Department of Animal Production, GIGA-R, Faculty of Veterinary Medicine, University of Liège, Liège, Belgium.
Genome Res. 2010 Dec;20(12):1651-62. doi: 10.1101/gr.108787.110. Epub 2010 Oct 13.
The callipyge phenotype is a monogenic muscular hypertrophy that is only expressed in heterozygous sheep receiving the CLPG mutation from their sire. The wild-type phenotype of CLPG/CLPG animals is thought to result from translational inhibition of paternally expressed DLK1 transcripts by maternally expressed miRNAs. To identify the miRNA responsible for this trans effect, we used high-throughput sequencing to exhaustively catalog miRNAs expressed in skeletal muscle of sheep of the four CLPG genotypes. We have identified 747 miRNA species of which 110 map to the DLK1-GTL2 or callipyge domain. We demonstrate that the latter are imprinted and preferentially expressed from the maternal allele. We show that the CLPG mutation affects their level of expression in cis (∼3.2-fold increase) as well as in trans (∼1.8-fold increase). In CLPG/CLPG animals, miRNAs from the DLK1-GTL2 domain account for ∼20% of miRNAs in skeletal muscle. We show that the CLPG genotype affects the levels of A-to-I editing of at least five pri-miRNAs of the DLK1-GTL2 domain, but that levels of editing of mature miRNAs are always minor. We present suggestive evidence that the miRNAs from the domain target the ORF of DLK1, thereby causing the trans inhibition underlying polar overdominance. We highlight the limitations of high-throughput sequencing for digital gene expression profiling as a result of biased and inconsistent amplification of specific miRNAs.
Callipyge 表型是一种单基因肌肉肥大,仅在从父本接受 CLPG 突变的杂合绵羊中表达。CLPG/CLPG 动物的野生型表型被认为是由于母源表达的 miRNAs 抑制了父源表达的 DLK1 转录本的翻译。为了鉴定负责这种反式作用的 miRNA,我们使用高通量测序方法全面分析了四种 CLPG 基因型绵羊骨骼肌中表达的 miRNAs。我们鉴定了 747 种 miRNA 物种,其中 110 种映射到 DLK1-GTL2 或 callipyge 结构域。我们证明后者是印迹的,并优先从母本等位基因表达。我们表明,CLPG 突变会影响其顺式(增加约 3.2 倍)和反式(增加约 1.8 倍)表达水平。在 CLPG/CLPG 动物中,来自 DLK1-GTL2 结构域的 miRNAs 占骨骼肌中 miRNAs 的约 20%。我们表明,CLPG 基因型会影响至少五个 DLK1-GTL2 结构域 pri-miRNA 的 A-to-I 编辑水平,但成熟 miRNA 的编辑水平总是很小。我们提供了暗示性的证据表明,该结构域中的 miRNAs 靶向了 DLK1 的 ORF,从而导致了偏性过显性的反式抑制。我们强调了高通量测序在数字基因表达谱分析中的局限性,这是由于特定 miRNAs 的偏性和不一致扩增所致。