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首页> 外文期刊>BMC Molecular Biology >Dual effect of a single nucleotide polymorphism in the first intron of the porcine Secreted phosphoprotein 1 gene: allele-specific binding of C/EBP beta and activation of aberrant splicing
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Dual effect of a single nucleotide polymorphism in the first intron of the porcine Secreted phosphoprotein 1 gene: allele-specific binding of C/EBP beta and activation of aberrant splicing

机译:猪分泌的磷蛋白1基因的第一个内含子中单核苷酸多态性的双重影响:C / EBP beta的等位基因特异性结合和异常剪接的激活

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Background Secreted phosphoprotein 1 (SPP1 or Osteopontin, OPN) is a multifunctional matricellular glycoprotein involved in development and regeneration of skeletal muscle. Previously, we have demonstrated that porcine SPP1 shows breed-related differential mRNA expression during myogenesis. With the aim to identify putative contributing cis-regulatory DNA variation we resequenced the 5' upstream region of the gene in the respective breeds Pietrain and Duroc. We found two single nucleotide polymorphisms (SNP; [GenBank: M84121 ]: g.1804C>T and g.3836A>G). We focused our investigation on the SNP g.3836A>G, because in silico analysis and knowledge about the regulation of SPP1 suggested an effect of this SNP on a CCAAT/enhancer binding protein beta (C/EBPβ) responsive transcriptional enhancer. Results Using electrophoretic mobility shift assay we demonstrated that, similar to human SPP1, the 3' terminal end of the first intron of porcine SPP1 harbors a C/EBPβ binding site and showed that this binding site is negatively affected by the mutant G allele. Genotyping of 48 fetuses per breed revealed that the G allele segregated exclusively in Duroc fetuses with a frequency of 57 percent. Using real-time quantitative PCR we showed that, consistent with its negative effect on a transcriptional enhancer element, the G allele tends to decrease mRNA abundance of SPP1 in the fetal musculus longissimus dorsi (~1.3 fold; P ≥ 0.1). Moreover, we showed that the SNP g.3836A>G leads to ubiquitous aberrant splicing of the first intron by generating a de novo and activating a cryptic splice acceptor site. Aberrantly spliced transcripts comprise about half of the SPP1 messages expressed by the G allele. Both aberrant splice variants differ from the native transcript by insertions in the leader sequences which do not change the reading frame of SPP1. Conclusion At the 3' terminal end of the first intron of the porcine SPP1 we identified a unique, dually functional SNP g.3836A>G. This SNP affects the function of the SPP1 gene at the DNA level by affecting a C/EBPβ binding site and at the RNA level by activating aberrant splicing of the first intron, and thus represents an interesting DNA-marker to study phenotypic effects of SPP1 DNA-variation.
机译:背景技术分泌的磷蛋白1(SPP1或Osteopontin,OPN)是一种多功能的基质细胞糖蛋白,参与骨骼肌的发育和再生。以前,我们已经证明猪SPP1在成肌过程中显示出与品种相关的差异mRNA表达。为了鉴定推定的顺式调控DNA变异,我们在相应的Pietrain和Duroc品种的基因的5'上游区域重新测序。我们发现了两个单核苷酸多态性(SNP; [GenBank:M84121]:g.1804C> T和g.3836A> G)。我们的研究集中在SNP g.3836A> G,因为计算机分析和对SPP1调控的知识表明,该SNP对CCAAT /增强子结合蛋白β(C /EBPβ)响应转录增强子有影响。结果使用电泳迁移率变动分析,我们证明,与人SPP1相似,猪SPP1第一个内含子的3'末端带有一个C /EBPβ结合位点,并表明该结合位点受到突变G等位基因的负面影响。每个品种48个胎儿的基因分型显示,G等位基因仅在杜洛克胎儿中分离,发生频率为57%。使用实时定量PCR,我们发现,与其对转录增强子元件的负面影响相一致,G等位基因还倾向于降低长背肌中SPP1的mRNA丰度(〜1.3倍; P≥0.1)。此外,我们表明,SNP g.3836A> G通过产生从头并激活隐蔽的剪接受体位点,导致第一个内含子普遍存在异常剪接。异常剪接的转录本占G等位基因表达的SPP1信息的一半左右。两种异常剪接变体与天然转录本的不同之处在于前导序列中的插入不会改变SPP1的阅读框。结论在猪SPP1第一个内含子的3'末端,我们鉴定出独特的双重功能SNP g.3836A> G。该SNP通过激活C /EBPβ结合位点在DNA水平上影响SPP1基因的功能,并通过激活第一个内含子的异常剪接在RNA水平上影响SPP1基因的功能,因此代表了研究SPP1 DNA表型效应的有趣的DNA标记。 -变异。

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