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Flash-induced enhancements in the proton NMR relaxation rate of Photosystem II particles: Response to flash trains of 1–5 flashes

机译:闪光诱导的照相系统II颗粒术语戒断率的增强:对闪光闪钓的响应为1-5闪光

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摘要

Flash-induced enhancements of the proton NMR relaxation rate R1 of the solvent in suspensions of PS II particles have been recorded for sequences of 1-5 saturating flashes. The one-flash relaxation transient is a positive R1 enhancement of 0.0080 s-1, which relaxes to the preflash baseline with a half-time of 25 s. The two-flash response is a positive relaxation transient of nearly identical amplitude to the one-flash response, but with a slower decay (t1/2 [approximate] 40 s). The appearance of a strongly relaxing paramagnetic center after one flash is consistent with the expected properties of an Mn(III) -- Mn(IV) oxidation. In contrast, the absence of a further R1 enhancement after the second flash shows that a strongly relaxing paramagnetic center is not formed by S2 -- S3 as is expected for manganese redox chemistry involving oxidation of Mn(III); the NMR experiment gives no indication that manganese redox chemistry occurs on the S2 -- S3 transition. The three-flash R1 response is a positive R1 transient of 0.0066 s-1, which decays with a half-time of approx. 50 s to a stable value of 0.002 s-1 above the preflash baseline. Positive R1 enhancements have been observed in the presence of carbonylcyanide m-chlorophenylhydrazone (CCCP), an agent known to accelerate the decay of S2 and S3, at concentrations which very effectively suppress the one-flash and two-flash decays. These enhancements indicate that the formation of the S0 state from S1 involves the production of a strongly relaxing center, and the sign of the R1 response is consistent with the expected properties of an Mn(III) -- Mn(II) reduction. The kinetic behavior of the three-flash R1 transient is indicative of slow redox equilibria involving the strongly relaxing center of the S0 state. Flash transients across a five-flash cycle exhibit oscillatory behavior with a local minimum on the fourth flash. Simulations of the flash profile indicate the presence of an R1 contribution from a minor fraction of centers which are capable of transition to S2 and S3, but are inhibited at S3 -- S0.
机译:已经记录了PS II颗粒的悬浮液中溶剂的质子NMR弛豫率R1的闪存诱导的增强,用于1-5次饱和闪光的序列。单闪光弛豫瞬态是0.0080 S-1的正R1增强,其放松到预填充基线,半时间为25秒。双闪光响应是对单闪光响应的几乎相同振幅的正弛豫瞬态,但衰减较慢(T1 / 2 [近似] 40秒)。一个闪光后,一个闪光在一个闪光后的外观与Mn(III) - > Mn(iv)氧化的预期性能一致。相反,第二闪光后,在第二闪光期显示后,不存在进一步的R1增强,即S2 - > S3未形成强松弛的顺磁性中心,这是预期的涉及MN(III)氧化的锰氧化还原化学; NMR实验毫不含于S2 - > S3过渡发生锰氧化还原化学。三闪频R1响应是0.0066 S-1的正R1瞬态,其衰减含有大约的半时间。 50秒在预填充基线上方0.002 s-1的稳定值。在存在羰基氰酸盐M-氯苯基肼(CCCP)的情况下已经观察到阳性R1增强,该试剂在非常有效地抑制单闪光和两闪蒸的浓度下加速S2和S3的衰减的试剂。这些增强表明,来自S1的S0状态的形成涉及生产强烈放松的中心,并且R1响应的符号与Mn(III) - > Mn(II)的预期性能一致。三闪频R1瞬态的动力学行为表示涉及S0状态的强松弛中心的缓慢氧化还原平衡。跨越五闪频周期的闪存瞬态表现出振荡行为,第四闪光灯上的局部最小值。闪光轮廓的模拟表明存在能够转变为S2和S3的少量中心的R1贡献,而是在S3 - > S0抑制。

著录项

  • 作者

    A.N. Srinivasan; R.R. Sharp;

  • 作者单位
  • 年度 1986
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  • 原文格式 PDF
  • 正文语种 en_us
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