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拟南芥 bZIP1 转录因子参与糖信号转导、蛋白质网络和 DNA 结合。

The arabidopsis bZIP1 transcription factor is involved in sugar signaling, protein networking, and DNA binding.

机构信息

Department of Horticulture and Crop Science, The Ohio State University, Columbus, OH 43210, USA.

出版信息

Mol Plant. 2010 Mar;3(2):361-73. doi: 10.1093/mp/ssp115. Epub 2010 Jan 15.

Abstract

Sugar signaling is a mechanism that plants use to integrate various internal and external cues to achieve nutrient homeostasis, mediate developmental programs, and articulate stress responses. Many bZIP transcription factors are known to be involved in nutrient and/or stress signaling. An Arabidopsis S1-group bZIP gene, AtbZIP1, was identified as a sugar-sensitive gene in a previous gene expression profiling study (Plant Cell. 16, 2128-2150). In this report, we show that the expression of AtbZIP1 is repressed by sugars in a fast, sensitive, and reversible way. The sugar repression of AtbZIP1 is affected by a conserved sugar signaling component, hexokinase. Besides being a sugar-regulated gene, AtbZIP1 can mediate sugar signaling and affect gene expression, plant growth, and development. When carbon nutrients are limited, gain or loss of function of AtbZIP1 causes changes in the rates of early seedling establishment. Results of phenotypic analyses indicate that AtbZIP1 acts as a negative regulator of early seedling growth. Using gain- and loss-of-function plants in a microarray analysis, two sets of putative AtbZIP1-regulated genes have been identified. Among them, sugar-responsive genes are highly over-represented, implicating a role of AtbZIP1 in sugar-mediated gene expression. Using yeast two-hybrid (Y-2-H) screens and bimolecular fluorescence complementation (BiFC) analyses, we are able to recapitulate extensive C/S1 AtbZIP protein interacting network in living cells. Finally, we show that AtbZIP1 can bind ACGT-based motifs in vitro and that the binding characteristics appear to be affected by the heterodimerization between AtbZIP1 and the C-group AtbZIPs, including AtbZIP10 and AtbZIP63.

摘要

糖信号是植物用来整合各种内部和外部信号以实现养分稳态、调节发育程序和表达应激反应的一种机制。许多 bZIP 转录因子被认为参与养分和/或应激信号转导。在之前的基因表达谱研究中(《植物细胞》16,2128-2150),鉴定出拟南芥 S1 组 bZIP 基因 AtbZIP1 是一个对糖敏感的基因。在本报告中,我们表明 AtbZIP1 的表达被糖快速、敏感和可逆地抑制。AtbZIP1 的糖抑制受保守的糖信号成分己糖激酶的影响。除了是一个受糖调控的基因,AtbZIP1 还可以介导糖信号并影响基因表达、植物生长和发育。当碳营养受到限制时,AtbZIP1 的获得或丧失功能会导致早期幼苗定植率的变化。表型分析的结果表明,AtbZIP1 作为早期幼苗生长的负调控因子发挥作用。在微阵列分析中,使用获得和丧失功能的植物,已经鉴定出两组可能受 AtbZIP1 调控的基因。其中,糖响应基因高度过表达,暗示 AtbZIP1 在糖介导的基因表达中发挥作用。使用酵母双杂交 (Y-2-H) 筛选和双分子荧光互补 (BiFC) 分析,我们能够在活细胞中再现广泛的 C/S1 AtbZIP 蛋白相互作用网络。最后,我们表明 AtbZIP1 可以在体外结合基于 ACGT 的基序,并且结合特性似乎受到 AtbZIP1 与 C 组 AtbZIPs(包括 AtbZIP10 和 AtbZIP63)之间的异二聚化的影响。

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