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首页> 外文期刊>Cytogenetic and genome research >Differences in the pattern of X-linked gene expression between fetal bovine muscle and fibroblast cultures derived from the same muscle biopsies
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Differences in the pattern of X-linked gene expression between fetal bovine muscle and fibroblast cultures derived from the same muscle biopsies

机译:胎牛肌肉和成纤维细胞培养物中X连锁基因表达模式的差异源自同一肌肉活检

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The sex determination system in mammals creates an imbalance between males and females in the number of X chromosomes. This imbalance is compensated through transcriptional silencing of one of the two X chromosomes in female diploid cells by epigenetic modifications. Although common for mammals, X inactivation shows marked species-specific differences in mechanisms and end results, and provides a unique opportunity to study epigenetic regulation of gene expression. The aim of the present study was to establish the expression pattern of selected X-linked genes in bovine fetal muscle tissue and muscle fibroblast cultures in order to follow possible modifications at the transcriptional level attributable to in vitro culture. We used heterologous cDNA microarray hybridization and quantitative real-time PCR to study the pattern of expression of X-linked genes including SLC25A6,GAB3, MECP2, RPS4X, JARID1C, UBE1, BIRC4 and SLC16A2. Quantitative real-time PCR analysis in fetal bovine muscle showed higher transcript levels in females for all X-linked genes tested with the exception of SLC25A6, with differences being significant for RPS4X, JARID1C and UBE1. The expression in fibroblast cultures derived from the same samples differed, with significantly higher levels for UBE1, GAB3 and BIRC4, while the rest of the panel of X-linked genes remained unchanged. The changed expression pattern in vitro, probably reflecting modifications in the epigenetic mechanisms that regulate transcriptional activity and gene silencing in X inactivation, has important implications for the advancement of new biotechnologies such as somatic cell nuclear transfer and stem cell therapy. Copyright (c) 2005 S. KargerAG, Basel.
机译:哺乳动物的性别决定系统在X染色体的数量上造成男性和女性之间的不平衡。通过表观遗传修饰,雌性二倍体细胞中两个X染色体之一的转录沉默可以补偿这种不平衡。尽管X灭活在哺乳动物中很常见,但它在机制和最终结果上显示出明显的物种特异性差异,并为研究基因表达的表观遗传调控提供了独特的机会。本研究的目的是建立所选的X连锁基因在牛胎儿肌肉组织和成纤维细胞培养物中的表达模式,以便在可能归因于体外培养的转录水平上进行修饰。我们使用异源cDNA微阵列杂交和定量实时PCR研究X连锁基因的表达模式,包括SLC25A6,GAB3,MECP2,RPS4X,JARID1C,UBE1,BIRC4和SLC16A2。胎牛肌肉中的实时定量PCR分析显示,除SLC25A6外,所有X连锁基因的雌性转录本水平均较高,RPS4X,JARID1C和UBE1的差异显着。来自相同样品的成纤维细胞培养物中的表达有所不同,UBE1,GAB3和BIRC4的水平明显更高,而其余的X连锁基因则保持不变。体外表达模式的改变,可能反映了表观遗传机制在X灭活中调节转录活性和基因沉默的修饰,对诸如体细胞核移植和干细胞疗法等新生物技术的发展具有重要意义。版权所有(c)2005 S.KargerAG,巴塞尔。

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