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首页> 外文期刊>ACS Omega >Reconstitution of 3-Acetyl Chlorophyll a into Light-Harvesting Complex 2 from the Purple Photosynthetic Bacterium Phaeospirillum molischianum
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Reconstitution of 3-Acetyl Chlorophyll a into Light-Harvesting Complex 2 from the Purple Photosynthetic Bacterium Phaeospirillum molischianum

机译:从紫色光合细菌Phaeospirillum molischianum将3-乙酰基叶绿素a重构为光捕获复合物2

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The manipulation of B800 bacteriochlorophyll (BChl) a in light-harvesting complex 2 (LH2) from the purple photosynthetic bacterium Phaeospirillum molischianum (molischianum -LH2) provides insight for understanding the energy transfer mechanism and the binding of cyclic tetrapyrroles in LH2 proteins since molischianum -LH2 is one of the two LH2 proteins whose atomic-resolution structures have been determined and is a representative of type-2 LH2 proteins. However, there is no report on the substitution of B800 BChl a in molischianum -LH2. We report the reconstitution of 3-acetyl chlorophyll (AcChl) a , which has a 17,18-dihydroporphyrin skeleton, to the B800 site in molischianum -LH2. The 3-acetyl group in AcChl a formed a hydrogen bond with β′-Thr23 in essentially the same manner as native B800 BChl a , but this hydrogen bond was weaker than that of B800 BChl a . This change can be rationalized by invoking a small distortion in the orientation of the 3-acetyl group in the B800 cavity by dehydrogenation in the B-ring from BChl a . The energy transfer from AcChl a in the B800 site to B850 BChl a was about 5-fold slower than that from native B800 BChl a by a decrease of the spectral overlap between energy-donating AcChl a and energy-accepting B850 BChl a .
机译:紫色光合细菌Phoeospirillum molischianum(molischianum -LH2)的光捕获复合物2(LH2)中B800细菌叶绿素(BChl)a的操作为理解能量转移机理和结合提供了见识。因为molischianum -LH2是已经确定了原子分辨率结构的两个LH2蛋白之一,并且是2型LH2蛋白的代表,所以LH2蛋白中的环状四吡咯的分子数量为1。但是,没有关于在莫勒霉-LH2中取代B800 BChl a的报道。我们报道了具有17,18-二氢卟啉骨架的3-乙酰基叶绿素(AcChl)a的重建到莫里斯木霉-LH2中的B800位点。 AcChl a中的3-乙酰基以与天然B800 BChl a基本上相同的方式与β'-Thr23形成氢键,但是该氢键比B800 BChl a弱。可以通过在B800环中从BChl a脱氢,使B800腔中3-乙酰基的取向发生小的变形来使这种变化合理化。通过降低供能的AcChl a到B850 BChl 的能量传输比从天然B800 BChl 的能量传输慢约5倍。 > a和接受能量的B850 BChl a。

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