Suppr超能文献

时间分辨色氨酸荧光探测 LOV2 和 PYP 光诱导激活的 PAS 域蛋白动力学。

Dynamics of light-induced activation in the PAS domain proteins LOV2 and PYP probed by time-resolved tryptophan fluorescence.

机构信息

Biophysics Group, Department of Physics, Freie Universität Berlin, Arnimallee 14, 14195 Berlin, Germany.

出版信息

Biochemistry. 2010 Dec 28;49(51):10811-7. doi: 10.1021/bi101413v. Epub 2010 Dec 2.

Abstract

Light-induced activation of the LOV2-Jα domain of the photoreceptor phototropin from oat is believed to involve the detachment of the Jα helix from the central β-sheet and its subsequent unfolding. The dynamics of these conformational changes were monitored by time-resolved emission spectroscopy with 100 ns time resolution. Three transitions were detected during the LOV2-Jα photocycle with time constants of 3.4 μs, 500 μs, and 4.3 ms. The fastest transition is due to the decay of the flavin phosphorescence in the transition of the triplet LOV(L)(660) state to the singlet LOV(S)(390) signaling state. The 500 μs and 4.3 ms transitions are due to changes in tryptophan fluorescence and may be associated with the dissociation and unfolding of the Jα helix, respectively. They are absent in the transient absorption signal of the flavin chromophore. The tryptophan fluorescence signal monitors structural changes outside the chromophore binding pocket and indicates that there are at least three LOV(S)(390) intermediates. Since the 500 μs and 4.3 ms components are absent in a construct without the Jα helix and in the mutant W557S, the fluorescence signal is mainly due to tryptophan 557. The kinetics of the main 500 μs component is strongly temperature dependent with activation energy of 18.2 kcal/mol suggesting its association with a major structural change. In the structurally related PAS domain protein PYP the N-terminal cap dissociates from the central β-sheet and unfolds upon signaling state formation with a similar time constant of ∼1 ms. Using transient fluorescence we obtained a nearly identical activation energy of 18.5 kcal/mol for this transition.

摘要

光诱导的燕麦光受体光敏色素 LOV2-Jα 结构域的激活被认为涉及 Jα 螺旋与中心 β-折叠的分离及其随后的展开。这些构象变化的动力学通过具有 100 ns 时间分辨率的时间分辨发射光谱来监测。在 LOV2-Jα 光循环中检测到三个跃迁,时间常数为 3.4 μs、500 μs 和 4.3 ms。最快的跃迁是由于黄素磷光在三重态 LOV(L)(660)态到单重态 LOV(S)(390)信号态的跃迁中的衰减。500 μs 和 4.3 ms 的跃迁是由于色氨酸荧光的变化,可能分别与 Jα 螺旋的解离和展开有关。它们在黄素发色团的瞬态吸收信号中不存在。色氨酸荧光信号监测色原结合口袋外的结构变化,并表明存在至少三个 LOV(S)(390)中间体。由于在没有 Jα 螺旋的构建体中和突变体 W557S 中不存在 500 μs 和 4.3 ms 组分,荧光信号主要归因于色氨酸 557。主要的 500 μs 组分的动力学强烈依赖于温度,其活化能为 18.2 kcal/mol,表明其与主要结构变化有关。在结构上相关的 PAS 结构域蛋白 PYP 中,N 端帽在信号态形成时与中心 β-折叠分离并展开,具有相似的 1 ms 左右的时间常数。使用瞬态荧光,我们获得了对于此跃迁的几乎相同的 18.5 kcal/mol 的活化能。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验