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Flexibility and Disorder in Gene Regulation: LacI/GalR and Hox Proteins

机译:基因调控的灵活性和障碍:LacI / GalR和Hox蛋白

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摘要

To modulate transcription, a variety of input signals must be sensed by genetic regulatory proteins. In these proteins, flexibility and disorder are emerging as common themes. Prokaryotic regulators generally have short, flexible segments, whereas eukaryotic regulators have extended regions that lack predicted secondary structure (intrinsic disorder). Two examples illustrate the impact of flexibility and disorder on gene regulation: the prokaryotic LacI/GalR family, with detailed information from studies on LacI, and the eukaryotic family of Hox proteins, with specific insights from investigations of Ultrabithorax (Ubx). The widespread importance of structural disorder in gene regulatory proteins may derive from the need for flexibility in signal response and, particularly in eukaryotes, in protein partner selection.
机译:为了调节转录,遗传调节蛋白必须感应多种输入信号。在这些蛋白质中,柔韧性和无序性成为共同的主题。原核生物调节剂通常具有短而柔性的片段,而真核生物调节剂具有延伸的区域,这些区域缺乏预期的二级结构(内在失调)。有两个例子说明了灵活性和无序性对基因调控的影响:原核的LacI / GalR家族,提供了有关LacI研究的详细信息;真核生物的Hox蛋白家族,以及来自超远胸(Ubx)研究的具体见解。结构紊乱在基因调节蛋白中的广泛重要性可能源于对信号响应特别是在真核生物中蛋白伴侣选择中的灵活性的需求。

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