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本文引用的文献

1
Light-induced conformational changes of the chromophore and the protein in phytochromes: bacterial phytochromes as model systems.光诱导的色素和蛋白质在光敏色素中的构象变化:细菌光敏色素作为模型系统。
Chemphyschem. 2010 Apr 26;11(6):1090-105. doi: 10.1002/cphc.200900913.
2
A polarity probe for monitoring light-induced structural changes at the entrance of the chromophore pocket in a bacterial phytochrome.一种用于监测细菌光敏色素发色团口袋入口处光诱导结构变化的极性探针。
J Biol Chem. 2009 Sep 18;284(38):26005-16. doi: 10.1074/jbc.M109.049056. Epub 2009 Jul 29.
3
Crystal structure of Pseudomonas aeruginosa bacteriophytochrome: photoconversion and signal transduction.铜绿假单胞菌细菌光敏色素的晶体结构:光转化与信号转导
Proc Natl Acad Sci U S A. 2008 Sep 23;105(38):14715-20. doi: 10.1073/pnas.0806718105. Epub 2008 Sep 17.
4
Spectral properties of phytochrome Agp2 from Agrobacterium tumefaciens are specifically modified by a compound of the cell extract.来自根癌农杆菌的光敏色素Agp2的光谱特性被细胞提取物中的一种化合物特异性修饰。
J Photochem Photobiol B. 2008 Oct 16;93(1):16-22. doi: 10.1016/j.jphotobiol.2008.07.001. Epub 2008 Jul 11.
5
Bacteriophytochromes in anoxygenic photosynthetic bacteria.不产氧光合细菌中的细菌光敏色素。
Photosynth Res. 2008 Aug;97(2):141-53. doi: 10.1007/s11120-008-9323-0. Epub 2008 Jul 9.
6
Evolution of a bacteriophytochrome from light to redox sensor.一种细菌光敏色素从光传感器到氧化还原传感器的演变。
EMBO J. 2007 Jul 25;26(14):3322-31. doi: 10.1038/sj.emboj.7601770. Epub 2007 Jun 21.
7
A singular bacteriophytochrome acquired by lateral gene transfer.通过横向基因转移获得的一种独特细菌光敏色素。
J Biol Chem. 2007 Mar 9;282(10):7320-8. doi: 10.1074/jbc.M611173200. Epub 2007 Jan 11.
8
Highly conserved residues Asp-197 and His-250 in Agp1 phytochrome control the proton affinity of the chromophore and Pfr formation.Agp1光敏色素中高度保守的天冬氨酸-197和组氨酸-250残基控制着生色团的质子亲和力和Pfr的形成。
J Biol Chem. 2007 Jan 19;282(3):2116-23. doi: 10.1074/jbc.M608878200. Epub 2006 Nov 22.
9
Interactive Tree Of Life (iTOL): an online tool for phylogenetic tree display and annotation.交互式生命树(iTOL):一个用于系统发育树展示和注释的在线工具。
Bioinformatics. 2007 Jan 1;23(1):127-8. doi: 10.1093/bioinformatics/btl529. Epub 2006 Oct 18.
10
Assembly of synthetic locked chromophores with agrobacterium phytochromes Agp1 and Agp2.合成锁定发色团与农杆菌光敏色素Agp1和Agp2的组装。
J Biol Chem. 2006 Sep 22;281(38):28162-73. doi: 10.1074/jbc.M603983200. Epub 2006 Jun 27.

根瘤菌土壤细菌中的深海光色素。

Bathy phytochromes in rhizobial soil bacteria.

机构信息

Institute of Botany, Faculty of Chemistry and Biosciences, Karlsruhe Institute of Technology, Kaiserstr. 2, 76131 Karlsruhe, Germany.

出版信息

J Bacteriol. 2010 Oct;192(19):5124-33. doi: 10.1128/JB.00672-10. Epub 2010 Jul 30.

DOI:10.1128/JB.00672-10
PMID:20675484
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2944542/
Abstract

Phytochromes are biliprotein photoreceptors that are found in plants, bacteria, and fungi. Prototypical phytochromes have a Pr ground state that absorbs in the red spectral range and is converted by light into the Pfr form, which absorbs longer-wavelength, far-red light. Recently, some bacterial phytochromes have been described that undergo dark conversion of Pr to Pfr and thus have a Pfr ground state. We show here that such so-called bathy phytochromes are widely distributed among bacteria that belong to the order Rhizobiales. We measured in vivo spectral properties and the direction of dark conversion for species which have either one or two phytochrome genes. Agrobacterium tumefaciens C58 contains one bathy phytochrome and a second phytochrome which undergoes dark conversion of Pfr to Pr in vivo. The related species Agrobacterium vitis S4 contains also one bathy phytochrome and another phytochrome with novel spectral properties. Rhizobium leguminosarum 3841, Rhizobium etli CIAT652, and Azorhizobium caulinodans ORS571 contain a single phytochrome of the bathy type, whereas Xanthobacter autotrophicus Py2 contains a single phytochrome with dark conversion of Pfr to Pr. We propose that bathy phytochromes are adaptations to the light regime in the soil. Most bacterial phytochromes are light-regulated histidine kinases, some of which have a C-terminal response regulator subunit on the same protein. According to our phylogenetic studies, the group of phytochromes with this domain arrangement has evolved from a bathy phytochrome progenitor.

摘要

光敏色素是存在于植物、细菌和真菌中的双吡咯蛋白光受体。典型的光敏色素有一个吸收红光的 Pr 基态,通过光转化为吸收长波长远红光的 Pfr 形式。最近,一些细菌光敏色素已经被描述为经历 Pr 到 Pfr 的黑暗转化,因此具有 Pfr 基态。我们在这里表明,这种所谓的深海光敏色素广泛分布于属于根瘤菌目的细菌中。我们测量了具有一个或两个光敏色素基因的物种的体内光谱特性和黑暗转化方向。根癌农杆菌 C58 含有一个深海光敏色素和另一个在体内将 Pfr 黑暗转化为 Pr 的光敏色素。相关物种根癌农杆菌 S4 也含有一个深海光敏色素和另一个具有新型光谱特性的光敏色素。根瘤菌属 3841、根瘤菌属 etli CIAT652 和根瘤菌属 caulnodans ORS571 含有一个单一的深海型光敏色素,而黄单胞菌属 autotrophicus Py2 含有一个单一的光敏色素,其 Pfr 可在黑暗中转化为 Pr。我们提出,深海光敏色素是对土壤中光照条件的适应。大多数细菌光敏色素是光调控组氨酸激酶,其中一些在同一蛋白质上具有 C 末端响应调节亚基。根据我们的系统发育研究,具有这种结构域排列的光敏色素组已经从深海光敏色素祖先进化而来。