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高邮鸭骨骼肌中基因启动子的转录调控区域及DNA甲基化分析()

Transcriptional regulatory region and DNA methylation analysis of gene promoters in Gaoyou duck skeletal muscle ().

作者信息

Ji G-G, Shu J-T, Zhang M, Ju X-J, Shan Y-J, Liu Y-F, Tu Y-J

机构信息

a Key Laboratory for Poultry Genetics and Breeding of Jiangsu Province , Chinese Academy of Agricultural Science, Institute of Poultry Science , Yangzhou , China.

出版信息

Br Poult Sci. 2019 Jun;60(3):202-208. doi: 10.1080/00071668.2019.1602250. Epub 2019 May 29.

Abstract
  1. The slow skeletal muscle troponin I () gene has been found to be specifically expressed in slow muscle fibres and plays an important role in muscle development. The aim of this study was to determine the active control area of duck and identify the potential -regulatory elements in the promoter. 2. In this study, the promoter was first cloned by genome walking and the sequences were analysed using bioinformatics software. Firefly luciferase reporter gene vectors, driven by a series of constructs with progressive deletions, were used to identify the core transcriptional regulatory region of the duck gene. The methylation status of the CpG island in the promoter was detected in skeletal muscle on embryonic days 21 and 27, by bisulphite sequencing PCR (BSP). 3. The results showed two CpG islands presented in the promoter region, with one of the CpG islands located in the core transcriptional regulatory region (-2078/-885 bp). The total methylation levels of the 14 CpG sites were not altered between breast and leg muscles on embryonic days 21 and 27. However, four CpG sites (loci of positions 4, 11, 13, and 14) showed dramatically different methylation levels between breast and leg muscles at embryonic days 21 and 27. Analysis showed that multiple CpG sites had a significant correlation between the methylation levels of the CpG sites and mRNA expressions in skeletal muscle. Multiple transcription factor binding sites including Sp1, c-Myc, Oct-1 and NF-kB motifs were identified and might be responsible for transcriptional regulation of the gene. 4. These findings contribute to further understanding of the fundamental mechanism for transcriptional regulation of the gene in ducks.
摘要
  1. 已发现慢肌骨骼肌肌钙蛋白I()基因在慢肌纤维中特异性表达,并在肌肉发育中起重要作用。本研究的目的是确定鸭的活性控制区域,并鉴定启动子中的潜在调控元件。2. 在本研究中,首先通过基因组步移克隆了启动子,并使用生物信息学软件对序列进行了分析。由一系列具有逐步缺失的构建体驱动的萤火虫荧光素酶报告基因载体,用于鉴定鸭基因的核心转录调控区域。通过亚硫酸氢盐测序PCR(BSP)检测胚胎第21天和第27天骨骼肌中启动子中CpG岛的甲基化状态。3. 结果显示启动子区域存在两个CpG岛,其中一个CpG岛位于核心转录调控区域(-2078 / -885 bp)。胚胎第21天和第27天,胸肌和腿肌中14个CpG位点的总甲基化水平没有改变。然而,在胚胎第21天和第27天,四个CpG位点(位置4、11、13和14的位点)在胸肌和腿肌之间显示出显著不同的甲基化水平。分析表明,多个CpG位点的甲基化水平与骨骼肌中的mRNA表达之间存在显著相关性。鉴定出包括Sp1、c-Myc、Oct-1和NF-κB基序在内的多个转录因子结合位点,可能负责基因的转录调控。4. 这些发现有助于进一步了解鸭基因转录调控的基本机制。

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