Samanta Subhasis, Thakur Jitendra K
Plant Mediator Lab, National Institute of Plant Genome Research New Delhi, India.
Front Plant Sci. 2015 Sep 17;6:757. doi: 10.3389/fpls.2015.00757. eCollection 2015.
Basic transcriptional machinery in eukaryotes is assisted by a number of cofactors, which either increase or decrease the rate of transcription. Mediator complex is one such cofactor, and recently has drawn a lot of interest because of its integrative power to converge different signaling pathways before channeling the transcription instructions to the RNA polymerase II machinery. Like yeast and metazoans, plants do possess the Mediator complex across the kingdom, and its isolation and subunit analyses have been reported from the model plant, Arabidopsis. Genetic, and molecular analyses have unraveled important regulatory roles of Mediator subunits at every stage of plant life cycle starting from flowering to embryo and organ development, to even size determination. It also contributes immensely to the survival of plants against different environmental vagaries by the timely activation of its resistance mechanisms. Here, we have provided an overview of plant Mediator complex starting from its discovery to regulation of stoichiometry of its subunits. We have also reviewed involvement of different Mediator subunits in different processes and pathways including defense response pathways evoked by diverse biotic cues. Wherever possible, attempts have been made to provide mechanistic insight of Mediator's involvement in these processes.
真核生物中的基本转录机制由许多辅助因子协助,这些辅助因子可提高或降低转录速率。中介体复合物就是这样一种辅助因子,最近它因其在将转录指令传递给RNA聚合酶II机制之前整合不同信号通路的能力而备受关注。与酵母和后生动物一样,植物在整个植物界都拥有中介体复合物,并且已经报道了从模式植物拟南芥中分离出该复合物并对其亚基进行分析的情况。遗传和分子分析揭示了中介体亚基在植物生命周期的各个阶段,从开花到胚胎和器官发育,甚至到大小决定,都发挥着重要的调控作用。它还通过及时激活植物的抗性机制,极大地有助于植物在不同环境变化中生存。在这里,我们提供了植物中介体复合物的概述,从其发现到亚基化学计量的调控。我们还综述了不同中介体亚基在不同过程和途径中的参与情况,包括由各种生物线索引发的防御反应途径。只要有可能,我们都试图提供中介体参与这些过程的机制见解。