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驱动蛋白基因AtKP1上游的一个远端元件招募AtWHY1和AtWHY3以介导转录抑制。

Recruitment of AtWHY1 and AtWHY3 by a distal element upstream of the kinesin gene AtKP1 to mediate transcriptional repression.

作者信息

Xiong Ji-Yuan, Lai Cheng-Xia, Qu Zhe, Yang Xue-Yong, Qin Xing-Hua, Liu Guo-Qin

机构信息

State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Sciences, China Agricultural University, 100193 Beijing, China.

出版信息

Plant Mol Biol. 2009 Nov;71(4-5):437-49. doi: 10.1007/s11103-009-9533-7. Epub 2009 Aug 11.

Abstract

A 43-bp distal element, the AtKP1-related element (KPRE), was previously shown to repress the promoter activity of the kinesin gene AtKP1 in Arabidopsis thaliana. In order to identify KPRE-binding factor 1 (KBF1), a combination of ion-exchange chromatography, gel-filtration chromatography and DNA-affinity chromatography was used to purify KBF1 from whole cell extracts of Arabidopsis seedlings. Mass spectrometric identification showed that KBF1 contains two members of the whirly family of transcription factors, AtWHY1 and AtWHY3. KBF1 is a single and double-stranded DNA-binding factor. A ChIP assay showed that AtWHY1 and AtWHY3 bind to the upstream region of AtKP1 gene in vivo. Over-expression of AtWHY1 and AtWHY3 led to an obvious decrease of AtKP1 transcripts, based on quantitative real-time PCR analysis. Interestingly, salicylic acid treatment resulted in an increase of AtWHY1 and AtWHY3 transcripts, and a decrease of AtKP1 transcripts. Thus, AtWHY1 and AtWHY3, as two components of KBF1, can be recruited at the KPRE site to mediate the transcriptional repression of AtKP1. Our results prove that AtKP1 is a new downstream target of the whirly family of transcription factors.

摘要

一个43碱基对的远端元件,即AtKP1相关元件(KPRE),先前已被证明可抑制拟南芥中驱动蛋白基因AtKP1的启动子活性。为了鉴定KPRE结合因子1(KBF1),采用离子交换色谱、凝胶过滤色谱和DNA亲和色谱相结合的方法,从拟南芥幼苗的全细胞提取物中纯化KBF1。质谱鉴定表明,KBF1包含转录因子whirly家族的两个成员,即AtWHY1和AtWHY3。KBF1是一种单链和双链DNA结合因子。染色质免疫沉淀实验表明,AtWHY1和AtWHY3在体内与AtKP1基因的上游区域结合。基于定量实时PCR分析,AtWHY1和AtWHY3的过表达导致AtKP1转录本明显减少。有趣的是,水杨酸处理导致AtWHY1和AtWHY3转录本增加,而AtKP1转录本减少。因此,作为KBF1的两个组成部分,AtWHY1和AtWHY3可被招募到KPRE位点,介导AtKP1的转录抑制。我们的结果证明,AtKP1是转录因子whirly家族的一个新的下游靶点。

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