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首页> 外文期刊>Nucleic acids research >The p120ctn-binding partner Kaiso is a bi-modal DNA-binding protein that recognizes both a sequence-specific consensus and methylated CpG dinucleotides
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The p120ctn-binding partner Kaiso is a bi-modal DNA-binding protein that recognizes both a sequence-specific consensus and methylated CpG dinucleotides

机译:p120ctn结合伴侣Kaiso是一种双峰DNA结合蛋白,可识别序列特异性共有序列和甲基化的CpG二核苷酸

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The p120ctn-binding partner Kaiso is a new member of the POZ-zinc finger family of transcription factors implicated in development and cancer. To understand the role of Kaiso in gene regulation and p120ctn-mediated signaling and adhesion, we sought to identify Kaiso-specific DNA binding sequences and potential target genes. Here we demonstrate that Kaiso is a dual specificity DNA-binding protein that recognizes the specific consensus sequence TCCTGCNA as well as methyl-CpG dinucleotides. A minimal core sequence CTGCNA was identified as sufficient for Kaiso binding. Two copies of the Kaiso-binding site are present in the human and murine matrilysin promoters, implicating matrilysin as a candidate target gene for Kaiso. In electrophoretic mobility shift assays, matrilysin promoter-derived oligonucleotide probes formed a complex with GST–Kaiso fusion proteins possessing the zinc finger domain but not with fusion proteins lacking the zinc fingers. We further determined that only Kaiso zinc fingers 2 and 3 were necessary and sufficient for sequence-specific DNA binding. Interestingly, Kaiso also possesses a methyl-CpG-dependent DNA-binding activity distinct from its sequence-specific DNA binding. However, Kaiso has a higher affinity for the TCCTGCNA consensus than for the methyl-CpG sites. Furthermore, the DNA-binding ability of Kaiso with either recognition site was inhibited by p120ctn. Kaiso thus appears to have two modes of DNA binding and transcriptional repression, both of which may be modulated by its interaction with the adhesion cofactor p120ctn.
机译:p120 ctn 结合伴侣Kaiso是POZ-锌指转录因子家族的新成员,与发育和癌症有关。为了了解Kaiso在基因调控以及p120 ctn 介导的信号传导和粘附中的作用,我们试图鉴定Kaiso特异性的DNA结合序列和潜在的靶基因。在这里,我们证明Kaiso是双重特异性DNA结合蛋白,可识别特定的共有序列TCCTGCNA以及甲基CpG二核苷酸。鉴定出最小的核心序列CTGCNA足以与Kaiso结合。在人类和鼠源性基质溶解素启动子中存在两个拷贝的Kaiso结合位点,暗示基质溶解素是Kaiso的候选靶基因。在电泳迁移率变动分析中,基质溶素启动子衍生的寡核苷酸探针与具有锌指结构域的GST-Kaiso融合蛋白形成复合物,但与缺乏锌指的融合蛋白形成复合物。我们进一步确定,仅Kaiso锌指2和3对于序列特异性DNA结合是必要和充分的。有趣的是,Kaiso还具有甲基CpG依赖性的DNA结合活性,不同于其序列特异性的DNA结合。然而,Kaiso对TCCTGCNA共识的亲和力高于对甲基CpG位点的亲和力。此外,p120 ctn 抑制了Kaiso具有任一识别位点的DNA结合能力。因此,Kaiso似乎具有DNA结合和转录抑制的两种模式,两者均可通过其与粘附辅因子p120 ctn 的相互作用来调节。

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