首页> 外文期刊>The Journal of Reproduction and Development >Synergistic role of Igf2 and Dlk1 in fetal liver development and hematopoiesis in bi-maternal mice.
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Synergistic role of Igf2 and Dlk1 in fetal liver development and hematopoiesis in bi-maternal mice.

机译:Igf2和Dlk1在双胎小鼠的胎儿肝脏发育和造血中的协同作用。

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Mouse bi-maternal embryos (BMEs) that contain two haploid sets of genomes from non-growing (ng) and fully-grown (fg) oocytes develop to embryonic day (E) 13.5. However, the ng/fg BMEs never develop beyond E13.5 because of repression of the paternally expressed imprinted genes, Igf2 and Dlk1. The present study was conducted to address the issue of whether fetal haematopoietic disorder is involved in the restricted development of BMEs. FACS analysis revealed that the livers of ngwt/fg BMEs contained increased numbers of immature c-kit+/ter119- haematopoietic cells, were while the numbers of mature c-kit-/ter119+ haematopoietic cells were decreased. This finding was supported by histological observations. Quantitative gene expression analysis revealed that Igf2 and Dlk1 expression was repressed in the liver. To understand the role of paternally-methylated imprinted genes on chromosomes 7 and 12, particularly Igf2 and Dlk1, in fetal liver haematopoiesis, we constructed ng?ch7/fg, ng?ch12/fg and ng?Double/fg BMEs using ng oocytes harbouring deletion of differentially methylated regions at distal chromosomes 7 and/or 12. The ng?ch7/fg, ng?ch12/fg and ng?Double/fg BMEs, respectively, express Igf2, Dlk1 and both, and these embryos developed to term with specific phenotypes; the ng?ch7/fg and ng?ch12/fg BMEs develop to term with severe growth retardation, and the ng?Double/fg BMEs can survive to become normal female adults. By inducing Igf2 and Dlk1 expression, the proportions of mature and immature haematopoietic cells in the livers of the ng?ch7/fg, ng?ch12/fg and ng?Double/fg BMEs were considerably restored, and particularly in the ng?Double/fg BMEs, haematopoiesis occurred normally with appropriate expressions of the related genes. These data suggest that inappropriate expression of Igf2 and Dlk1 is involved in impaired fetal haematopoiesis.
机译:包含两个单倍体基因组的小鼠双胎胚胎(BME),从非生长(ng)和完全生长(fg)卵母细胞发育到胚胎形成(E)13.5。但是,由于抑制了父本表达的印迹基因Igf2和Dlk1,因此ng / fg BME从未发展到超过E13.5。进行本研究是为了解决胎儿造血障碍是否与BMEs发育受限有关的问题。 FACS分析显示,ngwt / fg BME的肝脏中未成熟的c-kit + / ter119-造血细胞数量增加,而成熟的c-kit- / ter119 +造血细胞数量减少。这一发现得到了组织学观察的支持。定量基因表达分析表明,肝脏中Igf2和Dlk1表达受到抑制。为了了解染色体7和12上父本甲基化的印迹基因在胎儿肝造血中的作用,特别是Igf2和Dlk1,我们利用ng卵母细胞构建了ng?ch7 / fg,ng?ch12 / fg和ng?Double / fg BME。缺失远端染色体7和/或12甲基化区域的差异。ng?ch7 / fg,ng?ch12 / fg和ng?Double / fg BME分别表达Igf2,Dlk1和二者,并且这些胚胎发育至具体表型; ng?ch7 / fg和ng?ch12 / fg BME发育至具有严重的生长迟缓期,并且ng?Double / fg BME可以存活成为正常的成年女性。通过诱导Igf2和Dlk1表达,大大恢复了ng?ch7 / fg,ng?ch12 / fg和ng?Double / fg BME肝脏中成熟和未成熟造血细胞的比例,尤其是在ng?Double /对于BME,正常情况下会发生造血作用,并具有相关基因的适当表达。这些数据表明,Igf2和Dlk1的不适当表达与胎儿造血功能受损有关。

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