Department of Biology and Program in Cell and Molecular Biology, Colorado State University, Fort Collins, CO 80523, USA.
Department of Botany and Microbiology, Faculty of Science, Zagazig University, Zagazig 44519, Egypt.
Cells. 2023 Aug 2;12(15):1986. doi: 10.3390/cells12151986.
Calmodulin-binding transcription activators (CAMTAs), a small family of highly conserved transcription factors, function in calcium-mediated signaling pathways. Of the six CAMTAs in , CAMTA3 regulates diverse biotic and abiotic stress responses. A recent study has shown that CAMTA3 is a guardee of NLRs (Nucleotide-binding, Leucine-rich repeat Receptors) in modulating plant immunity, raising the possibility that CAMTA3 transcriptional activity is dispensable for its function. Here, we show that the DNA-binding activity of CAMTA3 is essential for its role in mediating plant immune responses. Analysis of the DNA-binding (CG-1) domain of CAMTAs in plants and animals showed strong conservation of several amino acids. We mutated six conserved amino acids in the CG-1 domain to investigate their role in CAMTA3 function. Electrophoretic mobility shift assays using these mutants with a promoter of its target gene identified critical amino acid residues necessary for DNA-binding activity. In addition, transient assays showed that these residues are essential for the CAMTA3 function in activating the (-driven reporter gene expression. In line with this, transgenic lines expressing the CG-1 mutants of CAMTA3 in the mutant failed to rescue the mutant phenotype and restore the expression of CAMTA3 downstream target genes. Collectively, our results provide biochemical and genetic evidence that the transcriptional activity of CAMTA3 is indispensable for its function.
钙调素结合转录激活因子(CAMTAs)是一类高度保守的转录因子,在钙介导的信号通路中发挥作用。在 中的 6 个 CAMTA 中,CAMTA3 调节多种生物和非生物胁迫反应。最近的一项研究表明,CAMTA3 是 NLRs(核苷酸结合富含亮氨酸重复受体)的守护者,在调节植物免疫中发挥作用,这表明 CAMTA3 的转录活性对于其功能并非必不可少。在这里,我们表明 CAMTA3 的 DNA 结合活性对于其介导植物免疫反应的功能至关重要。对植物和动物中 CAMTA 的 DNA 结合(CG-1)结构域进行分析表明,几个氨基酸具有很强的保守性。我们突变了 CG-1 结构域中的六个保守氨基酸,以研究它们在 CAMTA3 功能中的作用。使用这些突变体与目标基因的启动子进行电泳迁移率变动分析,确定了 DNA 结合活性所必需的关键氨基酸残基。此外,瞬时测定表明,这些残基对于 CAMTA3 激活 (-驱动报告基因表达的功能是必不可少的。与此一致的是,在 突变体中表达 CAMTA3 的 CG-1 突变体的转基因系未能挽救突变体表型并恢复 CAMTA3 下游靶基因的表达。总之,我们的结果提供了生化和遗传证据,表明 CAMTA3 的转录活性对于其功能是必不可少的。