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首页> 外文期刊>Nucleic Acids Research >FeON-FeOFF: the Helicobacter pylori Fur regulator commutates iron-responsive transcription by discriminative readout of opposed DNA grooves
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FeON-FeOFF: the Helicobacter pylori Fur regulator commutates iron-responsive transcription by discriminative readout of opposed DNA grooves

机译:FeON-FeOFF:幽门螺杆菌毛皮调节剂通过有区别地读出相对的DNA凹槽,使铁反应性转录转变

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摘要

Most transcriptional regulators bind nucleotide motifs in the major groove, although some are able to recognize molecular determinants conferred by the minor groove of DNA. Here we report a transcriptional commutator switch that exploits the alternative readout of grooves to mediate opposite output regulation for the same input signal. This mechanism accounts for the ability of the Helicobacter pylori Fur regulator to repress the expression of both iron-inducible and iron-repressible genes. When iron is scarce, Fur binds to DNA as a dimer, through the readout of thymine pairs in the major groove, repressing iron-inducible transcription (FeON). Conversely, on iron-repressible elements the metal ion acts as corepressor, inducing Fur multimerization with consequent minor groove readout of AT-rich inverted repeats (FeOFF). Our results provide first evidence for a novel regulatory paradigm, in which the discriminative readout of DNA grooves enables to toggle between the repression of genes in a mutually exclusive manner.
机译:大多数转录调节因子结合大沟中的核苷酸基序,尽管有些能够识别DNA小沟所赋予的分子决定簇。在这里,我们报告了一个转录换向器开关,该开关利用凹槽的替代读数来调解相同输入信号的相反输出调节。该机制解释了幽门螺杆菌毛皮调节剂抑制铁可诱导和铁可抑制基因的表达的能力。当铁缺乏时,Fur通过读出大沟中的胸腺嘧啶对,以二聚体的形式结合到DNA,从而抑制铁诱导的转录(FeON)。相反,在可铁抑制的元素上,金属离子充当核心加压剂,诱导Fur多聚化,并随之产生富AT反向重复序列(FeOFF)的较小凹槽读数。我们的结果为新的调控范式提供了第一个证据,在该范式中,DNA沟的判别性读出使得能够以互斥的方式在基因的抑制之间进行切换。

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