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辅助生殖技术生产的牛犊中印迹控制区 KvDMR1 的异常 CpG 甲基化与大胎仔综合征的发病机制。

Aberrant CpG methylation of the imprinting control region KvDMR1 detected in assisted reproductive technology-produced calves and pathogenesis of large offspring syndrome.

机构信息

Ishikawa Prefectural Livestock Research Center, Hodatsushimizu, Ishikawa 929-1325, Japan.

出版信息

Anim Reprod Sci. 2010 Dec;122(3-4):303-12. doi: 10.1016/j.anireprosci.2010.09.008. Epub 2010 Oct 7.

Abstract

Although somatic cell nuclear transfer (NT) and in vitro fertilization (IVF) have the potential to produce genetically superior livestock, considerable numbers of abnormally large animals, including sheep and cattle affected by "large offspring syndrome" (LOS), have been produced by these assisted reproductive technologies (ART). Interestingly, these phenotypes are reminiscent of Beckwith-Wiedemann syndrome (BWS) in humans, which is an imprinting disorder characterized by pre- and/or postnatal overgrowth. The imprinting control region KvDMR1, which regulates the coordinated expression of growth control genes such as Cdkn1c, is known to be aberrantly hypomethylated in BWS. Therefore, we hypothesized that aberrant imprinting in this region could contribute to LOS. In this study, we analyzed the DNA methylation status of the Kcnq1ot1/Cdkn1c and Igf2/H19 domains on bovine chromosome 29 and examined the coordinated expression of imprinted genes surrounding them in seven calves derived by NT (which showed signs of developmental abnormality), two calves conceived by IVF (both developmentally abnormal), and three conventional calves that died of unrelated causes. Abnormal hypomethylation status at an imprinting control region of Kcnq1ot1/Cdkn1c domain was observed in two of seven NT-derived calves and one of two IVF-derived calves in almost all organs. Moreover, increased expression of Kcnq1ot1 and diminished expression of Cdkn1c were observed by RT-PCR analysis. This study is the first to describe the abnormal hypomethylation of the KvDMR1 domain and subsequent changes in the gene expression of Kcnq1ot1 and Cdkn1c in a subset of calves produced by ART. Our findings provide strong evidence for a role of altered imprinting control in the development of LOS in bovines.

摘要

尽管体细胞核移植 (NT) 和体外受精 (IVF) 有潜力产生具有遗传优势的家畜,但通过这些辅助生殖技术 (ART) 已经产生了相当数量的异常大型动物,包括受“大胎仔综合征” (LOS) 影响的绵羊和牛。有趣的是,这些表型让人想起人类的 Beckwith-Wiedemann 综合征 (BWS),这是一种印记障碍,其特征是产前和/或产后过度生长。已知调节生长控制基因如 Cdkn1c 协调表达的印记控制区 KvDMR1 在 BWS 中异常低甲基化。因此,我们假设该区域的异常印记可能导致 LOS。在这项研究中,我们分析了牛 29 号染色体上 Kcnq1ot1/Cdkn1c 和 Igf2/H19 区域的 DNA 甲基化状态,并检查了围绕它们的印迹基因的协调表达在 7 头通过 NT (表现出发育异常迹象)、2 头通过 IVF (均发育异常)和 3 头因无关原因死亡的小牛中。在几乎所有器官中,7 头 NT 衍生小牛中的 2 头和 2 头 IVF 衍生小牛中的 1 头的 Kcnq1ot1/Cdkn1c 域的印迹控制区观察到异常低甲基化状态。此外,通过 RT-PCR 分析观察到 Kcnq1ot1 的表达增加和 Cdkn1c 的表达减少。这项研究首次描述了 ART 产生的一组小牛中 KvDMR1 域的异常低甲基化以及随后 Kcnq1ot1 和 Cdkn1c 基因表达的变化。我们的研究结果为印记控制改变在牛 LOS 发育中的作用提供了强有力的证据。

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