Bailleul B
Unite 124 INSERM, Institut de Recherches sur le Cancer de Lille, France.
Nucleic Acids Res. 1996 Mar 15;24(6):1015-9. doi: 10.1093/nar/24.6.1015.
Circular splicing has already been described on nuclear pre-mRNA for certain splice sites far apart in the multi exonic ETS-1 gene and in the single 1.2 kb exon of the Sry locus. To date, it is unclear how splice site juxtaposition occurs in normal and circular splicing. The splice site selection of an internal exon is likely to involve pairing between splice sites across that exon. Based on this, we predict that, albeit at low frequency, internal exons yield circular RNA by splicing as an error-prone mechanism of exon juxtaposition or, perhaps more interestingly, as a regulated mechanism on alternative exons. To address this question, the circular exon formation was analyzed at three ETS-1 internal exons (one alternative spliced exon and two constitutive), in human cell line and blood cell samples. Here, we show by RT-PCR and sequencing that exon circular splicing occurs at the three individual exons that we examined. RNase protection experiments suggest that there is no correlation between exon circle expression and exon skipping.
环化剪接已在核前体mRNA上被描述,涉及多外显子ETS-1基因中相距较远的某些剪接位点以及Sry基因座的单个1.2 kb外显子。迄今为止,尚不清楚在正常剪接和环化剪接中剪接位点并列是如何发生的。内部外显子的剪接位点选择可能涉及该外显子两端剪接位点之间的配对。基于此,我们预测,尽管频率较低,但内部外显子会通过剪接产生环状RNA,这是一种外显子并列的易错机制,或者更有趣的是,作为可变外显子的一种调控机制。为了解决这个问题,我们在人细胞系和血细胞样本中分析了三个ETS-1内部外显子(一个可变剪接外显子和两个组成型外显子)的环化外显子形成情况。在这里,我们通过逆转录聚合酶链反应(RT-PCR)和测序表明,在所检测的三个单个外显子上发生了外显子环化剪接。核糖核酸酶保护实验表明,外显子环表达与外显子跳跃之间没有相关性。