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透明质酸合酶3(hyaluronan synthase 3,HAS3),是一个参与透明质酸合成的酶分子,在上皮形成和肿瘤转移等过程中起重要作用.为了进一步研究HAS3基因的转录调控机制,本研究克隆鉴定了HAS3基因的启动子.首先应用5′RACE(rapid amplification of cDNA ends,cDNA末端快速扩增)技术鉴定了HAS3基因的转录起始位点,发现了丰度和转录起始位点不同的两种新的HAS3基因剪接变异体.通过PCR定向克隆策略,构建了覆盖HAS3基因5′端侧翼区起始密码子ATG上游约4.3 kb区域的一系列HAS3基因启动子荧光素酶报告基因重组体.启动子活性分析表明,HAS3基因启动子定位于转录起始位点附近约450 bp的区域内.转录因子结合位点分析表明,HAS3基因启动子缺乏典型的TATA盒,但含有典型的GC盒以及C/EBP等其它潜在的转录因子结合位点. 结果提示,Sp1和C/EBP等转录因子可能参与HAS3基因的转录调控.  相似文献   

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The mammalian target of rapamycin (mTOR) is a serine/threonine kinase that plays an essential role in cell growth control. mTOR stimulates cell growth by phosphorylating p70 ribosomal S6 kinase (S6K) and eukaryote initiation factor 4E-binding protein 1 (4EBP1). The mTOR pathway is regulated by a wide variety of cellular signals, including mitogenic growth factors, nutrients, cellular energy levels, and stress conditions. Recent studies have proposed several mechanisms to explain how mTOR is regulated by growth factors and cellular energy levels. However, little is known as to how mTOR is regulated by stress conditions. We observed that two stress-induced proteins, RTP801/Redd1 and RTP801L/Redd2, potently inhibit signaling through mTOR. Our data support that RTP801 and RTP801L work downstream of AKT and upstream of TSC2 to inhibit mTOR functions. These results add a new dimension to mTOR pathway regulation and provide a possible molecular mechanism of how cellular stress conditions may regulate mTOR function.  相似文献   

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