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母体骨形态发生蛋白2表达降低对小鼠胚胎发育的影响。

Influences of reduced expression of maternal bone morphogenetic protein 2 on mouse embryonic development.

作者信息

Singh A P, Castranio T, Scott G, Guo D, Harris M A, Ray M, Harris S E, Mishina Y

机构信息

Molecular Developmental Biology Group, Laboratory of Reproductive and Developmental Toxicology, National Institutes of Health, Research Triangle Park, NC 27709, USA.

出版信息

Sex Dev. 2008;2(3):134-41. doi: 10.1159/000143431. Epub 2008 Sep 3.

Abstract

Bone morphogenetic protein 2 (BMP2) was originally found by its osteoinductive ability, and recent genetic analyses have revealed that it plays critical roles during early embryogenesis, cardiogenesis, decidualization as well as skeletogenesis. In the course of evaluation of the conditional allele for Bmp2, we found that the presence of a neo cassette, a selection marker needed for gene targeting events in embryonic stem cells, in the 3' untranslated region of exon 3 of Bmp2, reduced the expression levels of Bmp2 both in embryonic and maternal mouse tissues. Some of the embryos that were genotyped as transheterozygous for the floxed allele with the neo cassette over the conventional null allele (fn/-) showed a lethal phenotype including defects in cephalic neural tube closure and ventral abdominal wall closure. The number of embryos exhibiting these abnormalities was increased when, due to different genotypes, expression levels of Bmp2 in maternal tissues were lower. These results suggest that the expression levels of Bmp2 in both embryonic and maternal tissues influence the normal neural tube closure and body wall closure with different thresholds.

摘要

骨形态发生蛋白2(BMP2)最初因其骨诱导能力而被发现,最近的基因分析表明,它在早期胚胎发育、心脏发生、蜕膜化以及骨骼发生过程中发挥着关键作用。在评估Bmp2的条件性等位基因过程中,我们发现,在Bmp2外显子3的3'非翻译区存在一个新霉素盒(胚胎干细胞基因靶向事件所需的选择标记),会降低Bmp2在胚胎和母体小鼠组织中的表达水平。一些被基因分型为携带新霉素盒的floxed等位基因与传统无效等位基因(fn/-)的反式杂合子的胚胎表现出致死表型,包括头部神经管闭合和腹侧腹壁闭合缺陷。当由于不同基因型导致母体组织中Bmp2的表达水平较低时,表现出这些异常的胚胎数量会增加。这些结果表明,Bmp2在胚胎和母体组织中的表达水平以不同阈值影响正常的神经管闭合和体壁闭合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/789f/2632600/b04938b0a258/nihms87606f1.jpg

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