脊柱裂或无脊柱裂小鼠胚胎神经发育过程中视黄酸受体-beta 和-gamma mRNA 同工酶表达的定量和定位。

Teratology Pub Date : 2002-12-01 DOI:10.1002/tera.10101
Gloria E Mao, Michael D Collins
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引用次数: 4

摘要

背景:以前的研究发现,视黄酸受体-γ(RAR-gamma)在开放的尾部神经上皮细胞中表达,但RARbeta在闭合的神经管中表达。此外,视黄酸(RA)可诱导 RARbeta 的表达,这是一个与神经管闭合相关的分子事件,但在适当的妊娠期使用 RA 会导致神经管闭合失败。由于 RARbeta 有四种同工酶,也许在神经管闭合过程中表达的同工酶和 RA 诱导的同工酶是不同的。为了研究从 RARgamma 到 RARbeta 的转换与神经管闭合有机理联系这一假设,本研究测定了 RA 诱导神经管缺陷的小鼠胚胎和脊柱裂斑点突变体(Sp)胚胎中 RARbeta 和 RARgamma 异构体的浓度和分布:方法:通过核糖核酸酶保护分析法测定经处理或未处理的 C57BL/6J 小鼠全胚胎在整个初级神经发育过程(孕 8.5-10.0 天)中 RARbeta 和 RARgamma 同工酶的绝对浓度。治疗包括在妊娠第 8.5 天口服 100 毫克/千克的全反式-RA。原位杂交法检测了RA处理过的胚胎和Sp突变体胚胎中RARbeta和RARgamma的空间分布:结果:RARbeta2、gamma1 和 gamma2 在未处理的胚胎中表达,在 RA 处理 4 小时后分别诱导表达 4.5 倍、1.6 倍和 4.0 倍。在 RA 诱导的脊柱裂胚胎中,RARbeta2 在闭合的神经管中表达,而 RARgamma1 和 RARgamma2 则在开放的尾神经上皮中表达。在患有脊柱裂的斑点小鼠中,RARbeta 和 RARgamma 的边界与神经管闭合的部位并不一致:结论:在经 RA 处理的胚胎中,闭合的尾神经上皮中 RARbeta 的表达与开放的尾神经上皮中 RARgamma 的表达之间的关系没有改变。然而,在患有脊柱裂的花斑胚胎中,无论神经管闭合状态如何,RARbeta 和 RARgamma 表达的交界处都保持在神经上皮的相同解剖位置,这表明在花斑突变体中,闭合的尾部神经上皮中 RARgamma 表达向 RARbeta 表达的转换可能与神经管闭合没有因果关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantification and localization of expression of the retinoic acid receptor-beta and -gamma mRNA isoforms during neurulation in mouse embryos with or without spina bifida.

Background: Previous studies observed that retinoic acid receptor-gamma (RARgamma) is expressed in the open caudal neuroepithelium but that RARbeta is expressed in the closed neural tube. Furthermore, retinoic acid (RA) induces RARbeta expression, a molecular event associated with neural tube closure, but treatment with RA at the appropriate gestation time causes failure of neural tube closure. Since there are four isoforms of RARbeta, perhaps the isoforms expressed in the closed neural tube and induced by RA are different. To investigate the hypothesis that the switch from RARgamma to RARbeta is mechanistically linked to neural tube closure, this study determined the concentrations and distributions of RARbeta and RARgamma isoforms in mouse embryos with RA-induced neural tube defects and in splotch (Sp) mutant embryos with spina bifida.

Methods: Absolute concentrations of RARbeta and RARgamma isoforms were determined throughout primary neurulation (gestational day 8.5-10.0) in treated or untreated C57BL/6J mouse whole embryos by ribonuclease protection analysis. Treatment consisted of an oral dose of 100 mg/kg of all-trans-RA on gestational day 8.5. Spatial distributions of RARbeta and RARgamma were examined in RA-treated and Sp mutant embryos by in situ hybridization.

Results: RARbeta2, gamma1, and gamma2 were expressed in untreated embryos and were induced 4.5-, 1.6-, and 4.0-fold, respectively, 4 hr after treatment with RA. In embryos with RA-induced spina bifida, RARbeta2 was expressed in the closed neural tube while RARgamma1 and RARgamma2 were expressed in the open caudal neuroepithelium. In splotch mice with spina bifida, the boundary between RARbeta and RARgamma did not correspond to the site of neural tube closure.

Conclusions: In RA-treated embryos, the relationship between RARbeta expression in the closed and RARgamma in the open caudal neuroepithelium was not altered. However, in splotch embryos with spina bifida, the juncture between RARbeta and RARgamma expression remained in the same anatomical position in the neuroepithelium irrespective of the neural tube closure status and suggests that the switch from RARgamma to RARbeta expression in the closing caudal neuroepithelium may not be causally linked to neural tube closure in the splotch mutant.

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