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Effect of DLK1 and RTL1 but Not MEG3 or MEG8 on Muscle Gene Expression in Callipyge Lambs

机译:DLK1和RTL1而非MEG3或MEG8对Callipyge羔羊肌肉基因表达的影响

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摘要

Callipyge sheep exhibit extreme postnatal muscle hypertrophy in the loin and hindquarters as a result of a single nucleotide polymorphism (SNP) in the imprinted DLK1-DIO3 domain on ovine chromosome 18. The callipyge SNP up-regulates the expression of surrounding transcripts when inherited in cis without altering their allele-specific imprinting status. The callipyge phenotype exhibits polar overdominant inheritance since only paternal heterozygous animals have muscle hypertrophy. Two studies were conducted profiling gene expression in lamb muscles to determine the down-stream effects of over-expression of paternal allele-specific DLK1 and RTL1 as well as maternal allele-specific MEG3, RTL1AS and MEG8, using Affymetrix bovine expression arrays. A total of 375 transcripts were differentially expressed in callipyge muscle and 25 transcripts were subsequently validated by quantitative PCR. The muscle-specific expression patterns of most genes were similar to DLK1 and included genes that are transcriptional repressors or affect feedback mechanisms in β-adrenergic and growth factor signaling pathways. One gene, phosphodiesterase 7A had an expression pattern similar to RTL1 expression indicating a biological activity for RTL1 in muscle. Only transcripts that localize to the DLK1-DIO3 domain were affected by inheritance of a maternal callipyge allele. Callipyge sheep are a unique model to study over expression of both paternal allele-specific genes and maternal allele-specific non-coding RNA with an accessible and nonlethal phenotype. This study has identified a number of genes that are regulated by DLK1 and RTL1 expression and exert control on postnatal skeletal muscle growth. The genes identified in this model are primary candidates for naturally regulating postnatal muscle growth in all meat animal species, and may serve as targets to ameliorate muscle atrophy conditions including myopathic diseases and age-related sarcopenia.
机译:由于绵羊染色体18上印有DLK1-DIO3结构域的单核苷酸多态性(SNP),Callipyge绵羊在腰部和后肢表现出极端的产后肌肉肥大。当以顺式遗传时,Callipyge SNP会上调周围转录本的表达。而不改变其等位基因特有的印迹状态。由于只有父亲杂合子动物具有肌肉肥大,所以该Callipyge表型表现出极高的遗传性。使用Affymetrix牛表达阵列,对羔羊肌肉中的基因表达进行了两项研究,以确定父亲等位基因特异性DLK1和RTL1以及母体等位基因特异性MEG3,RTL1AS和MEG8的过表达的下游效应。总共375个转录本在愈伤组织肌肉中差异表达,随后通过定量PCR验证了25个转录本。大多数基因的肌肉特异性表达模式与DLK1相似,并且包括转录抑制因子或影响β-肾上腺素能和生长因子信号通路中反馈机制的基因。一个基因,磷酸二酯酶7A具有类似于RTL1表达的表达模式,表明肌肉中RTL1具有生物学活性。只有定位于DLK1-DIO3域的转录本才受母本Callipyge等位基因的遗传影响。 Callipyge绵羊是研究具有可访问且非致命表型的父本等位基因特异性基因和母本等位基因特异性非编码RNA表达的独特模型。这项研究已经确定了许多受DLK1和RTL1表达调节的基因,并控制着产后骨骼肌的生长。该模型中鉴定的基因是自然调节所有肉类动物产后肌肉生长的主要候选基因,并可作为改善肌肉萎缩状况(包括肌病和与年龄相关的肌肉减少症)的靶标。

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