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首页> 外文期刊>Photosynthesis Research: An International Journal >Crystal structure of CyanoQ from the thermophilic cyanobacterium Thermosynechococcus elongatus and detection in isolated photosystem II complexes
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Crystal structure of CyanoQ from the thermophilic cyanobacterium Thermosynechococcus elongatus and detection in isolated photosystem II complexes

机译:嗜热蓝藻嗜热嗜蓝球菌CyanoQ的晶体结构及其在分离的光系统II复合物中的检测

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摘要

The PsbQ-like protein, termed CyanoQ, found in the cyanobacterium Synechocystis sp. PCC 6803 is thought to bind to the lumenal surface of photosystem II (PSII), helping to shield the Mn4CaO5 oxygen-evolving cluster. CyanoQ is, however, absent from the crystal structures of PSII isolated from thermophilic cyanobacteria raising the possibility that the association of CyanoQ with PSII might not be a conserved feature. Here, we show that CyanoQ (encoded by tll2057) is indeed expressed in the thermophilic cyanobacterium Thermosynechococcus elongatus and provide evidence in support of its assignment as a lipoprotein. Using an immunochemical approach, we show that CyanoQ co-purifies with PSII and is actually present in highly pure PSII samples used to generate PSII crystals. The absence of CyanoQ in the final crystal structure is possibly due to detachment of CyanoQ during crystallisation or its presence in sub-stoichiometric amounts. In contrast, the PsbP homologue, CyanoP, is severely depleted in isolated PSII complexes. We have also determined the crystal structure of CyanoQ from T. elongatus to a resolution of 1.6 . It lacks bound metal ions and contains a four-helix up-down bundle similar to the ones found in Synechocystis CyanoQ and spinach PsbQ. However, the N-terminal region and extensive lysine patch that are thought to be important for binding of PsbQ to PSII are not conserved in T. elongatus CyanoQ
机译:PsbQ样蛋白,称为CyanoQ,在蓝藻Synechocystis sp。中发现。 PCC 6803被认为与光系统II(PSII)的腔表面结合,有助于屏蔽Mn4CaO5析氧簇。然而,从嗜热蓝细菌分离的PSII的晶体结构中不存在CyanoQ,这增加了CyanoQ与PSII的结合可能不是保守特征的可能性。在这里,我们显示CyanoQ(由tll2057编码)确实在嗜热蓝藻嗜热长毛球菌中表达,并提供了支持其作为脂蛋白的证据。使用免疫化学方法,我们显示CyanoQ与PSII共纯化,并且实际上存在于用于生成PSII晶体的高纯度PSII样品中。最终晶体结构中不存在CyanoQ的原因可能是由于结晶过程中CyanoQ的分离或其以低于化学计量的量存在。相反,PsbP同源物CyanoP在分离的PSII复合物中严重耗竭。我们还确定了从T. elongatus到CyanoQ的晶体结构,分辨率为1.6。它缺乏结合的金属离子,并且包含一个与螺旋藻CyanoQ和菠菜PsbQ中相似的上下四螺旋束。但是,在T.longateus CyanoQ中,保守的N末端区域和广泛的赖氨酸补丁被认为对PsbQ与PSII的结合很重要。

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