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在活体中,对 Rhodobacter sphaeroides 中 AppA 光响应 BLUF 结构域编码基因碱基对交换对光合作用基因表达的影响。

In vivo effects on photosynthesis gene expression of base pair exchanges in the gene encoding the light-responsive BLUF domain of AppA in Rhodobacter sphaeroides.

机构信息

Institut für Mikro- und Molekularbiologie, University of Giessen, Giessen, Germany.

出版信息

Photochem Photobiol. 2010 Jul-Aug;86(4):882-9. doi: 10.1111/j.1751-1097.2010.00749.x. Epub 2010 May 21.

DOI:10.1111/j.1751-1097.2010.00749.x
PMID:20497366
Abstract

The Rhodobacter sphaeroides protein AppA has the unique quality of sensing and transmitting light and redox signals. By acting as antirepressor to the PpsR protein, it acts as a major regulator in photosynthesis gene expression. In this study, we show that by introducing amino acid exchanges into the AppA protein, the in vivo activity as an antirepressor can be greatly altered. The tryptophan 104 to phenylalanine (W104F) base exchange greatly diminished blue-light sensitivity of the BLUF domain. From the obtained in vivo data, the difference in thermal recovery rate of the signaling state of the BLUF domain between the wild type and mutated protein was calculated, predicting an about 10-fold faster recovery in the mutant, which is consistent with in vitro data. Introduction of a tyrosine 21 to phenylalanine (Y21F) or to cysteine (Y21C) mutation led to a complete loss of AppA antirepressor activity, while additionally leading to an increase of photosynthesis gene expression after illumination with high blue-light quantities. Interestingly, this effect is not visible in a W104F/Y21F double mutant that again shows a wild-type-like behavior of the BLUF domain after blue-light illumination, thus restoring the activity of AppA.

摘要

球形红杆菌蛋白 AppA 具有独特的光感和氧化还原信号传感与传递功能。作为 PpsR 蛋白的反阻遏物,它是光合作用基因表达的主要调控因子。在本研究中,我们通过在 AppA 蛋白中引入氨基酸交换,极大地改变了其作为反阻遏物的体内活性。色氨酸 104 突变为苯丙氨酸(W104F)的碱基交换极大地降低了 BLUF 结构域对蓝光的敏感性。从获得的体内数据中,计算出 BLUF 结构域信号状态的热恢复率在野生型和突变蛋白之间的差异,预测突变体的恢复速度快约 10 倍,这与体外数据一致。引入酪氨酸 21 突变为苯丙氨酸(Y21F)或半胱氨酸(Y21C)突变导致 AppA 反阻遏物活性完全丧失,同时在高蓝光照射下导致光合作用基因表达增加。有趣的是,这种效应在 W104F/Y21F 双突变体中并不明显,该突变体在蓝光照射后再次表现出 BLUF 结构域的类似野生型行为,从而恢复了 AppA 的活性。

相似文献

1
In vivo effects on photosynthesis gene expression of base pair exchanges in the gene encoding the light-responsive BLUF domain of AppA in Rhodobacter sphaeroides.在活体中,对 Rhodobacter sphaeroides 中 AppA 光响应 BLUF 结构域编码基因碱基对交换对光合作用基因表达的影响。
Photochem Photobiol. 2010 Jul-Aug;86(4):882-9. doi: 10.1111/j.1751-1097.2010.00749.x. Epub 2010 May 21.
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The AppA and PpsR proteins from Rhodobacter sphaeroides can establish a redox-dependent signal chain but fail to transmit blue-light signals in other bacteria.来自球形红细菌的AppA和PpsR蛋白可以建立一个氧化还原依赖性信号链,但无法在其他细菌中传递蓝光信号。
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The solution structure of the AppA BLUF domain: insight into the mechanism of light-induced signaling.AppA蓝光感应结构域的溶液结构:对光诱导信号传导机制的深入了解
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Photocycle of the flavin-binding photoreceptor AppA, a bacterial transcriptional antirepressor of photosynthesis genes.黄素结合光感受器AppA的光循环,一种光合基因的细菌转录抗阻遏物。
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Crystal structures of the AppA BLUF domain photoreceptor provide insights into blue light-mediated signal transduction.蓝光感应蛋白(BLUF)结构域光感受器AppA的晶体结构为蓝光介导的信号转导提供了见解。
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Light-dependent regulation of photosynthesis genes in Rhodobacter sphaeroides 2.4.1 is coordinately controlled by photosynthetic electron transport via the PrrBA two-component system and the photoreceptor AppA.球形红细菌2.4.1中光合作用基因的光依赖性调控通过PrrBA双组分系统和光感受器AppA由光合电子传递协同控制。
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引用本文的文献

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A proposal for a dipole-generated BLUF domain mechanism.一个关于双极子产生 BLUF 结构域机制的提案。
Front Mol Biosci. 2015 Nov 3;2:62. doi: 10.3389/fmolb.2015.00062. eCollection 2015.
2
Effects of the cryptochrome CryB from Rhodobacter sphaeroides on global gene expression in the dark or blue light or in the presence of singlet oxygen.球形红杆菌隐色素 CryB 在黑暗或蓝光或单线态氧存在下对全球基因表达的影响。
PLoS One. 2012;7(4):e33791. doi: 10.1371/journal.pone.0033791. Epub 2012 Apr 5.