Imamura A, Hanaki N, Nakamura A, Suzuki T, Taniguchi M, Kiba T, Ueguchi C, Sugiyama T, Mizuno T
Department of Biological Mechanisms and Functions, Graduate School of Bioagricultural Science, Nagoya University, Japan.
Plant Cell Physiol. 1999 Jul;40(7):733-42. doi: 10.1093/oxfordjournals.pcp.a029600.
His-Asp phosphorelays are evolutionary-conserved powerful biological tactics for intracellular signal transduction. Such a phosphorelay is generally made up of "sensor histidine (His)-kinases", "response regulators", and "histidine-containing (HPt) phosphotransmitters". In the higher plant, Arabidopsis thaliana, results from recent intensive studies suggested that His-Asp phosphorelays may be widely used for propagating environmental stimuli, such as phytohormones (e.g., ethylene and cytokinin). In this study, we first inspected extensively the occurrence of Arabidopsis response regulators in order to compile and characterize them. The results showed that this higher plant has, at least, 14 members of the family of response regulators that can be classified into two distinct subtypes (type-A and type-B), as judged from their structural designs, biochemical properties, and expression profiles. Comparative studies were conducted for each representative (ARR3 and ARR4 for type-A, and ARR10 for type-B). It was suggested that expression of the type-A response regulator is cytokinin-inducible, while that of the type-B response regulator appears to be not. Results from yeast two-hybrid analyses suggested that the type-B response regulator may have an ability to stably interact with a set of HPt phosphotransmitters (AHPs). These and other results will be discussed with special reference to the His-Asp phosphorelay signaling network in Arabidopsis thaliana.
组氨酸-天冬氨酸磷酸化信号转导途径是进化保守的强大细胞内信号转导生物学机制。这种磷酸化信号转导途径通常由“传感组氨酸激酶”、“反应调节因子”和“含组氨酸磷酸转移蛋白(HPt)”组成。在高等植物拟南芥中,最近深入研究的结果表明,组氨酸-天冬氨酸磷酸化信号转导途径可能广泛用于传递环境刺激信号,如植物激素(如乙烯和细胞分裂素)。在本研究中,我们首先广泛检查了拟南芥反应调节因子的存在情况,以便对其进行汇总和表征。结果表明,从其结构设计、生化特性和表达谱判断,这种高等植物至少有14个反应调节因子家族成员,可分为两个不同的亚型(A型和B型)。对每个代表性成员(A型的ARR3和ARR4以及B型的ARR10)进行了比较研究。结果表明,A型反应调节因子的表达是细胞分裂素诱导型的,而B型反应调节因子的表达似乎不是。酵母双杂交分析结果表明,B型反应调节因子可能具有与一组HPt磷酸转移蛋白(AHPs)稳定相互作用的能力。将结合拟南芥组氨酸-天冬氨酸磷酸化信号转导网络特别讨论这些结果及其他结果。