Bennett G D, An J, Craig J C, Gefrides L A, Calvin J A, Finnell R H
Department of Veterinary Anatomy and Public Health, Texas A&M University, College Station 77843, USA.
Teratology. 1998 Jan;57(1):17-29. doi: 10.1002/(SICI)1096-9926(199801)57:1<17::AID-TERA4>3.0.CO;2-4.
The murine mutant Splotch (Sp) is a well-established model for studying neural tube closure defects. In the current investigation, the progression through neural tube closure (NTC) as well as the expression patterns of 12 developmentally regulated genes were examined in the neural tissue of wildtype (+/+), Splotch heterozygous (Sp/+), and Splotch homozygous (Sp/Sp) embryos during neurulation. The overall growth of the embryos, as measured by the number of somite pairs, did not differ significantly between the three genotypes at any of the collection time-points. There was, however, a significant delay in the progression through NTC for both the Sp/+ and Sp/Sp embryos. A univariate analysis on the expression of the 12 candidate genes (bcl-2, FBP-2, Hmx-2, Msx-3, N-cam, N-cad, noggin, p53, Pax-3, Shh, Wee-1, wnt-1) revealed that although 11 were statistically altered, across time or by genotype, there were no significant interactions between gestation age and genotype for any of these genes during NTC. However, a multivariate statistical analysis on the simultaneous expression of these genes revealed interactions at both gestation day (GD) 8:12 (day:hour) and 9:00 among Pax-3, N-cam, N-cad, bcl-2, p53, and Wee-1 that could potentially explain the aberrant NTC. The data from these studies suggest that a disruption in the genes that govern the cell cycle or extracellular matrices of the developing neural tube might play a critical role in the occurrence of the NTDs observed in Splotch embryos.
小鼠突变体斑点(Sp)是研究神经管闭合缺陷的一个成熟模型。在当前研究中,检测了野生型(+/+)、斑点杂合子(Sp/+)和斑点纯合子(Sp/Sp)胚胎在神经胚形成期间神经管闭合(NTC)的进程以及12个发育调控基因的表达模式。通过体节对数衡量的胚胎总体生长在任何采集时间点的三种基因型之间均无显著差异。然而,Sp/+和Sp/Sp胚胎在NTC进程中存在显著延迟。对12个候选基因(bcl-2、FBP-2、Hmx-2、Msx-3、N-cam、N-cad、noggin、p53、Pax-3、Shh、Wee-1、wnt-1)表达的单变量分析显示,尽管其中11个在时间或基因型上有统计学改变,但在NTC期间这些基因中任何一个的胎龄与基因型之间均无显著相互作用。然而,对这些基因同时表达的多变量统计分析显示,在妊娠第8天12时(天:小时)和第9天0时,Pax-3、N-cam、N-cad、bcl-2、p53和Wee-1之间存在相互作用,这可能潜在地解释异常的NTC。这些研究的数据表明,调控发育中神经管细胞周期或细胞外基质的基因破坏可能在斑点胚胎中观察到的神经管缺陷的发生中起关键作用。