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Regulation of expression by promoters versus internal ribosome entry site in the 5 '-untranslated sequence of the human cyclin-dependent kinase inhibitor p27(kip1)

机译:由人类细胞周期蛋白依赖性激酶抑制剂p27(kip1)5'-非翻译序列中的启动子对内部核糖体进入位点的表达调控

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p27(kip1) regulates cell proliferation by binding to and inhibiting the activity of cyclin-dependent kinases and its expression oscillates with cell cycle. Recently, it has been suggested from studies using the traditional dicistronic DNA assay that the expression of p27(kip1) is regulated by internal ribosome entry site (IRES)-mediated translation initiation, and several RNA-binding protein factors were thought to play some role in this regulation. Considering the inevitable drawbacks of the dicistronic DNA assay, which could mislead a promoter activity or alternative splicing to IRES as previously demonstrated, we decided to reanalyze the 5'-untranslated region (5'-UTR) sequence of p27(kip1) and test whether it contains an IRES element or a promoter using more stringent methods, such as dicistronic RNA and promoterless dicistronic and monocistronic DNA assays. We found that the 5'-UTR sequence of human p27(kip1) does not have any significant IRES activity. The previously observed IRES activities are likely generated from the promoter activities present in the 5'-UTR sequences of p27(kip1). The findings in this study indicate that transcriptional regulation likely plays an important role in p27(kip1) expression, and the mechanism of regulation of p27 expression by RNA-binding factors needs to be re-examined. The findings in this study also further enforce the importance that more stringent studies, such as promoterless dicistronic and monocistronic DNA and dicistronic RNA tests, are required to safeguard any future claims of cellular IRES.
机译:p27(kip1)通过与细胞周期蛋白依赖性激酶结合并抑制其活性来调节细胞增殖,并且其表达随细胞周期而振荡。最近,使用传统的双顺反子DNA分析的研究表明,p27(kip1)的表达受内部核糖体进入位点(IRES)介导的翻译起始的调节,并且一些RNA结合蛋白因子被认为发挥一定作用在这个规定中。考虑到双顺反子DNA测定法不可避免的缺点,如先前证明的那样,它可能误导启动子活性或与IRES的可变剪接,我们决定重新分析p27(kip1)的5'-非翻译区(5'-UTR)序列,并测试是否它使用更严格的方法(例如双顺反子RNA和无启动子的双顺反子和单顺反子DNA分析)包含IRES元件或启动子。我们发现,人p27(kip1)的5'-UTR序列没有任何明显的IRES活性。先前观察到的IRES活性很可能是由p27(kip1)5'-UTR序列中存在的启动子活性产生的。这项研究的发现表明,转录调控可能在p27(kip1)表达中起重要作用,并且需要重新研究RNA结合因子对p27表达的调控机制。这项研究中的发现还进一步强调了必须进行更严格的研究,例如无启动子的双顺反子和单顺反子DNA和双顺反子RNA测试,以保护将来对细胞IRES的主张。

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