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首页> 外文期刊>Biophysical Journal >Kinetic measurement of transient dimerization and dissociation reactions of Arabidopsis phototropin 1 LOV2 domain
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Kinetic measurement of transient dimerization and dissociation reactions of Arabidopsis phototropin 1 LOV2 domain

机译:拟南芥光蛋白1 LOV2结构域瞬时二聚化和解离反应的动力学测量

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Photochemical reaction of a plant blue-light photoreceptor, Arabidopsis phototropin 1-LOV (light-oxygen-voltage sensing) domain 2, was studied with a view to the diffusion coefficients ( D) using the pulsed-laser-induced transient grating method. Although the reaction dynamics completes at a rate of several microseconds as long as it is monitored by the absorption change, the diffusion coefficient was found to be time-dependent in a time range of submilliseconds to seconds. The observed signal can be analyzed by the two-state model, which includes the D-value decrease from D of the reactant (9.8 +/- 0.4) x 10(-11) m(2)/s to D of the product (8.0 +/- 0.4) x 10(-11) m(2)/s. The D-value of the reactant implies that the dominant form in the ground state of phototropin 1 LOV2 is the monomeric form in a concentration range of 50-200 mu M. According to the Stokes-Einstein relationship, the D-change can be explained by a volume increase of 1.8 times. Furthermore, the rate of the D-change was roughly proportional to the concentration of the sample. These two observations indicate that the LOV2 domain transiently forms a dimer upon photoexcitation. When the sample concentration is increased (180 mM), a new signal component appears within a few milliseconds. This signal represents a D increase from 8.0 x 10(-11) m(2)/s to 9.8 x 10(-11) m(2)/s with a time constant of 300 ms. The completely opposite D-change from that observed in a lower concentration, as well as the concentration dependence, implies that a dimer is formed in the ground state in a higher concentration range, even though the fraction of the dimer is still minor in this range. This dimer is photodissociated, with a time constant of 300 mu s. This research clearly shows that the time-resolved diffusion measurement is a very powerful tool for detecting spectrally silent association/dissociation processes during chemical reactions. The photoreaction of the LOV2 domain is discussed.
机译:考虑到扩散系数(D),采用脉冲激光诱导的瞬态光栅方法研究了植物蓝光感受器拟南芥光蛋白1-LOV(光氧电压感测)域2的光化学反应。尽管只要通过吸收变化监测反应动力学就可以以几微秒的速度完成,但是发现扩散系数在几毫秒到几秒的时间范围内是时间相关的。可以通过两态模型分析观察到的信号,该模型包括从反应物D的D值(9.8 +/- 0.4)x 10(-11)m(2)/ s到产品D的D值减小( 8.0 +/- 0.4)x 10(-11)m(2)/ s。反应物的D值意味着在50-200μM的浓度范围内,光养蛋白1 LOV2基态的主要形式是单体形式。根据斯托克斯-爱因斯坦关系,可以解释D变化。体积增加了1.8倍此外,D变化率大致与样品浓度成正比。这两个观察结果表明,LOV2结构域在光激发后瞬时形成二聚体。当样品浓度增加(180 mM)时,新的信号成分会在几毫秒内出现。该信号表示D从8.0 x 10(-11)m(2)/ s增加到9.8 x 10(-11)m(2)/ s,时间常数为300 ms。与在较低浓度下观察到的D变化完全相反的D变化以及浓度依赖性,意味着即使在该浓度范围内二聚体的比例仍然很小,在基态下仍会在较高浓度下形成二聚体。 。该二聚体是光离解的,时间常数为300μs。这项研究清楚地表明,时间分辨扩散测量是检测化学反应过程中光谱静默缔合/解离过程的强大工具。讨论了LOV2域的光反应。

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