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首页> 外文期刊>Human Molecular Genetics >Folic acid prevents exencephaly in Cited2 deficient mice.
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Folic acid prevents exencephaly in Cited2 deficient mice.

机译:叶酸可预防Cited2缺乏症小鼠的脑啡ex。

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Cited2 (also Mrg1/p35srj) is a member of a new conserved gene family that is expressed during mouse development and in adult tissues. In order to investigate the function of Cited2 during mouse embryogenesis, we introduced a null mutation into the Cited2 locus. Cited2(-/-) mutants died at late gestation and exhibited heart defects and exencephaly, arising from defective closure of the midbrain (MB) and hindbrain. Initiation of neural tube closure at the forebrain-midbrain (FB-MB) boundary, an essential step for closure of the cranial neural tube, was impaired in the Cited2(-/-) mutants. Gene marker analysis using in situ hybridization revealed that the patterning of the anterior neural plate and head mesenchyme was little affected or normal in the Cited2(-/-) embryos. However, Cited2 was required for the survival of neuroepithelial cells and its absence led to massive apoptosis in dorsal neuroectoderm around the FB-MB boundary and in a restricted transverse domain in the hindbrain. Treatment with folic acid significantly reduced the exencephalic phenotype in the Cited2(-/-) embryos both in vivo and in vitro. However, assessment of folate metabolism revealed no defect in the Cited2(-/-) mutants, and the elevated apoptosis observed in the neuroepithelium of the Cited2(-/-) mutants was apparently not decreased by folic acid supplementation. To our knowledge, the Cited2 mouse represents the first genetic model in which folic acid can prevent a defect in neural tube closure by a mechanism other than the neutralization of a defect in folate homeostasis.
机译:Cited2(也是Mrg1 / p35srj)是新的保守基因家族的成员,该家族在小鼠发育期间和成年组织中表达。为了研究Cited2在小鼠胚胎发生过程中的功能,我们将一个空突变引入了Cited2基因座。 Cited2(-/-)突变体在妊娠后期死亡,并因中脑(MB)和后脑的闭合性关闭而表现出心脏缺陷和脑电图异常。在Cited2(-/-)突变体中,前脑-中脑(FB-MB)边界处神经管闭合的启动是颅神经管闭合的重要步骤,因此受损。使用原位杂交的基因标记分析表明,在Cited2(-/-)胚胎中,前神经板和头部间质的模式几乎没有受到影响或正常。但是,Cited2是神经上皮细胞生存所必需的,并且它的缺失会导致FB-MB边界周围和后脑受限的横向区域的背神经外胚层大量凋亡。叶酸治疗在体内和体外均显着降低了Cited2(-/-)胚胎的脑外表型。但是,叶酸代谢的评估显示,在Cited2(-/-)突变体中没有缺陷,并且补充叶酸显然不会减少Cited2(-/-)突变体在神经上皮中的凋亡。据我们所知,Cited2小鼠代表了第一个遗传模型,其中叶酸可以通过中和叶酸体内稳态缺陷以外的机制防止神经管闭合缺陷。

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