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首页> 外文期刊>The Plant Cell >ABI3 and PIL5 Collaboratively Activate the Expression of SOMNUS by Directly Binding to Its Promoter in Imbibed Arabidopsis Seeds
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ABI3 and PIL5 Collaboratively Activate the Expression of SOMNUS by Directly Binding to Its Promoter in Imbibed Arabidopsis Seeds

机译:ABI3和PIL5通过直接结合在吸收的拟南芥种子中的启动子来共同激活SOMNUS的表达。

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摘要

A previous study showed that SOMNUS (SOM), which encodes a C3H-type zinc finger protein, is a key negative regulator of seed germination that acts downstream of PHYTOCHROME INTERACTING FACTOR3-LIKE5 (PIL5). However, it was not determined if PIL5 is the sole regulator of SOM expression. Public microarray data suggest that the expression of SOM mRNA is regulated also by ABSCISIC ACID INSENSITIVE3 (ABI3), another key regulator of seed germination. By analyzing abi3 mutants and ABI3 overexpression lines, we show here that ABI3 activates the expression of SOM mRNA collaboratively with PIL5 in imbibed seeds. Chromatin immunoprecipitation analysis coupled with electrophoretic mobility shift assay indicate that ABI3 activates the expression of SOM mRNA by directly binding to two RY motifs present in the SOM promoter in vivo, which is further supported by the greatly decreased expression of a reporter gene driven by a SOM promoter bearing mutated RY motifs. At the protein level, the ABI3 protein interacts with the PIL5 protein. The ABI3-PIL5 interaction, however, does not affect targeting of ABI3 and PIL5 to SOM promoters. Taken together, our results indicate that ABI3 and PIL5 collaboratively activate the expression of SOM mRNA by directly binding to and interacting with each other at the SOM promoter.
机译:先前的研究表明,编码C3H型锌指蛋白的SOMNUS(SOM)是种子发芽的关键负调控因子,其在植物染色体相互作用因子3-LIKE5(PIL5)的下游起作用。但是,尚未确定PIL5是否是SOM表达的唯一调节剂。公开的微阵列数据表明,SOM mRNA的表达还受种子发芽的另一个关键调节剂ABSCISIC ACID INSENSITIVE3(ABI3)的调节。通过分析abi3突变体和ABI3过表达株系,我们在这里显示ABI3与PIL5协同作用吸收了种子中SOM mRNA的表达。染色质免疫沉淀分析与电泳迁移率迁移分析表明,ABI3通过直接结合体内存在于SOM启动子中的两个RY基序来激活SOM mRNA的表达,这进一步得到了SOM驱动的报告基因表达的大大降低的支持携带突变RY基序的启动子。在蛋白质水平上,ABI3蛋白质与PIL5蛋白质相互作用。但是,ABI3-PIL5相互作用不影响ABI3和PIL5靶向SOM启动子。两者合计,我们的结果表明ABI3和PIL5通过直接结合并在SOM启动子上相互作用来共同激活SOM mRNA的表达。

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