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Sequence features of DNA binding sites reveal structural class of associated transcription factor

机译:DNA结合位点的序列特征揭示了相关转录因子的结构类别

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Motivation: A key goal in molecular biology is to understand the mechanisms by which a cell regulates the transcription of its genes. One important aspect of this transcriptional regulation is the binding of transcription factors (TFs) to their specific cis-regulatory counterparts on the DNA. TFs recognize and bind their DNA counterparts according to the structure of their DNA-binding domains (e.g. zinc finger, leucine zipper, homeodomain). The structure of these domains can be used as a basis for grouping TFs into classes. Although the structure of DNA-binding domains varies widely across TFs generally, the TFs within a particular class bind to DNA in a similar fashion, suggesting the existence of class-specific features in the DNA sequences bound by each class of TFs.
机译:动机:分子生物学的主要目标是了解细胞调节其基因转录的机制。这种转录调节的一个重要方面是转录因子(TF)与DNA上特定的顺式调节对应物的结合。 TF根据其DNA结合结构域(例如锌指,亮氨酸拉链,同源结构域)的结构识别并结合其DNA对应物。这些域的结构可用作将TF分组为类的基础。尽管DNA结合结构域的结构通常跨TF而广泛变化,但是特定类别中的TF以相似的方式结合至DNA,这表明由每一类TF结合的DNA序列中存在类特异性特征。

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