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首页> 外文期刊>Journal of magnetic resonance >Distance between a native cofactor and a spin label in the reaction centre of Rhodobacter sphaeroides by a two-frequency pulsed electron paramagnetic resonance method and molecular dynamics simulations
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Distance between a native cofactor and a spin label in the reaction centre of Rhodobacter sphaeroides by a two-frequency pulsed electron paramagnetic resonance method and molecular dynamics simulations

机译:利用双频脉冲电子顺磁共振方法和球形动力学模拟球形红球菌反应中心天然辅因子与自旋标记之间的距离

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The distance between the paramagnetic state of a native cofactor and a spin label is measured in the photosynthetic reaction centre from the bacterium Rhodobacter sphaeroides R26. A two-frequency pulsed electron paramagnetic resonance method [double-electron-electron spin resonance (DEER)] is used. A distance of 3.05 nm between the semiquinone anion state of the primary acceptor (Q(A)) and the spin label at the native cysteine at position 156 in the H-subunit is found. Molecular-dynamics (MD) simulations are performed to interpret the distance. A 6 ns run comprising the entire RC protein yields a distance distribution that is close to the experimental one. The average distance found by the MD simulation is smaller than the distance obtained by DEER by at least 0.2 nm. To better represent the experiments performed at low temperature (60 K), a MD method to mimic the freezing-in of the room-temperature conformations is introduced. Both MD methods yield similar distances, but the second method has a trend towards a wider distance distribution. (c) 2006 Elsevier Inc. All rights reserved.
机译:天然辅因子的顺磁性状态与自旋标记之间的距离是在球形红球细菌R26的光合作用反应中心测量的。使用二频脉冲电子顺磁共振方法[双电子-电子自旋共振(DEER)]。发现主要受体的半醌阴离子状态(Q(A))与H亚基第156位天然半胱氨酸处的自旋标记之间的距离3.05 nm。进行分子动力学(MD)模拟以解释距离。包含整个RC蛋白的6 ns运行产生的距离分布接近实验值。通过MD模拟发现的平均距离比DEER获得的距离小至少0.2 nm。为了更好地表示在低温(60 K)下进行的实验,引入了一种模拟室温构型冻结的MD方法。两种MD方法都产生相似的距离,但是第二种方法则趋向于更宽的距离分布。 (c)2006 Elsevier Inc.保留所有权利。

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