首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Barx2 a new homeobox gene of the Bar class is expressed in neural and craniofacial structures during development
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Barx2 a new homeobox gene of the Bar class is expressed in neural and craniofacial structures during development

机译:Barx2的新同源异型盒基因Barx2在发育过程中在神经和颅面结构中表达

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摘要

Homeobox genes are regulators of place-dependent morphogenesis and play important roles in controlling the expression patterns of cell adhesion molecules (CAMs). To identify proteins that bind to a regulatory element common to the genes for two neural CAMs, Ng–CAM and L1, we screened a mouse cDNA expression library with a concatamer of the sequence CCATTAGPyGA and found a new homeobox gene, which we have called Barx2. The homeodomain encoded by Barx2 is 87% identical to that of Barx1, and both genes are related to genes at the Bar locus of Drosophila melanogaster. Barx1 and Barx2 also encode an identical stretch of 17 residues downstream of the homeobox; otherwise, they share no appreciable homology. In vitro, Barx2 stimulated activity of an L1 promoter construct containing the CCATTAGPyGA motif but repressed activity when this sequence was deleted. Localization studies showed that expression of Barx1 and Barx2 overlap in the nervous system, particularly in the telencephalon, spinal cord, and dorsal root ganglia. Barx2 was also prominently expressed in the floor plate and in Rathke’s pouch. During craniofacial development, Barx1 and Barx2 showed complementary patterns of expression: whereas Barx1 appeared in the mesenchyme of the mandibular and maxillary processes, Barx2 was observed in the ectodermal lining of these tissues. Intense expression of Barx2 was observed in small groups of cells undergoing tissue remodeling, such as ectodermal cells within indentations surrounding the eye and maxillo-nasal groove and in the first branchial pouch, lung buds, precartilagenous condensations, and mesenchyme of the limb. The localization data, combined with Barx2’s dual function as activator and repressor, suggest that Barx2 may differentially control the expression of L1 and other target genes during embryonic development.
机译:同源盒基因是位置依赖性形态发生的调节子,在控制细胞粘附分子(CAMs)的表达模式中起重要作用。为了鉴定与两个神经CAMs Ng-CAM和L1基因共有的调控元件结合的蛋白质,我们用CCATTAGPyGA序列的辅酶筛选了小鼠cDNA表达文库,发现了一个新的同源盒基因,我们称之为Barx2。 。 Barx2编码的同源域与Barx1的同源域87%相同,并且这两个基因都与果蝇果蝇Bar位点的基因有关。 Barx1和Barx2还编码同源框下游17个残基的相同片段;否则,它们没有明显的同源性。在体外,Barx2刺激了含有CCATTAGPyGA基序的L1启动子构建体的活性,但是当删除该序列时抑制了其活性。本地化研究表明,Barx1和Barx2的表达在神经系统中重叠,特别是在远脑,脊髓和背根神经节中。 Barx2在地板和Rathke的小袋中也很突出。在颅面发育过程中,Barx1和Barx2表现出互补的表达模式:而Barx1出现在下颌和上颌突的间充质中,而Barx2出现在这些组织的外胚层衬里中。在经历组织重塑的一小组细胞中观察到了 Barx2 的强表达,例如眼和上颌鼻沟周围的凹痕内的外胚层细胞,第一个小袋,肺芽,软骨前凝结和肢体间质。定位数据结合 Barx2 的激活和阻遏双重功能,表明 Barx2 可能在胚胎发育过程中差异地控制L1和其他靶基因的表达。

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