of bacterial photosynthetic membranes have revealed the photosynthetic protein complexes to be arranged in a densely packed energy-transducing network. Protein packing may play a determining role in the formation of functional photosynthetic domains and membrane curvature. To further investigate in detail the packing effects of like-protein photosynthetic complexes, we report an atomic force microscopy investigation on artificially created 2D crystals of the peripheral photosynthetic light-harvesting complexes 2 (LH2's) from the bacterium Rhodobacter sphaeroides. Instead of the usually observed one or two different crystallization lattices for one specific preparation protocol, we find seven different packing lattices. The most abundant crystal types all show a tilting of LH2. Most surprisingly, although LH2 is a monomeric protein complex in vivo, we find an LH2 dimer packing motif. We further characterize two different dimer configurations: in type 1, the LH2's are tilted inwards, and in type 2, they are titlted outwards. Closer inspection of the lattices surrounding the LH2 dimers indicates their close resemblance to those LH2's that constitute a lattice of zig-zagging LH2's. In addition, analyses of the tilt of the LH2's within the zig-zag lattice and that observed within the dimers corroborate their similar packing motifs. The type 2 dimer configuration exhibits a tilt that, in the absence of up-down packing, could bend the lipid bilayer, leading to the strong curvature of the LH2 domains as observed in Rhodobacter sphaeroides photosynthetic membranes in vivo.
机译:细菌光合膜的超分子结构的显微镜和光谱研究表明,光合蛋白复合物排列在密集的能量传递网络中。蛋白质堆积可能在功能性光合域和膜曲率的形成中起决定性作用。为了进一步详细研究类似蛋白的光合复合物的堆积效应,我们报告了原子力显微镜研究,该细菌是由球形球形红球菌人工创建的外围光合光采复合物2(LH2's)的2D晶体。代替通常针对一种特定制备方案观察到的一个或两个不同的晶格,我们发现了七个不同的堆积晶格。最丰富的晶体类型都显示LH2倾斜。最令人惊讶的是,尽管LH2是体内的单体蛋白复合物,但我们发现LH2二聚体包装基序。我们进一步描述了两种不同的二聚体结构:在类型1中,LH2向内倾斜,在类型2中,它们向外倾斜。仔细检查LH2二聚体周围的晶格,可以发现它们与构成Z字形LH2晶格的LH2非常相似。另外,对锯齿形格子中LH2的倾斜度和二聚体中观察到的倾斜度的分析证实了它们相似的堆积图案。 2型二聚体构型表现出倾斜,在没有上下堆积的情况下,可以弯曲脂质双层,从而导致在体内球形红球菌光合膜中观察到LH2域的强烈弯曲。

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