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基于时间分辨傅里叶变换红外光谱对向光素LOV结构域内光加合物形成及二级结构变化的研究

Time-resolved Fourier transform infrared study on photoadduct formation and secondary structural changes within the phototropin LOV domain.

作者信息

Pfeifer Anna, Majerus Teresa, Zikihara Kazunori, Matsuoka Daisuke, Tokutomi Satoru, Heberle Joachim, Kottke Tilman

机构信息

Biophysical Chemistry, Department of Chemistry, Bielefeld University, 33615 Bielefeld, Germany.

出版信息

Biophys J. 2009 Feb 18;96(4):1462-70. doi: 10.1016/j.bpj.2008.11.016.

Abstract

Phototropins are plant blue-light photoreceptors containing two light-, oxygen-, or voltage-sensitive (LOV) domains and a C-terminal kinase domain. The two LOV domains bind noncovalently flavin mononucleotide as a chromophore. We investigated the photocycle of fast-recovery mutant LOV2-I403V from Arabidopsis phototropin 2 by step-scan Fourier transform infrared spectroscopy. The reaction of the triplet excited state of flavin with cysteine takes place with a time constant of 3 micros to yield the covalent adduct. Our data provide evidence that the flavin is unprotonated in the productive triplet state, disfavoring an ionic mechanism of bond formation. An intermediate adduct species was evident that displayed changes in secondary structure in the helix or loop region, and relaxed with a time constant of 120 micros. In milliseconds, the final adduct state is formed by further alterations of secondary structure, including beta-sheets. A comparison with wild-type adduct spectra shows that the mutation does not interfere with the functionality of the domain. All signals originate from within the LOV domain, because the construct does not comprise the adjacent Jalpha helix required for signal transduction. The contribution of early and late adduct intermediates to signal transfer to the Jalpha helix outside of the domain is discussed.

摘要

向光素是植物蓝光光感受器,包含两个光、氧或电压敏感(LOV)结构域和一个C端激酶结构域。这两个LOV结构域非共价结合黄素单核苷酸作为发色团。我们通过步进扫描傅里叶变换红外光谱研究了拟南芥向光素2的快速恢复突变体LOV2-I403V的光循环。黄素的三重激发态与半胱氨酸的反应以3微秒的时间常数发生,生成共价加合物。我们的数据提供了证据,表明黄素在有效的三重态中未被质子化,不利于离子键形成机制。一种中间加合物物种很明显,其在螺旋或环区域的二级结构发生了变化,并以120微秒的时间常数松弛。在几毫秒内,最终加合物状态通过包括β-折叠在内的二级结构的进一步改变而形成。与野生型加合物光谱的比较表明,该突变不会干扰该结构域的功能。所有信号都源自LOV结构域内部,因为构建体不包含信号转导所需的相邻Jα螺旋。讨论了早期和晚期加合物中间体对信号传递到结构域外部的Jα螺旋的贡献。

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