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Insights into the binding behavior of native and non-native cytochromes to photosystem I from Thermosynechococcus elongatus

机译:洞悉嗜热嗜热球菌对天然和非天然细胞色素与光系统I的结合行为的洞察力

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摘要

The binding of photosystem I (PS I) from Thermosynechococcus elongatus to the native cytochrome (cyt) c6 and cyt c from horse heart (cyt cHH) was analyzed by oxygen consumption measurements, isothermal titration calorimetry (ITC), and rigid body docking combined with electrostatic computations of binding energies. Although PS I has a higher affinity for cyt cHH than for cyt c6, the influence of ionic strength and pH on binding is different in the two cases. ITC and theoretical computations revealed the existence of unspecific binding sites for cyt cHH besides one specific binding site close to P700. Binding to PS I was found to be the same for reduced and oxidized cyt cHH. Based on this information, suitable conditions for cocrystallization of cyt cHH with PS I were found, resulting in crystals with a PS I:cyt cHH ratio of 1:1. A crystal structure at 3.4-Å resolution was obtained, but cyt cHH cannot be identified in the electron density map because of unspecific binding sites and/or high flexibility at the specific binding site. Modeling the binding of cyt c6 to PS I revealed a specific binding site where the distance and orientation of cyt c6 relative to P700 are comparable with cyt c2 from purple bacteria relative to P870. This work provides new insights into the binding modes of different cytochromes to PS I, thus facilitating steps toward solving the PS I–cyt c costructure and a more detailed understanding of natural electron transport processes.
机译:通过耗氧量测量,等温滴定量热法(ITC)和刚体对接结合分析了来自嗜热嗜热球菌的光系统I(PS I)与来自马心脏的天然细胞色素(cyt)c6和cyt c(cyt cHH)的结合结合能的静电计算。尽管PS I对cyt cHH的亲和力高于对cyt c6的亲和力,但在两种情况下,离子强度和pH对结合的影响是不同的。 ITC和理论计算表明,除了一个接近P700的特异性结合位点外,cyt cHH还存在非特异性结合位点。发现与PS I的结合对于还原和氧化的cyt cHH是相同的。根据该信息,发现了将cyt cHH与PS I共结晶的合适条件,从而得到了PS I:cyt cHH比为1:1的晶体。获得了3.4-Å分辨率的晶体结构,但是由于非特异性结合位点和/或特异性结合位点的高柔韧性,无法在电子密度图中鉴定cyt cHH。对cyt c6与PS I的结合进行模型化揭示了一个特定的结合位点,其中cyt c6相对于P700的距离和方向与紫色细菌相对于P870的cyt c2相当。这项工作为不同的细胞色素与PS I的结合方式提供了新的见解,从而促进了解决PS I-cyt c共结构的步骤以及对自然电子传输过程的更详细的了解。

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