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Prediction of protein active and/or binding site using time-frequency analysis: Application to ras oncogene proteins

机译:使用时频分析预测蛋白质活性和/或结合位点:在ras癌基因蛋白中的应用

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Cancer cells contain genetic damage that can lead to tumorigenesis. Genetic damage found in cancer cells is of two types: dominant and the genes are termed proto-oncogenes; and recessive and the genes are termed tumor or growth suppressors, recessive oncogenes or anti-oncogenes. Oncogene proteins are a specific group of growth factors that promotes uncontrolled cell growth and proliferation. These proteins are derived from normal proto-oncogenes via a limited number of modifications, i.e mutations, insertions or deletions. Because proto-oncogenes control the cell cycle, it is obvious that should a proto-oncogene be mutated the potential for an unregulated cell cycle results. Therefore, a structure-function analysis of oncogene proteins is of great importance in understanding cell transformation that causes cancer development. In this paper we present and discuss the use of two related computational techniques for analysis of ras oncongene protein example. We showed that the methods are efficient for accurate prediction of the protein active/binding site locations critical for its bioactivity, i.e. cell transformation.
机译:癌细胞含有可导致肿瘤发生的遗传损伤。在癌细胞中发现的遗传损伤有两种类型:显性遗传基因和被称为原癌基因的基因。隐性和隐性基因,这些基因被称为肿瘤或生长抑制剂,隐性癌基因或抗癌基因。癌基因蛋白是一组特定的生长因子,可促进细胞不受控制的生长和增殖。这些蛋白质通过有限数量的修饰即突变,插入或缺失而衍生自正常的原癌基因。由于原癌基因控制细胞周期,因此很明显,如果将原癌基因突变,可能会导致细胞周期失控。因此,癌基因蛋白的结构功能分析对于理解引起癌症发展的细胞转化非常重要。在本文中,我们介绍并讨论了使用两种相关的计算技术来分析ras oncongene蛋白实例。我们证明了该方法对于准确预测对其生物活性即细胞转化至关重要的蛋白质活性/结合位点位置是有效的。

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