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Phycobilisomes Supply Excitations to Both Photosystems in a Megacomplex in Cyanobacteria

机译:藻胆体为蓝藻中的大型复合体中的两个光系统提供兴奋。

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摘要

In photosynthetic organisms, photons are captured by light-harvesting antenna complexes, and energy is transferred to reaction centers where photochemical reactions take place. We describe here the isolation and characterization of a fully functional megacomplex composed of a phycobilisome antenna complex and photosystems I and II from the cyanobacterium Synechocystis PCC 6803. A combination of in vivo protein cross-linking, mass spectrometry, and time-resolved spectroscopy indicates that the megacomplex is organized to facilitate energy transfer but not intercomplex electron transfer, which requires diffusible intermediates and the cytochrome b6f complex. The organization provides a basis for understanding how phycobilisomes transfer excitation energy to reaction centers and how the energy balance of two photosystems is achieved, allowing the organism to adapt to varying ecophysiological conditions.
机译:在光合生物中,光子被集光天线络合物捕获,能量转移到发生光化学反应的反应中心。我们在这里描述了从藻蓝藻集胞藻PCC 6803分离并鉴定了由藻胆体天线复合物和光系统I和II组成的功能齐全的巨型复合物。体内蛋白质交联,质谱和时间分辨光谱的结合表明大复合物的组织是为了促进能量转移,而不是复杂的电子转移,这需要可扩散的中间体和细胞色素b6f复合物。该组织为理解藻胆体如何将激发能转移至反应中心以及如何实现两个光系统的能量平衡提供了基础,从而使生物体适应各种生态生理条件。

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