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首页> 外文期刊>Nucleic Acids Research >Binding of serum response factor to cystic fibrosis transmembrane conductance regulator CArG-like elements, as a new potential CFTR transcriptional regulation pathway
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Binding of serum response factor to cystic fibrosis transmembrane conductance regulator CArG-like elements, as a new potential CFTR transcriptional regulation pathway

机译:血清反应因子与囊性纤维化跨膜电导调节剂CArG样元件的结合,作为一种新的潜在CFTR转录调控途径

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摘要

CFTR expression is tightly controlled by a complex network of ubiquitous and tissue-specific cis-elements and trans-factors. To better understand mechanisms that regulate transcription of CFTR, we examined transcription factors that specifically bind a CFTR CArG-like motif we have previously shown to modulate CFTR expression. Gel mobility shift assays and chromatin immunoprecipitation analyses demonstrated the CFTR CArG-like motif binds serum response factor both in vitro and in vivo. Transient co-transfections with various SRF expression vector, including dominant-negative forms and small interfering RNA, demonstrated that SRF significantly increases CFTR transcriptional activity in bronchial epithelial cells. Mutagenesis studies suggested that in addition to SRF other cofactors, such as Yin Yang 1 (YY1) previously shown to bind the CFTR promoter, are potentially involved in the CFTR regulation. Here, we show that functional interplay between SRF and YY1 might provide interesting perspectives to further characterize the underlying molecular mechanism of the basal CFTR transcriptional activity. Furthermore, the identification of multiple CArG binding sites in highly conserved CFTR untranslated regions, which form specific SRF complexes, provides direct evidence for a considerable role of SRF in the CFTR transcriptional regulation into specialized epithelial lung cells.
机译:CFTR表达受到普遍存在的组织特异性顺式元素和反式因子的复杂网络的严格控制。为了更好地理解调节CFTR转录的机制,我们检查了与CFTR CArG样基序特异性结合的转录因子,我们先前已经证明了它们可调节CFTR的表达。凝胶迁移率变动分析和染色质免疫沉淀分析表明,CFTR CArG样基序在体内和体外均与血清反应因子结合。与各种SRF表达载体的瞬时共转染,包括显性阴性形式和小的干扰RNA,证明SRF显着提高了支气管上皮细胞的CFTR转录活性。诱变研究表明,除SRF外,其他辅助因子(如先前显示与CFTR启动子结合的阴阳1(YY1))也可能参与CFTR调控。在这里,我们表明SRF和YY1之间的功能相互作用可能会提供有趣的观点,以进一步表征基础CFTR转录活性的潜在分子机制。此外,在高度保守的CFTR非翻译区中形成特定SRF复合物的多个CArG结合位点的鉴定,提供了SRF在CFTR转录调节进入特定上皮肺细胞中的重要作用的直接证据。

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