首页> 外文期刊>Nucleic Acids Research >RNA molecules containing exons originating from different members of the cytochrome P450 2C gene subfamily (CYP2C) in human epidermis and liver.
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RNA molecules containing exons originating from different members of the cytochrome P450 2C gene subfamily (CYP2C) in human epidermis and liver.

机译:包含外显子的RNA分子,该外显子来自人表皮和肝脏中细胞色素P450 2C基因亚家族(CYP2C)的不同成员。

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摘要

Reverse transcription-PCR analysis in human epidermis, using primers from CYP2C18 and CYP2C19, revealed products containing combinations between canonically defined exons of these two genes. The major RNA species identified contained 2C18 exon 8 spliced with 2C19 exon 2. However, the terminal exons 1 and 9 were never detected in any of these composite molecules. When similar experiments were performed with liver RNA, exons 1 and 9 of both 2C18 and 2C19 were readily identified in composite 2C18/2C19 RNAs. Moreover, molecules containing 2C9 sequences spliced with 2C18 exons were also detected. These findings suggest that during the process of RNA splicing of the 2C transcripts, various exon juxtaposition events may occur, including combinations between exons of distinct genes. However, the frequency of these events is quite low and the levels of the composite RNA molecules are generally estimated at less than one molecule per cell. Since the order of these genes on chromosome 10q24 is CYP2C18 - CYP2C19 - CYP2C9, it is conceivable that the composite RNAs may result from multiple canonical and inverse splicing events of a long pre-mRNA that encompasses the three genes. However, these molecules could also be rationalized as being the products of trans splicing phenomena between distinct pre-mRNAs.
机译:使用来自CYP2C18和CYP2C19的引物在人表皮中进行逆转录PCR分析,揭示了包含这两个基因的规范定义外显子之间组合的产物。鉴定出的主要RNA种类包含与2C19外显子2剪接的2C18外显子8。但是,在任何这些复合分子中都从未检测到末端外显子1和9。用肝RNA进行类似实验时,很容易在复合2C18 / 2C19 RNA中鉴定出2C18和2C19的外显子1和9。此外,还检测到含有2C9外显子剪接的2C9序列的分子。这些发现表明,在2C转录本的RNA剪接过程中,可能发生各种外显子并置事件,包括不同基因的外显子之间的组合。但是,这些事件的发生频率非常低,通常估计每个细胞中复合RNA分子的水平少于一个分子。由于这些基因在10q24染色体上的顺序是CYP2C18-CYP2C19-CYP2C9,因此可以想象,复合RNA可能是由包含三个基因的长前体mRNA的多个正则和反向剪接事件产生的。然而,这些分子也可以被合理化为不同的前mRNA之间的反式剪接现象的产物。

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