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Goblet-cell-specific transcription of mouse intestinal trefoil factor gene results from collaboration of complex series of positive and negative regulatory elements.

机译:小鼠肠道三叶因子基因的杯状细胞特异性转录是由一系列复杂的正负调控元素共同作用产生的。

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摘要

Intestinal trefoil factor (ITF) is expressed selectively in intestinal goblet cells. Previous studies of the rat ITF gene identified one cis-regulatory element, designated the goblet-cell-response element (GCRE), present in the proximal region of the promoter. To identify additional cis-regulatory elements responsible for goblet-cell-specific expression, a DNA fragment containing 6353 bp of the 5'-flanking region of the mouse ITF gene was cloned and its promoter activity was examined extensively. In human and murine intestinal-derived cell lines (LS174T and CMT-93), the luciferase activities of a 6.3-kb construct were 5- and 2-fold greater than the smaller 1.8-kb construct, respectively. In contrast, the activity in non-intestinal cell lines (HepG2 and HeLa) was 2-4-fold lower than the smaller construct. In the region downstream from the 1.8-kb position, strong luciferase activities in LS174T and HepG2 cells were observed using a 201-bp construct. Interestingly, increased activity was almost completely suppressed in cells transfected with a 391-bp construct. Detailed analyses of this region revealed the existence of a 11-bp positive regulatory element (-181 to -170; ACCTCTTCCTG) and a 9-bp negative regulatory element (-208 to -200; ATTGACAGA) in addition to the GCRE. All three elements were well conserved among human, rat and mouse ITF gene promoters. In addition, a mutant 1.8-kb construct in which the negative regulatory region was deleted yielded the same approximate luciferase activity as a 6.3-kb construct, suggesting binding of a goblet-cell-specific silencer inhibitor (SI) between -6.3 and -1.8 kb. The SI present in goblet cells may block the silencers' binding to the pre-initiation complex and allow increased transcriptional activity driven by specific and non-specific enhancers. High-level expression of the mouse ITF gene specifically in intestinal goblet cells may be achieved through the combined effects of these regulatory elements.
机译:肠三叶因子(ITF)在肠杯状细胞中选择性表达。先前对大鼠ITF基因的研究确定了一种顺式调控元件,称为杯状细胞反应元件(GCRE),存在于启动子的近端区域。为了鉴定负责杯状细胞特异性表达的其他顺式调控元件,克隆了包含6353 bp的小鼠ITF基因5'侧翼区域的DNA片段,并对其启动子活性进行了广泛研究。在人和鼠源于肠道的细胞系(LS174T和CMT-93)中,一个6.3kb的构建体的萤光素酶活性分别比较小的1.8kb的构成高5倍和2倍。相反,非肠道细胞系(HepG2和HeLa)中的活性比较小的构建体低2-4倍。在1.8kb位置下游的区域中,使用201bp的构建体观察到了LS174T和HepG2细胞中强大的荧光素酶活性。有趣的是,在用391bp的构建体转染的细胞中,活性几乎被完全抑制。对这一区域的详细分析显示,除了GCRE之外,还存在11 bp的正调控元件(-181至-170; ACCTCTTCCTG)和9 bp的负调控元件(-208至-200; ATTGACAGA)。在人,大鼠和小鼠ITF基因启动子中,所有这三个元件都非常保守。此外,缺失了负调控区的突变的1.8-kb构建体产生了与6.3-kb构建体大致相同的萤光素酶活性,这表明杯状细胞特异性沉默抑制剂(SI)的结合在-6.3和-1.8之间。 kb。杯状细胞中存在的SI可能会阻止沉默子与起始前复合物的结合,并允许由特异性和非特异性增强子驱动的转录活性增加。可以通过这些调节元件的组合作用来实现小鼠ITF基因在肠道杯状细胞中的高水平表达。

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