首页> 外文期刊>BMC Molecular Biology >Identification and characterization of bovine regulator of telomere length elongation helicase gene (RTEL): molecular cloning, expression distribution, splice variants and DNA methylation profile
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Identification and characterization of bovine regulator of telomere length elongation helicase gene (RTEL): molecular cloning, expression distribution, splice variants and DNA methylation profile

机译:牛端粒长度延伸解旋酶基因(RTEL)调节剂的鉴定和表征:分子克隆,表达分布,剪接变体和DNA甲基化谱

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Background The genetic basis of telomere length heterogeneity among mammalian species is still not well understood. Recently, a gene named regulator of telomere length elongation helicase (RTEL) was identified and predicted to be an essential participant in species-specific telomere length regulation in two murine species. To obtain broader insights into its structure and biological functions and to ascertain whether RTEL is also a candidate gene in the regulation of telomere length diversity in other mammalian species, data from other mammals may be helpful. Results Here we report the cDNA cloning, genomic structure, chromosomal location, alternative splicing pattern, expression distribution and DNA methylation profile of the bovine homolog of RTEL. The longest transcript of bovine RTEL is 4440 nt, encompassing 24.8 kb of genomic sequence that was mapped to chromosome 13q2.2. It encodes a conserved helicase-like protein containing seven characterized helicase motifs in the first 750 aa and a PIP box in the C-terminus. Four splice variants were identified within the transcripts in both the coding and 5'-untranslated regions; Western blot revealed that the most abundant splice variant SV-1 was translated to a truncated isoform of RTEL. The different 5'UTRs imply alternative transcription start sites in the promoter; Bovine RTEL was transcribed at the blastocyst stage, and expression levels were highest in adult testis, liver and ovary. DNA methylation analysis of tissues that differed significantly in expression level indicated that relatively low DNA methylation is associated with higher expression. Conclusion In this study, we have identified and characterized a bovine RTEL homolog and obtained basic information about it, including gene structure, expression distribution, splice variants and profile of DNA methylation around two putative transcription start sites. These data may be helpful for further comparative and functional analysis of RTEL in mammals.
机译:背景技术哺乳动物物种中端粒长度异质性的遗传基础仍未得到很好的理解。最近,一种名为端粒长度延伸解旋酶调节剂(RTEL)的基因被鉴定,并被预测为两个鼠​​类物种特异性端粒长度调节的重要参与者。为了获得对其结构和生物学功能的更广泛了解,并确定RTEL是否也是其他哺乳动物物种端粒长度多样性调控中的候选基因,其他哺乳动物的数据可能会有所帮助。结果在这里我们报告了RTEL牛同源物的cDNA克隆,基因组结构,染色体位置,替代剪接模式,表达分布和DNA甲基化谱。牛RTEL的最长转录本为4440 nt,包含24.8 kb的基因组序列,已定位到13q2.2号染色体。它编码一个保守的解旋酶样蛋白,在前750个氨基酸中包含七个特征化的解旋酶基序,在C端包含一个PIP框。在转录本内的编码区和5'非翻译区均鉴定出四个剪接变体; Western印迹表明,最丰富的剪接变体SV-1被翻译为RTEL的截短同工型。不同的5'UTR暗示启动子中的替代转录起始位点;牛RTEL在胚泡期转录,在成人睾丸,肝脏和卵巢中表达水平最高。表达水平差异显着的组织的DNA甲基化分析表明,较低的DNA甲基化与较高的表达有关。结论在这项研究中,我们已经鉴定并鉴定了牛RTEL同源物,并获得了有关其的基本信息,包括基因结构,表达分布,剪接变体和两个假定的转录起始位点周围的DNA甲基化图谱。这些数据可能有助于进一步比较和功能分析哺乳动物中的RTEL。

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