首页> 外文OA文献 >Upstream stimulatory factor (USF) and neurogenic differentiation/beta-cell E box transactivator 2 (NeuroD/BETA2) contribute to islet-specific glucose-6-phosphatase catalytic-subunit-related protein (IGRP) gene expression.
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Upstream stimulatory factor (USF) and neurogenic differentiation/beta-cell E box transactivator 2 (NeuroD/BETA2) contribute to islet-specific glucose-6-phosphatase catalytic-subunit-related protein (IGRP) gene expression.

机译:上游刺激因子(USF)和神经原性分化/β细胞E框反式激活因子2(NeuroD / BETA2)有助于胰岛特异性葡萄糖6磷酸酶催化亚基相关蛋白(IGRP)基因表达。

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摘要

Islet-specific glucose-6-phosphatase (G6Pase) catalytic-subunit-related protein (IGRP) is a homologue of the catalytic subunit of G6Pase, the enzyme that catalyses the final step of the gluconeogenic pathway. The analysis of IGRP-chloramphenicol acetyltransferase (CAT) fusion-gene expression through transient transfection of islet-derived beta TC-3 cells revealed that multiple promoter regions, located between -306 and -97, are required for maximal IGRP-CAT fusion-gene expression. These regions correlated with trans -acting factor-binding sites in the IGRP promoter that were identified in beta TC-3 cells in situ using the ligation-mediated PCR (LMPCR) footprinting technique. However, the LMPCR data also revealed additional trans -acting factor-binding sites located between -97 and +1 that overlap two E-box motifs, even though this region by itself conferred minimal fusion-gene expression. The data presented here show that these E-box motifs are important for IGRP promoter activity, but that their action is only manifest in the presence of distal promoter elements. Thus mutation of either E-box motif in the context of the -306 to +3 IGRP promoter region reduces fusion-gene expression. These two E-box motifs have distinct sequences and preferentially bind NeuroD/BETA2 (neurogenic differentiation/beta-cell E box transactivator 2) and upstream stimulatory factor (USF) in vitro, consistent with the binding of both factors to the IGRP promoter in situ, as determined using the chromatin-immunoprecipitation (ChIP) assay. Based on experiments using mutated IGRP promoter constructs, we propose a model to explain how the ubiquitously expressed USF could contribute to islet-specific IGRP gene expression.
机译:胰岛特异性葡萄糖6磷酸酶(G6Pase)催化亚基相关蛋白(IGRP)是G6Pase催化亚基的同系物,该酶催化糖异生途径的最后一步。通过瞬时转染胰岛衍生的βTC-3细胞对IGRP-氯霉素乙酰基转移酶(CAT)融合基因表达的分析显示,最大IGRP-CAT融合基因需要位于-306和-97之间的多个启动子区域表达。这些区域与IGRP启动子中的反式作用因子结合位点相关,该位点是使用连接介导的PCR(LMPCR)足迹技术在βTC-3细胞中原位鉴定的。但是,LMPCR数据还揭示了位于-97和+1之间的重叠两个E-box基序的其他反式作用因子结合位点,即使该区域本身具有最小的融合基因表达。此处提供的数据表明,这些E-box基序对于IGRP启动子活性很重要,但是它们的作用仅在远端启动子元件存在时才表现出来。因此,在-306至+3 IGRP启动子区域的情况下,任一E-box基序的突变都降低了融合基因的表达。这两个E-box基序具有不同的序列,并在体外优先结合NeuroD / BETA2(神经分化/β细胞E-box反式激活因子2)和上游刺激因子(USF),这与这两个因子在原位与IGRP启动子的结合一致如使用染色质免疫沉淀(ChIP)分析所确定。基于使用突变的IGRP启动子构建体的实验,我们提出一个模型来解释普遍表达的USF如何促进胰岛特异性IGRP基因表达。

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