Department of Integrative Food, Bioscience and Biotechnology, Chonnam National University, Gwangju 61186, Republic of Korea.
Kumho Life Science Laboratory, Chonnam National University, Gwangju 61186, Republic of Korea.
Int J Mol Sci. 2023 Jan 20;24(3):2110. doi: 10.3390/ijms24032110.
Extensive research has been conducted for decades to elucidate the molecular and regulatory mechanisms for phytochrome-mediated light signaling in plants. As a result, tens of downstream signaling components that physically interact with phytochromes are identified, among which negative transcription factors for photomorphogenesis, PHYTOCHROME-INTERACTING FACTORs (PIFs), are well known to be regulated by phytochromes. In addition, phytochromes are also shown to inactivate an important E3 ligase complex consisting of CONSTITUTIVELY PHOTOMORPHOGENIC 1 (COP1) and SUPPRESSORs OF (SPAs). This inactivation induces the accumulation of positive transcription factors for plant photomorphogenesis, such as ELONGATED HYPOCOTYL 5 (HY5). Although many downstream components of phytochrome signaling have been studied thus far, it is not fully elucidated which intrinsic activity of phytochromes is necessary for the regulation of these components. It should be noted that phytochromes are autophosphorylating protein kinases. Recently, the protein kinase activity of phytochrome A (phyA) has shown to be important for its function in plant light signaling using phyA mutants with reduced or increased kinase activity. In this review, we highlight the function of phyA as a protein kinase to explain the regulation of plant photoresponses by phyA.
几十年来,人们一直在进行广泛的研究,以阐明植物中光敏色素介导的光信号转导的分子和调节机制。因此,已经鉴定出数十种与光敏色素物理相互作用的下游信号转导成分,其中光形态建成的负转录因子、PHYTOCHROME-INTERACTING FACTORS(PIFs)被认为受光敏色素调控。此外,光敏色素还被证明能使由CONSTITUTIVELY PHOTOMORPHOGENIC 1(COP1)和SUPPRESSORs OF (SPAs)组成的重要 E3 连接酶复合物失活。这种失活诱导植物光形态建成的正转录因子,如 ELONGATED HYPOCOTYL 5(HY5)的积累。尽管迄今为止已经研究了光敏色素信号转导的许多下游成分,但尚未完全阐明哪种内在的光敏色素活性对于这些成分的调节是必要的。值得注意的是,光敏色素是自磷酸化蛋白激酶。最近,使用激酶活性降低或增加的 phyA 突变体,phyA 的蛋白激酶活性对于其在植物光信号转导中的功能显示是重要的。在这篇综述中,我们强调了 phyA 作为蛋白激酶的功能,以解释 phyA 对植物光反应的调节。