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首页> 外文期刊>The Plant Cell >beta-Amylase-Like Proteins Function as Transcription Factors in Arabidopsis, Controlling Shoot Growth and Development
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beta-Amylase-Like Proteins Function as Transcription Factors in Arabidopsis, Controlling Shoot Growth and Development

机译:β-淀粉酶样蛋白在拟南芥中充当转录因子,控制芽的生长和发育

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Plants contain beta-amylase-like proteins (BAMs; enzymes usually associated with starch breakdown) present in the nucleus rather than targeted to the chloroplast. They possess BRASSINAZOLE RESISTANT1 (BZR1)-type DNA binding domains-also found in transcription factors mediating brassinosteroid (BR) responses. The two Arabidopsis thaliana BZR1-BAM proteins (BAM7 and BAM8) bind a cis-regulatory element that both contains a G box and resembles a BR-responsive element. In protoplast transactivation assays, these BZR1-BAMs activate gene expression. Structural modeling suggests that the BAM domain's glucan binding cleft is intact, but the recombinant proteins are at least 1000 times less active than chloroplastic beta-amylases. Deregulation of BZR1-BAMs (the bam7bam8 double mutant and BAM8-overexpressing plants) causes altered leaf growth and development. Of the genes upregulated in plants overexpressing BAM8 and downregulated in bam7bam8 plants, many carry the cis-regulatory element in their promoters. Many genes that respond to BRs are inversely regulated by BZR1-BAMs. We propose a role for BZR1-BAMs in controlling plant growth and development through crosstalk with BR signaling. Furthermore, we speculate that BZR1-BAMs may transmit metabolic signals by binding a ligand in their BAM domain, although diurnal changes in the concentration of maltose, a candidate ligand produced by chloroplastic b-amylases, do not influence their transcription factor function.
机译:植物包含存在于细胞核中而不是针对叶绿体的β-淀粉酶样蛋白(BAM;通常与淀粉分解相关的酶)。它们具有BRASSINAZOLE RESISTANT1(BZR1)型DNA结合域,也存在于介导油菜素类固醇(BR)反应的转录因子中。两种拟南芥BZR1-BAM蛋白(BAM7和BAM8)结合一个顺式调控元件,该元件均包含一个G框且类似于BR反应元件。在原生质体反式激活测定中,这些BZR1-BAM激活基因表达。结构建模表明,BAM结构域的葡聚糖结合裂隙是完整的,但重组蛋白的活性至少比叶绿体β-淀粉酶低1000倍。 BZR1-BAM(bam7bam8双突变体和BAM8过表达植物)的失调导致叶片生长和发育发生变化。在过表达BAM8的植物中上调的基因和在bam7bam8的植物中下调的基因中,许多基因在其启动子中带有顺式调控元件。 BZR1-BAM逆向调节BRs的许多基因。我们提出BZR1-BAM在通过BR信号的串扰控制植物生长和发育中的作用。此外,我们推测BZR1-BAMs可能通过在其BAM结构域中结合一个配体来传递代谢信号,尽管麦芽糖(一种由叶绿体b-淀粉酶产生的候选配体)浓度的昼夜变化不会影响它们的转录因子功能。

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