Academy of New Biology for Plant Senescence and Life History, Institute for Basic Science, DGIST, Daegu, Republic of Korea; Department of Life Sciences, POSTECH, Pohang, Republic of Korea.
Physiol Plant. 2014 Feb;150(2):308-20. doi: 10.1111/ppl.12087. Epub 2013 Sep 17.
Phytochromes are red (R)/far-red (FR) photoreceptors that are central to the regulation of plant growth and development. Although it is well known that photoactivated phytochromes are translocated into the nucleus where they interact with a variety of nuclear proteins and ultimately regulate genome-wide transcription, the mechanisms by which these photoreceptors function are not completely understood. In an effort to enhance our understanding of phytochrome-mediated light signaling networks, we attempted to identify novel proteins interacting with phytochrome B (phyB). Using affinity purification in Arabidopsis phyB overexpressor, coupled with mass spectrometry analysis, 16 proteins that interact with phyB in vivo were identified. Interactions between phyB and six putative phyB-interacting proteins were confirmed by bimolecular fluorescence complementation (BiFC) analysis. Involvement of these proteins in phyB-mediated signaling pathways was also revealed by physiological analysis of the mutants defective in each phyB-interacting protein. We further characterized the athb23 mutant impaired in the homeobox protein 23 (ATHB23) gene. The athb23 mutant displayed altered hypocotyl growth under R light, as well as defects in phyB-dependent seed germination and phyB-mediated cotyledon expansion. Taken together, these results suggest that the ATHB23 transcription factor is a novel component of the phyB-mediated R light signaling pathway.
光敏色素是一类红光(R)/远红光(FR)光受体,在植物生长发育的调控中起着核心作用。尽管人们已经熟知光激活的光敏色素会被转运到细胞核内,在那里与各种核蛋白相互作用,并最终调控全基因组转录,但这些光受体的作用机制尚未完全阐明。为了深入了解光敏色素介导的光信号网络,我们试图鉴定与光敏色素 B(phyB)相互作用的新蛋白。通过在拟南芥过表达 phyB 的植株中进行亲和纯化,并结合质谱分析,鉴定到 16 种体内与 phyB 相互作用的蛋白。通过双分子荧光互补(BiFC)分析证实了 phyB 与其中 6 种假定的 phyB 相互作用蛋白之间的相互作用。通过对每个 phyB 相互作用蛋白缺失突变体的生理学分析,也揭示了这些蛋白参与 phyB 介导的信号通路。我们进一步对 athb23 突变体进行了特征描述,该突变体中 homeobox 蛋白 23(ATHB23)基因缺失。athb23 突变体在 R 光下表现出改变的下胚轴生长,以及在依赖 phyB 的种子萌发和 phyB 介导的子叶扩张方面的缺陷。综上所述,这些结果表明 ATHB23 转录因子是 phyB 介导的 R 光信号通路的一个新组成部分。