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首页> 外文期刊>Developmental biology >Analysis of mouse Cdh6 gene regulation by transgenesis of modified bacterial artificial chromosomes.
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Analysis of mouse Cdh6 gene regulation by transgenesis of modified bacterial artificial chromosomes.

机译:通过修饰细菌人工染色体的转基因分析小鼠Cdh6基因的调控。

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Classic cadherins are cell adhesion molecules whose expression patterns are dynamically modulated in association with their diverse functions during morphogenesis. The large size and complexity of cadherin loci have made it a challenge to investigate the organization of cis-regulatory modules that control their spatiotemporal patterns of expression. Towards this end, we utilized bacterial artificial chromosomes (BACs) containing the Cdh6 gene, a mouse type II classic cadherin, to systematically identify cis-regulatory modules that govern its expression. By inserting a lacZ reporter gene into the Cdh6 BAC and generating a series of modified variants via homologous recombination or transposon insertions that have been examined in transgenic mice, we identified an array of genomic regions that contribute to specific regulation of the gene. These regions span approximately 350 kb of the locus between 161-kb upstream and 186-kb downstream of the Cdh6 transcription start site. Distinct modules independently regulate compartmental expression (i.e. forebrain, hindbrain rhombomeres, and spinal cord) and/or cell lineage-specific expression patterns (i.e. neural crest subpopulations such as Schwann cells) of Cdh6 at the early developmental stages. With respect to regulation of expression in neural crest cells, we have found that distinct regions contribute to different aspects of expression and have identified a short 79-bp region that is implicated in regulating expression in cells once they have emigrated from the neural tube. These results build a picture of the complex organization of Cdh6 cis-regulatory modules and highlight the diverse inputs that contribute to its dynamic expression during early mouse embryonic development.
机译:经典的钙粘蛋白是细胞粘附分子,其表达模式与其在形态发生过程中的多种功能相关联地被动态调节。钙粘蛋白基因座的大小和复杂性使得研究控制其时空表达模式的顺式调控模块的组织成为一项挑战。为此,我们利用了包含Cdh6基因(一种小鼠​​II型经典钙黏着蛋白)的细菌人工染色体(BAC),系统地鉴定了控制其表达的顺式调控模块。通过将lacZ报告基因插入Cdh6 BAC中,并通过已在转基因小鼠中进行检查的同源重组或转座子插入产生一系列修饰的变体,我们鉴定了有助于基因特异性调控的一系列基因组区域。这些区域在Cdh6转录起始位点的上游161-kb和下游186-kb之间跨越了大约350 kb的基因座。不同的模块在发育的早期阶段独立地调节Cdh6的区室表达(即前脑,后脑菱形和脊髓)和/或细胞谱系特异性表达模式(例如神经c亚群,如雪旺细胞)。关于神经c细胞中表达的调节,我们已经发现不同的区域有助于表达的不同方面,并且已经鉴定出短的79bp区域,一旦它们从神经管中移出,其参与调节细胞中的表达。这些结果构建了Cdh6顺式调节模块的复杂组织图,并突出了在早期小鼠胚胎发育过程中有助于其动态表达的各种输入。

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