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Localization of Distant Urogenital System- Central Nervous System- and Endocardium-Specific Transcriptional Regulatory Elements in the GATA-3 Locus

机译:GATA-3基因座中远端泌尿生殖系统中枢神经系统和心内膜特定转录调控元件的定位

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摘要

We found previously that neither a 6-kbp promoter fragment nor even a 120-kbp yeast artificial chromosome (YAC) containing the whole GATA-3 gene was sufficient to recapitulate its full transcription pattern during embryonic development in transgenic mice. In an attempt to further identify tissue-specific regulatory elements modulating the dynamic embryonic pattern of the GATA-3 gene, we have examined the expression of two much larger (540- and 625-kbp) GATA-3 YACs in transgenic animals. A lacZ reporter gene was first inserted into both large GATA-3 YACs. The transgenic YAC patterns were then compared to those of embryos bearing the identical lacZ insertion in the chromosomal GATA-3 locus (creating GATA-3/lacZ “knock-ins”). We found that most of the YAC expression sites and tissues are directly reflective of the endogenous pattern, and detailed examination of the integrated YAC transgenes allowed the general localization of a number of very distant transcriptional regulatory elements (putative central nervous system-, endocardium-, and urogenital system-specific enhancers). Remarkably, even the 625-kbp GATA-3 YAC, containing approximately 450 kbp and 150 kbp of 5′ and 3′ flanking sequences, respectively, does not contain the full transcriptional regulatory potential of the endogenous locus and is clearly missing regulatory elements that confer tissue-specific expression to GATA-3 in a subset of neural crest-derived cell lineages.
机译:我们以前发现,包含整个GATA-3基因的6 kbp启动子片段甚至120 kbp酵母人工染色体(YAC)都不足以概括其在转基因小鼠胚胎发育过程中的完整转录模式。为了进一步鉴定调节GATA-3基因动态胚胎模式的组织特异性调控元件,我们检查了转基因动物中两个更大的(540-和625-kbp)GATA-3 YAC的表达。首先将lacZ报告基因插入两个大型GATA-3 YAC中。然后将转基因YAC模式与在染色体GATA-3基因座中带有相同lacZ插入片段的胚胎(创建GATA-3 / lacZ“敲入”)进行比较。我们发现大多数YAC表达位点和组织都直接反映了内源性模式,对整合的YAC转基因的详细检查使许多非常遥远的转录调节元件(假定的中枢神经系统,心内膜,和特定于泌尿生殖系统的增强剂)。值得注意的是,即使分别包含大约450 kbp和150 kbp 5'和3'侧翼序列的625-kbp GATA-3 YAC也不包含内源基因座的全部转录调控潜能,并且显然缺少赋予神经c衍生的细胞谱系中GATA-3的组织特异性表达。

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