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拟南芥中RPD3组蛋白去乙酰化酶同源物的功能分析

Functional analysis of a RPD3 histone deacetylase homologue in Arabidopsis thaliana.

作者信息

Wu K, Malik K, Tian L, Brown D, Miki B

机构信息

Eastern Cereal and Oilseed Research Centre, Agriculture and Agri-Food Canada, Ottawa, Ontario.

出版信息

Plant Mol Biol. 2000 Sep;44(2):167-76. doi: 10.1023/a:1006498413543.

DOI:10.1023/a:1006498413543
PMID:11117260
Abstract

Histone acetylation is modulated through the action of histone acetyltransferase and deacetylase, which play key roles in the regulation of eukaryotic gene expression. We have screened the expressed sequence tag database with the yeast histone deacetylase RPD3 sequence and identified two Arabidopsis homologues, AtRPD3A and AtRPD3B. The deduced amino acid sequences of AtRPD3A and AtRPD3B show high overall homology (55% identity) to each other. AtRPD3A encodes a putative protein of 502 amino acids with 49% identity to the yeast RPD3. AtRPD3B encodes a putative protein of 471 amino acids and shares 55% amino acid identity with the yeast RPD3. Northern analysis indicated that AtRPD3A was highly expressed in the leaves, stems, flowers and young siliques of Arabidopsis plants, whereas the AtRPD3B transcript was not detected in these organs. An AtRPD3A fusion protein repressed transcription when directed to a promoter driving a reporter gene, indicating a role for AtRPD3A protein in gene repression. Arabidopsis plants were transformed with a gene construct comprising a truncated AtRPD3A cDNA in the antisense orientation driven by a strong constitutive promoter, -394tCUP. Antisense expression of AtRPD3A resulted in decreased endogenous AtRPD3A transcript and delayed flowering in transgenic Arabidopsis plants, suggesting that the transition from the vegetative to reproductive phase of development could be affected by histone acetylation. Our study demonstrates the important role of histone deacetylases in plant growth and development.

摘要

组蛋白乙酰化通过组蛋白乙酰转移酶和去乙酰化酶的作用进行调节,它们在真核基因表达调控中发挥关键作用。我们用酵母组蛋白去乙酰化酶RPD3序列筛选了表达序列标签数据库,鉴定出两个拟南芥同源物,AtRPD3A和AtRPD3B。AtRPD3A和AtRPD3B推导的氨基酸序列彼此显示出高度的总体同源性(55% 同一性)。AtRPD3A编码一个推定的由502个氨基酸组成的蛋白质,与酵母RPD3有49% 的同一性。AtRPD3B编码一个推定的由471个氨基酸组成的蛋白质,与酵母RPD3有55% 的氨基酸同一性。Northern分析表明,AtRPD3A在拟南芥植株的叶、茎、花和幼嫩角果中高度表达,而在这些器官中未检测到AtRPD3B转录本。当一个AtRPD3A融合蛋白被导向驱动报告基因的启动子时,它会抑制转录,表明AtRPD3A蛋白在基因抑制中发挥作用。用一个基因构建体转化拟南芥植株,该构建体包含一个由强组成型启动子-394tCUP驱动的反义方向的截短AtRPD3A cDNA。AtRPD3A的反义表达导致转基因拟南芥植株中内源性AtRPD3A转录本减少,开花延迟,这表明从营养生长阶段到生殖发育阶段的转变可能受组蛋白乙酰化的影响。我们的研究证明了组蛋白去乙酰化酶在植物生长发育中的重要作用。

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