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Effect of different basic helix-loop-helix leucine zipper factors on the glucose response unit of the L-type pyruvate kinase gene.

机译:不同的基本螺旋-环-螺旋亮氨酸拉链因子对L型丙酮酸激酶基因葡萄糖反应单元的影响。

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Glucose-regulated transcription of the L-type pyruvate kinase (L-PK) gene is mediated through its glucose response element (GlRE/L4 box) composed of two degenerated E-boxes. Upstream stimulatory factor (USF) is a component of the transcriptional glucose response complex built up on the GlRE. Cooperation of the GlRE with the contiguous binding site (L3 box) for the orphan nuclear receptor hepatocyte nuclear factor 4 (HNF4) has also been suggested. We compared by transient transfection assays the effects of USF2a and other basic helix-loop-helix leucine zipper (bHLH-LZ) factors (TFE3, c-Myc, SREBP/ADD1) on the activity and glucose responsiveness of a minimal L-PK promoter directed by oligomerized glucose response units (L4L3 boxes). We found that: (i) although USF2a is intrinsically a moderate transcriptional activator, it has a strong stimulatory effect on the activity of the L4L3-based reporter construct in hepatocyte-derived cells and interferes with the glucose responsiveness; (ii) despite its potent ability as a transactivator, TFE3 alone is barely active on the GlRE in hepatocyte-derived cells; (iii) TFE3 as USF2a acts synergistically with HNF4 and abolishes glucose responsiveness of the promoter when overexpressed; (iv) in contrast, overexpression of HNF4 alone stimulates activity of the promoter without interfering with glucose responsiveness; (v) SREBP/ADD1 has a very weak activity on the L4L3 elements, only detectable in the presence of HNF4, and c-Myc does not interact with the GIRE of the L-PK promoter. Our studies indicate that different bHLH-LZ transcription factors known to recognize CACGTG-type E-boxes are not equivalent in acting through the L-PK glucose response element, with USF proteins being especially efficient in hepatocyte-derived cells.
机译:L型丙酮酸激酶(L-PK)基因的葡萄糖调节转录是通过其葡萄糖反应元件(G1RE / L4盒)介导的,该元件由两个简并的E-box组成。上游刺激因子(USF)是在GlRE上构建的转录葡萄糖反应复合物的组成部分。也已经提出了GlRE与孤儿核受体肝细胞核因子4(HNF4)的连续结合位点(L3盒)的合作。我们通过瞬时转染试验比较了USF2a和其他基本螺旋-环-螺旋亮氨酸拉链(bHLH-LZ)因子(TFE3,c-Myc,SREBP / ADD1)对最小L-PK启动子的活性和葡萄糖反应性的影响由低聚葡萄糖反应单元(L4L3框)指导。我们发现:(i)尽管USF2a本质上是一种中等转录激活因子,但它对肝细胞衍生细胞中基于L4L3的报告基因构建物的活性具有很强的刺激作用,并干扰了葡萄糖的反应性; (ii)尽管TFE3具有有效的反式激活能力,但它在肝细胞衍生细胞中对GlRE几乎没有活性; (iii)TFE3作为USF2a与HNF4协同作用,并在过表达时消除了启动子的葡萄糖反应性; (iv)相反,仅HNF4的过表达刺激启动子的活性而不干扰葡萄糖反应性; (v)SREBP / ADD1对L4L3元件的活性非常弱,只有在HNF4存在的情况下才能检测到,并且c-Myc不与L-PK启动子的GIRE相互作用。我们的研究表明,已知可识别CACGTG型E-boxs的不同bHLH-LZ转录因子在通过L-PK葡萄糖反应元件发挥作用方面并不等效,其中USF蛋白在肝细胞衍生的细胞中特别有效。

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