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Bioinformatic analysis of the human DHRS4 gene cluster and a proposed mechanism for its transcriptional regulation

机译:人类DHRS4基因簇的生物信息学分析及其转录调控机制

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The human DHRS4 gene cluster consists of three genes, DHRS4, DHRS4L2 and DHRS4L1. Among them, DHRS4 encodes NADP(H)-dependent retinol dehydrogenase/reductase. In a previous study, we investigated the alternative splicing of DHRS4 and DHRS4L2. DHRS4L1 was added to the gene cluster recently, but little is known about its structure and expression. To reveal the regulatory mechanism of the DHRS4 gene cluster expression, we studied the structure and transcription of DHRS4L1 in the context of the transcriptional behaviors of the human DHRS4 gene cluster. Based on the results of bioinformatics analysis, we propose a possible mechanism for the transcriptional regulation of the human DHRS4 gene cluster. The homologous comparison analysis suggests that DHRS4, DHRS4L2 and DHRS4L1 are three homologous genes in human. DHRS4L1 and DHRS4L2 are paralogues of DHRS4, and DHRS4L2 is the most recent member of the DHRS4 gene cluster. In the minus strand of the human DHRS4 gene cluster, a gene transcribed in an antisense direction was found containing a 5' sequence overlapping the region of exon 1 and promoter of DHRS4. By cloning the full length of RNA variants through 5'RACE and 3'RACE, we identified two transcription start sites, within exon a2 and exon 1, of this newly named gene DHRS4L1 using neuroblastoma cell line BE(2)-M17. Analysis of exon composition in the transcripts of DHRS4 gene cluster revealed that exon 1 was absent in all the transcripts initiated from exon a1 of DHRS4L2 and exon a2 of DHRS4L1. Alternatively spliced RNA variants are prevalent in the human DHRS4 gene cluster. Based on the analysis of gene transcripts and bioinformatic prediction, we propose here that antisense transcription may be involved in the transcriptional initiation regulation of DHRS4 and in the posttranscriptional splicing of DHRS4L2 and DRHS4L1 for the homologous identity of DHRS4 gene cluster. Beside the alternative transcriptional start sites, the antisense RNA is novel possible factor serving to remove exon 1 from the transcripts initiated from exon a1 and exon a2.
机译:人DHRS4基因簇由三个基因DHRS4,DHRS4L2和DHRS4L1组成。其中,DHRS4编码依赖于NADP(H)的视黄醇脱氢酶/还原酶。在以前的研究中,我们调查了DHRS4和DHRS4L2的选择性剪接。 DHRS4L1最近被添加到基因簇中,但对其结构和表达知之甚少。为了揭示DHRS4基因簇表达的调控机制,我们在人类DHRS4基因簇的转录行为的背景下研究了DHRS4L1的结构和转录。基于生物信息学分析的结果,我们提出了人类DHRS4基因簇转录调控的可能机制。同源比较分析表明,DHRS4,DHRS4L2和DHRS4L1是人中的三个同源基因。 DHRS4L1和DHRS4L2是DHRS4的旁系同源物,而DHRS4L2是DHRS4基因簇的最新成员。在人DHRS4基因簇的负链中,发现了一个以反义方向转录的基因,该基因包含一个5'序列,该序列与外显子1的区域和DHRS4的启动子重叠。通过克隆5'RACE和3'RACE的全长RNA变体,我们使用神经母细胞瘤细胞系BE(2)-M17在这个新命名的基因DHRS4L1的外显子a2和外显子1中鉴定了两个转录起始位点。 DHRS4基因簇的转录本中外显子组成的分析表明,从DHRS4L2的外显子a1和DHRS4L1的外显子a2起始的所有转录本中都没有外显子1。备选地,剪接的RNA变体在人DHRS4基因簇中普遍存在。基于对基因转录本的分析和生物信息学预测,我们在此提出反义转录可能与DHRS4的转录起始调控以及DHRS4L2和DRHS4L1的转录后剪接有关DHRS4基因簇的同源性有关。除了可替代的转录起始位点,反义RNA是新的可能的因子,其用于从外显子a1和外显子a2起始的转录物中去除外显子1。

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