首页> 外文期刊>Journal of Plant Biology >Identification of Elements Responsible for Maternally-Silenced Imprinted Gene Expression of Upward Curly Leaf1, an F-box Protein Gene that Regulates Curly Leaf in Arabidopsis
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Identification of Elements Responsible for Maternally-Silenced Imprinted Gene Expression of Upward Curly Leaf1, an F-box Protein Gene that Regulates Curly Leaf in Arabidopsis

机译:鉴定负责向上卷曲叶片1的潜艇沉默印迹基因表达的元素,调节拟南芥卷曲叶的F箱蛋白基因

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摘要

Upward Curly Leaf 1 (UCL1) is an Arabidopsis thaliana E3 ligase that targets the Curly Leaf (CLF) SET-domain polycomb-group (PcG) protein for degradation via the ubiquitin-26S proteasome system. UCL1 is a paternally-expressed imprinted gene in the endosperm. To precisely locate the promoter elements required for UCL1 imprinting pattern, various gene constructs were created in which the imprinting control region (ICR), endosperm-specific expression (ENSE) element, and/or the linker sequence were altered. By fusing these constructs with a GUS reporter gene, GUS expression patterns were monitored after reciprocal crosses with wild-type Columbia-0 allowing the determination of parent-of-origin expression. Analysis of publicly-available data on the UCL1 promoter region facilitated the search for allele-specific DNA and H3K27 methylation patterns. Overall, three promoter elements are required for maternal repression of UCL1; the ICR sequence located from - 2.5 to - 2.4 kb upstream of the translation start site, a differentially methylated region 2 (DMR2) that overlaps the short ATLINE1-1 transposable element in the linker region, and a minimal 271 bp ENSE element. In addition, DNA methylation patterns in the DMR2 contribute to the repression of the maternal UCL1 allele. Our findings would help to understand how parent-of-origin epigenetic patterns are created and maintained in the endosperm.
机译:向上卷曲叶片1(UCL1)是拟南芥E3连接酶,其靶向卷曲叶(CLF)设定结构域多COMB-基团(PCG)蛋白,通过遍布蛋白-26S蛋白酶体系进行降解。 UCL1是胚乳中的患者表达的印迹基因。为了精确定位UCL1压印模式所需的启动子元件,产生各种基因构建体,其中改变了压印控制区域(ICR),特异性表达(ENSE)元件和/或接头序列。通过将这些构造与Gus报道基因融合,在往复交叉与野生型哥伦比亚-0的往复交叉之后监测GUS表达模式,允许确定原产父母的表达。对UCL1启动子区域的公开数据分析促进了寻求等位基因特异性DNA和H3K27甲基化模式。总体而言,UCL1的母体抑制需要三个启动子元素;位于翻译开始站点的上游的-2.5至-2.4kb的ICR序列,差异甲基化区域2(DMR2)与接头区域中的短地架1-1转换元件重叠,以及最小的271bp eNse元件。此外,DMR2中的DNA甲基化图案有助于母体UCL1等位基因的抑制。我们的研究结果将有助于了解原产地是如何在胚乳中创造和维护的原产地的脑膜脑模式。

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