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Alternative splicing of the mouse embryonic poly(A) binding protein (Epab) mRNA is regulated by an exonic splicing enhancer: a model for post-transcriptional control of gene expression in the oocyte

机译:小鼠胚胎poly(A)结合蛋白(Epab)mRNA的选择性剪接受外显子剪接增强子调控:转录后控制卵母细胞中基因表达的模型

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摘要

Embryonic poly(A) binding protein (EPAB), expressed in oocytes and early embryos, binds and stabilizes maternal mRNAs, and mediates initiation of their translation. We identified an alternatively spliced form of Epab lacking exon 10 (c.Ex10del) and investigated the regulation of Epab mRNA alternative splicing as a model for alternative splicing in oocytes and early preimplantation embryos. Specifically, we evaluated the following mechanisms: imprinting; RNA editing and exonic splicing enhancers (ESEs). Sequence analysis led to the identification of two single nucleotide polymorphisms (SNPs): one was detected in exon 9 (rs55858A/G), and served as a marker for the parental origin of the alternatively spliced form, and the other was found in exon 10 (rs56574G/C), and co-segregated with the exon 9 SNP. We found that the presence of rs56574G in exon 10 led to the formation of an ESE, leading to efficient exclusion of exon 10. Real-time RT–PCR results revealed a 5-fold increase in the expression of the c.Ex10del alternative splicing variant in animals carrying rs56574G/G in exon 10 compared with rs56574C/C at the same locus. Our findings suggest that SNPs may alter the ratio between alternative splicing variants of oocyte-specific proteins. The role that these subtle differences play in determining individual reproductive outcome remains to be determined.
机译:在卵母细胞和早期胚胎中表达的胚胎聚(A)结合蛋白(EPAB)结合并稳定母体mRNA,并介导其翻译的启动。我们确定了缺少外显子10(c.Ex10del)的Epab的另一种剪接形式,并研究了Epab mRNA替代剪接的调控作为卵母细胞和早期植入前胚胎中选择性剪接的模型。具体来说,我们评估了以下机制:印记; RNA编辑和外显子剪接增强子(ESE)。序列分析导致了两个单核苷酸多态性(SNP)的鉴定:一个在外显子9(rs55858A / G)中被检测到,并作为另一种剪接形式的亲本起源的标记,另一个在外显子10中被发现。 (rs56574G / C),并与第9外显子SNP共分离。我们发现在外显子10中存在rs56574G导致ESE的形成,从而导致有效地排除了外显子10。实时RT-PCR结果显示c.Ex10del可变剪接变体的表达增加了5倍。与在相同位点的rs56574C / C相比,在第10外显子中携带rs56574G / G的动物中的这种情况。我们的发现表明SNP可能会改变卵母细胞特异性蛋白的可变剪接变体之间的比率。这些细微差别在决定个体生殖结果中所起的作用尚待确定。

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