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2
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本文引用的文献

1
PIFs: pivotal components in a cellular signaling hub.PIFs:细胞信号枢纽中的关键组成部分。
Trends Plant Sci. 2011 Jan;16(1):19-28. doi: 10.1016/j.tplants.2010.08.003. Epub 2010 Sep 20.
2
Definition of early transcriptional circuitry involved in light-induced reversal of PIF-imposed repression of photomorphogenesis in young Arabidopsis seedlings.早期转录电路在光诱导的拟南芥幼苗中 PIF 介导的光形态建成抑制的逆转中的作用。
Plant Cell. 2009 Nov;21(11):3535-53. doi: 10.1105/tpc.109.070672. Epub 2009 Nov 17.
3
A switchable light-input, light-output system modelled and constructed in yeast.酵母中构建的一种可切换的光输入、光输出系统。
J Biol Eng. 2009 Sep 17;3:15. doi: 10.1186/1754-1611-3-15.
4
FAR-RED ELONGATED HYPOCOTYL1 and FHY1-LIKE associate with the Arabidopsis transcription factors LAF1 and HFR1 to transmit phytochrome A signals for inhibition of hypocotyl elongation.远红光伸长下胚轴1(FAR-RED ELONGATED HYPOCOTYL1)和类FHY1(FHY1-LIKE)与拟南芥转录因子LAF1和HFR1相互作用,传递光敏色素A信号以抑制下胚轴伸长。
Plant Cell. 2009 May;21(5):1341-59. doi: 10.1105/tpc.109.067215. Epub 2009 May 29.
5
Phytochrome A mediates rapid red light-induced phosphorylation of Arabidopsis FAR-RED ELONGATED HYPOCOTYL1 in a low fluence response.光敏色素A在低光通量反应中介导拟南芥远红光伸长下胚轴1的快速红光诱导磷酸化。
Plant Cell. 2009 Feb;21(2):494-506. doi: 10.1105/tpc.108.061259. Epub 2009 Feb 10.
6
Multiple phytochrome-interacting bHLH transcription factors repress premature seedling photomorphogenesis in darkness.多个与光敏色素相互作用的bHLH转录因子在黑暗中抑制幼苗过早的光形态建成。
Curr Biol. 2008 Dec 9;18(23):1815-23. doi: 10.1016/j.cub.2008.10.058.
7
A cell-free system for light-dependent nuclear import of phytochrome.一种用于光敏色素光依赖性核输入的无细胞系统。
Plant J. 2009 Feb;57(4):680-9. doi: 10.1111/j.1365-313X.2008.03721.x. Epub 2008 Nov 24.
8
Light and temperature signal crosstalk in plant development.植物发育过程中的光与温度信号串扰
Curr Opin Plant Biol. 2009 Feb;12(1):63-8. doi: 10.1016/j.pbi.2008.09.007. Epub 2008 Oct 23.
9
FHY1 mediates nuclear import of the light-activated phytochrome A photoreceptor.FHY1介导光激活的光敏色素A光受体的核输入。
PLoS Genet. 2008 Aug 1;4(8):e1000143. doi: 10.1371/journal.pgen.1000143.
10
The Arabidopsis phytochrome-interacting factor PIF7, together with PIF3 and PIF4, regulates responses to prolonged red light by modulating phyB levels.拟南芥光敏色素相互作用因子PIF7与PIF3和PIF4一起,通过调节phyB水平来调控对长时间红光的反应。
Plant Cell. 2008 Feb;20(2):337-52. doi: 10.1105/tpc.107.052142. Epub 2008 Feb 5.

与植物转录因子的相互作用可以介导光敏色素 B 的核输入。

Interaction with plant transcription factors can mediate nuclear import of phytochrome B.

机构信息

Plant Physiology, Faculty of Biology, University of Freiburg, D-79104 Freiburg, Germany.

出版信息

Proc Natl Acad Sci U S A. 2012 Apr 10;109(15):5892-7. doi: 10.1073/pnas.1120764109. Epub 2012 Mar 26.

DOI:10.1073/pnas.1120764109
PMID:22451940
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3326511/
Abstract

Phytochromes (phy) are red/far-red-absorbing photoreceptors that regulate the adaption of plant growth and development to changes in ambient light conditions. The nuclear transport of the phytochromes upon light activation is regarded as a key step in phytochrome signaling. Although nuclear import of phyA is regulated by the transport facilitators far red elongated hypocotyl 1 (FHY1) and fhy1-like, an intrinsic nuclear localization signal was proposed to be involved in the nuclear accumulation of phyB. We recently showed that nuclear import of phytochromes can be analyzed in a cell-free system consisting of isolated nuclei of the unicellular green algae Acetabularia acetabulum. We now show that this system is also versatile to elucidate the mechanism of the nuclear transport of phyB. We tested the nuclear transport characteristics of full-length phyB as well as N- and C-terminal phyB fragments in vitro and showed that the nuclear import of phyB can be facilitated by phytochrome-interacting factor 3 (PIF3). In vivo measurements of phyB nuclear accumulation in the absence of PIF1, -3, -4, and -5 indicate that these PIFs are the major transport facilitators during the first hours of deetiolation. Under prolonged irradiations additional factors might be responsible for phyB nuclear transport in the plant.

摘要

光敏色素(phy)是红光/远红光吸收型光受体,调节植物生长和发育对环境光条件变化的适应。光激活后光敏色素的核转运被认为是光敏色素信号转导的关键步骤。尽管 phyA 的核输入受运输促进因子远红伸长下胚轴 1(FHY1)和 fhy1 样蛋白的调节,但有人提出内在核定位信号参与了 phyB 的核积累。我们最近表明,可以在由单细胞绿藻伞藻的分离核组成的无细胞系统中分析光敏色素的核输入。我们现在表明,该系统也可用于阐明 phyB 核转运的机制。我们在体外测试了全长 phyB 以及 N 和 C 末端 phyB 片段的核转运特性,并表明 phy 相互作用因子 3(PIF3)可促进 phyB 的核输入。在不存在 PIF1、-3、-4 和-5 的情况下体内测量 phyB 的核积累表明,这些 PIF 是脱黄化前几个小时的主要运输促进因子。在长时间照射下,其他因素可能负责植物中 phyB 的核转运。