首页> 美国卫生研究院文献>PLoS Clinical Trials >The Imprinted Retrotransposon-Like Gene PEG11 (RTL1) Is Expressed as a Full-Length Protein in Skeletal Muscle from Callipyge Sheep
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The Imprinted Retrotransposon-Like Gene PEG11 (RTL1) Is Expressed as a Full-Length Protein in Skeletal Muscle from Callipyge Sheep

机译:印记的逆转座子样基因PEG11(RTL1)被表达为来自Callipyge绵羊骨骼肌中的全长蛋白

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摘要

Members of the Ty3-Gypsy retrotransposon family are rare in mammalian genomes despite their abundance in invertebrates and some vertebrates. These elements contain a gag-pol-like structure characteristic of retroviruses but have lost their ability to retrotranspose into the mammalian genome and are thought to be inactive relics of ancient retrotransposition events. One of these retrotransposon-like elements, PEG11 (also called RTL1) is located at the distal end of ovine chromosome 18 within an imprinted gene cluster that is highly conserved in placental mammals. The region contains several conserved imprinted genes including BEGAIN, DLK1, DAT, GTL2 (MEG3), PEG11 (RTL1), PEG11as, MEG8, MIRG and DIO3. An intergenic point mutation between DLK1 and GTL2 causes muscle hypertrophy in callipyge sheep and is associated with large changes in expression of the genes linked in cis between DLK1 and MEG8. It has been suggested that over-expression of DLK1 is the effector of the callipyge phenotype; however, PEG11 gene expression is also strongly correlated with the emergence of the muscling phenotype as a function of genotype, muscle type and developmental stage. To date, there has been no direct evidence that PEG11 encodes a protein, especially as its anti-sense transcript (PEG11as) contains six miRNA that cause cleavage of the PEG11 transcript. Using immunological and mass spectrometry approaches we have directly identified the full-length PEG11 protein from postnatal nuclear preparations of callipyge skeletal muscle and conclude that its over-expression may be involved in inducing muscle hypertrophy. The developmental expression pattern of the PEG11 gene is consistent with the callipyge mutation causing recapitulation of the normal fetal-like gene expression program during postnatal development. Analysis of the PEG11 sequence indicates strong conservation of the regions encoding the antisense microRNA and in at least two cases these correspond with structural or functional domains of the protein suggesting co-evolution of the sense and antisense genes.
机译:Ty3-Gypsy反转录转座子家族的成员在哺乳动物基因组中很少见,尽管它们在无脊椎动物和某些脊椎动物中数量很多。这些元件含有逆转录病毒特征性的gag-pol样结构,但已经丧失了它们逆转入哺乳动物基因组的能力,被认为是古代逆转事件的无活性产物。这些类似反转录转座子的元件之一PEG11(也称为RTL1)位于绵羊染色体18的远端,位于一个印记的基因簇中,该簇在胎盘哺乳动物中高度保守。该区域包含几个保守的印迹基因,包括BEGAIN,DLK1,DAT,GTL2(MEG3),PEG11(RTL1),PEG11as,MEG8,MIRG和DIO3。 DLK1和GTL2之间的基因间点突变会导致老茧羊的肌肉肥大,并且与DLK1和MEG8的顺式连接基因的表达发生较大变化有关。有人提出,DLK1的过表达是Callipyge表型的效应子。然而,PEG11基因表达也与肌肉表型的出现密切相关,而该表型是基因型,肌肉类型和发育阶段的函数。迄今为止,尚无直接证据表明 PEG11 编码蛋白质,尤其是其反义转录本( PEG11as )包含六个导致断裂的miRNA。 PEG11 转录本。使用免疫学和质谱方法,我们直接从产自Callipyge骨骼肌的核制剂中鉴定出全长PEG11蛋白,并得出结论,其过度表达可能与诱导肌肉肥大有关。 PEG11 基因的发育表达模式与导致出生后发育过程中正常胎儿样基因表达程序重现的愈伤组织突变一致。对 PEG11 序列的分析表明,编码反义microRNA的区域具有很强的保守性,至少在两种情况下,这些区域与蛋白质的结构或功能域相对应,提示有义和反义基因共同进化。

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