DNA Methylation of <i>Igf2r</i> Promoter CpG Island 2 Governs <i>Cis</i>-Acting Inheritance and Gene Dosage in Equine Hybrids

Genomic imprinting is critical for mammalian development, but its regulation varies across species. The insulin-like growth factor 2 receptor (IGF2R), which is a maternally expressed imprinted gene critical for cell proliferation and differentiation, as well as embryonic and placental development, i...

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Main Authors: Xisheng Wang, Yingchao Shen, Hong Ren, Minna Yi, Gerelchimeg Bou
Format: Article
Language:English
Published: MDPI AG 2025-06-01
Series:Biology
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Online Access:https://www.mdpi.com/2079-7737/14/6/678
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Summary:Genomic imprinting is critical for mammalian development, but its regulation varies across species. The insulin-like growth factor 2 receptor (IGF2R), which is a maternally expressed imprinted gene critical for cell proliferation and differentiation, as well as embryonic and placental development, is classically regulated by differentially methylated regions (DMRs) and lncRNA-<i>Airn</i> in mice. However, studies on this in equus are scarce, especially in terms of mechanistic studies. In the present study, heart, liver, spleen, lung, kidney, brain, and muscle samples were obtained from horses, donkeys, and hybrids, and gene expression and imprinting state were tested to investigate the imprinting regulation of <i>Igf2r</i> in these animals. Bisulfite sequencing combined with an allele-specific expression analysis revealed a tissue-specific loss of imprinting in the mule liver and hybrid brain tissues. Strikingly, we found that the maternal-specific expression of equine <i>Igf2r</i> did not rely on the canonical DMRs or lncRNA-<i>Airn</i>. Surprisingly, DNA methylation of a specific region called CpG island 2 (CpGI2) in the <i>Igf2r</i> promoter showed <i>cis</i>-acting inheritance, meaning that the DNA methylation patterns of the parental alleles are retained in hybrid tissues. Notably, the DNA methylation of CpGI2 correlated negatively with <i>Igf2r</i> expression in the spleen (R<sup>2</sup> = 0.8797, <i>p</i> = 6.46 × 10<sup>−6</sup>), lung (R<sup>2</sup> = 0.8569, <i>p</i> = 1.57 × 10<sup>−5</sup>), and kidney (R<sup>2</sup> = 0.8650, <i>p</i> = 3.85 × 10<sup>−6</sup>). Our findings suggest that imprinting may work differently in other species. This study provides a framework for understanding imprinting diversity in hybrids and shows that equine hybrids can be used to study how epigenetic inheritance works.
ISSN:2079-7737