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Regulatory modules function in a non-autonomous manner to control transcription of the mbp gene

机译:调节模块以非自主方式起作用以控制mbp基因的转录

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摘要

Multiple regulatory modules contribute to the complex expression programs realized by many loci. Although long thought of as isolated components, recent studies demonstrate that such regulatory sequences can physically associate with promoters and with each other and may localize to specific sub-nuclear transcription factories. These associations provide a substrate for putative interactions and have led to the suggested existence of a transcriptional interactome. Here, using a controlled strategy of transgenesis, we analyzed the functional consequences of regulatory sequence interaction within the myelin basic protein (mbp) locus. Interactions were revealed through comparisons of the qualitative and quantitative expression programs conferred by an allelic series of 11 different enhancer/inter-enhancer combinations ligated to a common promoter/reporter gene. In a developmentally contextual manner, the regulatory output of all modules changed markedly in the presence of other sequences. Predicted by transgene expression programs, deletion of one such module from the endogenous locus reduced oligodendrocyte expression levels but unexpectedly, also attenuated expression of the overlapping golli transcriptional unit. These observations support a regulatory architecture that extends beyond a combinatorial model to include frequent interactions capable of significantly modulating the functions conferred through regulatory modules in isolation.
机译:多个调控模块有助于许多基因座实现的复杂表达程序。尽管长期以来被认为是分离的成分,但最近的研究表明,这种调控序列可以与启动子彼此物理结合,并且可以定位于特定的亚核转录工厂。这些关联为推定的相互作用提供了基础,并导致了转录相互作用基因组的存在。在这里,我们使用转基因的受控策略,分析了髓鞘碱性蛋白(mbp)基因座内调控序列相互作用的功能后果。通过比较由同一个启动子/报告基因连接的11种不同增强子/增强子间组合的等位基因序列所赋予的定性和定量表达程序,揭示了相互作用。以发展的上下文方式,在存在其他序列的情况下,所有模块的调节输出均发生了显着变化。由转基因表达程序预测,从内源性基因座中缺失一个这样的模块降低了少突胶质细胞的表达水平,但出乎意料的是,也减弱了重叠的golli转录单位的表达。这些观察结果支持了一种监管体系结构,该体系结构超出了组合模型的范围,包括频繁的交互作用,这些交互作用能够显着地独立调节通过监管模块提供的功能。

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