Carrasco José L, Ancillo Gema, Mayda Esther, Vera Pablo
Instituto de Biología Molecular y Celular de Plantas, Universidad Politécnica de Valencia-CSIC Camino de Vera, s/n, 46022 Valencia, Spain.
EMBO J. 2003 Jul 1;22(13):3376-84. doi: 10.1093/emboj/cdg323.
In plants, expression of a disease-resistance character following perception of a pathogen involves massive deployment of transcription-dependent defenses. Thus, if rapid and effective defense responses have to be achieved, it is crucial that the pathogenic signal is transduced and amplified through pre-existing signaling pathways. Reversible phosphorylation of specific transcription factors, by a concerted action of protein kinases and phosphatases, may represent a mechanism for rapid and flexible regulation of selective gene expression by environmental stimuli. Here we identified a novel DNA-binding protein from tobacco plants, designated DBP1, with protein phosphatase activity, which binds in a sequence-specific manner to a cis- acting element of a defense-related gene and participates in its transcriptional regulation. This finding helps delineate a terminal event in a signaling pathway for the selective activation of early transcription-dependent defense responses in plants, and suggests that stimulus-dependent reversible phosphorylation of regulatory proteins may occur directly in a transcription protein-DNA complex.
在植物中,感知病原体后抗病性状的表达涉及大量转录依赖性防御的展开。因此,要实现快速有效的防御反应,至关重要的是致病信号通过预先存在的信号通路进行转导和放大。特定转录因子的可逆磷酸化,通过蛋白激酶和磷酸酶的协同作用,可能代表一种由环境刺激快速灵活调节选择性基因表达的机制。在这里,我们从烟草植物中鉴定出一种新型的DNA结合蛋白,命名为DBP1,它具有蛋白磷酸酶活性,能以序列特异性方式与防御相关基因的顺式作用元件结合,并参与其转录调控。这一发现有助于描绘植物中早期转录依赖性防御反应选择性激活信号通路中的一个终末事件,并表明调节蛋白的刺激依赖性可逆磷酸化可能直接发生在转录蛋白-DNA复合物中。