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首页> 外文期刊>Journal of Molecular Biology >GLUT1 glucose transporter gene transcription is repressed by Sp3. Evidence for a regulatory role of Sp3 during myogenesis.
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GLUT1 glucose transporter gene transcription is repressed by Sp3. Evidence for a regulatory role of Sp3 during myogenesis.

机译:GLUT1葡萄糖转运蛋白基因的转录受Sp3抑制。 Sp3在肌发生过程中的调节作用的证据。

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摘要

GLUT1 glucose transporters are highly expressed in proliferating and transformed cells as well as in tissues during fetal life. However, the mechanisms that regulate GLUT1 gene expression remain largely unknown. Here, we demonstrate that Sp3 proteins bind to the GLUT1 proximal promoter gene and inhibit transcriptional activity in muscle and non-muscle cells. Two different Sp3 translational products (110 and 74 kDa) derived from differential translational initiation were detected in nuclear extracts from myoblast cells, and both Sp3 protein species inhibited GLUT1 gene transcriptional activity. The inhibitory effect of Sp3 was dominant over the stimulatory effect of Sp1 on transcriptional activity of GLUT1 gene. Furthermore, abolition of Sp3 binding to the proximal promoter of GLUT1 gene completely blocked the response to Sp3.We provide evidence that the expression of Sp3 protein is subject to regulation in muscle cells and that this is likely to control GLUT1. Thus, Sp3 protein was up-regulated in the absence of changes in Sp1 early after the induction of IGF-II-dependent myogenesis. Furthermore, forced over-expression of MyoD caused an enhancement in the cellular Sp3/Sp1 ratio which was concomitant to a reduced GLUT1 expression. Later during myogenesis, Sp3 expression was substantial whereas Sp1 was markedly down-regulated.In summary, we provide direct evidence that the transcription factor Sp3 represses gene expression in non-muscle and muscle cells and this is likely to operate in fetal heart by binding to the GLUT1 gene promoter. This is the first description of a repressor of GLUT1 gene transcription. Furthermore, we propose that variations in the ratio of Sp3 versus Sp1 regulate GLUT1 promoter activity and this is crucial in the down-regulation of GLUT1 associated to myogenesis. Copyright 1999 Academic Press.
机译:在胎儿生命期间,GLUT1葡萄糖转运蛋白在增殖和转化的细胞以及组织中高表达。但是,调节GLUT1基因表达的机制仍然未知。在这里,我们证明Sp3蛋白与GLUT1近端启动子基因结合并抑制肌肉和非肌肉细胞中的转录活性。在成肌细胞的核提取物中检测到两种不同的Sp3翻译产物(分别为110和74 kDa)来自差异翻译起始,并且这两种Sp3蛋白都抑制了GLUT1基因的转录活性。 Sp3的抑制作用优于Sp1对GLUT1基因转录活性的刺激作用。此外,取消与GLUT1基因近端启动子结合的Sp3完全阻断了对Sp3的应答。我们提供的证据表明,Sp3蛋白的表达受到肌肉细胞的调节,这很可能会控制GLUT1。因此,在诱导IGF-II依赖的肌发生后早期,Sp3蛋白在Sp1不存在变化的情况下被上调。此外,MyoD的强制过度表达导致细胞Sp3 / Sp1比值的增加,这与GLUT1表达的降低相伴。总之,我们提供了直接的证据,表明转录因子Sp3抑制非肌肉和肌肉细胞中的基因表达,并且有可能通过与GLUT1基因启动子。这是对GLUT1基因转录阻遏物的首次描述。此外,我们提出Sp3与Sp1的比率变化可调节GLUT1启动子活性,这在与肌发生相关的GLUT1的下调中至关重要。版权所有1999,学术出版社。

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