首页> 美国卫生研究院文献>Nucleic Acids Research >Somatotroph- and lactotroph-specific interactions with the homeobox protein binding sites in the rat growth hormone gene promoter.
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Somatotroph- and lactotroph-specific interactions with the homeobox protein binding sites in the rat growth hormone gene promoter.

机译:与大鼠生长激素基因启动子中的同源异型框蛋白结合位点的营养营养素和营养营养素特异性相互作用。

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摘要

Nuclear extracts prepared from growth hormone-secreting (GC) and prolactin-secreting (235-1) rat anterior pituitary cell lines were compared for their ability to bind to the DNA sequences conferring tissue-specificity to the expression of the rat growth hormone (rGH) gene promoter. Cell-specific differences in the interaction of Pit-1, a tissue-specific member of the POU-domain transcription factor family, with the pGHF1 binding site were detected by methylation interference experiments; otherwise the Pit-1 proteins present in GC cell and 235-1 cell extracts were similar. Two other protein/DNA complexes, GHF5 and GHF7, were detected by gel mobility shift assays and the binding of both complexes to the rGH promoter depended upon DNA sequences contained within the two binding sites for Pit-1. In contrast to Pit-1 which can bind to either of the two sites independently, a single Pit-1 binding site was insufficient for GHF5 and GHF7 binding; i.e. both Pit-1 binding sites within the rGH promoter were required. Whereas GHF5 was present in nuclear extracts of GC cells and a variety of cells not producing growth hormone, GHF7 binding activity was detected only in the GC cell line (and not in the 235-1 cell line). GHF7 binding activity was therefore more closely correlated with growth hormone gene transcription than was Pit-1. rGH promoters containing mutations which inhibited GHF5, GHF7 and Pit-1 binding were expressed less efficiently than the wild type promoter after transfection into GC cells. One promoter mutation to which the GHF7 complex but not the Pit-1 factor can bind was also transcription deficient demonstrating that Pit-1 binding, independent of GHF7 binding, was nevertheless important to the expression of the rat growth hormone promoter.
机译:比较了从分泌生长激素(GC)和分泌催乳激素(235-1)大鼠垂体前叶细胞系制备的核提取物与能赋予组织特异性以表达大鼠生长激素(rGH)的DNA序列结合的能力。 )基因启动子。通过甲基化干扰实验检测到Pit-1(POU域转录因子家族的组织特异性成员)与pGHF1结合位点相互作用的细胞特异性差异。否则,GC细胞和235-1细胞提取物中存在的Pit-1蛋白是相似的。通过凝胶迁移率转移测定法检测了另外两种蛋白质/ DNA复合物GHF5和GHF7,两种复合物与rGH启动子的结合取决于Pit-1两个结合位点中包含的DNA序列。与Pit-1可以独立结合到两个位点的任何一个相比,单个Pit-1结合位点不足以结合GHF5和GHF7。即,rGH启动子内的两个Pit-1结合位点都是必需的。尽管GHF5存在于GC细胞的核提取物中以及许多不产生生长激素的细胞中,但仅在GC细胞系中检测到了GHF7结合活性(在235-1细胞系中未检测到)。因此,与Pit-1相比,GHF7的结合活性与生长激素基因转录更紧密相关。转入GC细胞后,含有抑制GHF5,GHF7和Pit-1结合的突变的rGH启动子的表达效率低于野生型启动子。 GHF7复合物而不是Pit-1因子可以结合的一种启动子突变也是转录缺陷的,这表明独立于GHF7结合的Pit-1结合对大鼠生长激素启动子的表达仍然很重要。

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