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Biochemical and structural characterization of a novel cooperative binding mode by Pit-1 with CATT repeats in the macrophage migration inhibitory factor promoter

机译:CATT在巨噬细胞迁移抑制因子启动子中重复新型合作结合模式的生物化学和结构表征

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摘要

Overexpression of the proinflammatory cytokine macrophage migration inhibitory factor (MIF) is linked to a number of autoimmune diseases and cancer. MIF production has been correlated to the number of CATT repeats in a microsatellite region upstream of the MIF gene. We have characterized the interaction of pituitary-specific positive transcription factor 1 (Pit-1) with a portion of the MIF promoter region flanking a microsatellite polymorphism (-794 CATT(5-8)). Using fluorescence anisotropy, we quantified tight complex formation between Pit-1 and an oligonucleotide consisting of eight consecutive CATT repeats (8xCATT) with an apparent K-d of 35 nM. Using competition experiments we found a 23 base pair oligonucleotide with 4xCATT repeats to be the minimum DNA sequence necessary for high affinity interaction with Pit-1. The stoichiometry of the Pit-1 DNA interaction was determined to be 2: 1 and binding is cooperative in nature. We subsequently structurally characterized the complex and discovered a completely novel binding mode for Pit-1 in contrast to previously described Pit-1 complex structures. The affinity of Pit-1 for the CATT target sequence was found to be highly dependent on cooperativity. This work lays the groundwork for understanding transcriptional regulation of MIF and pursuing Pit-1 as a therapeutic target to treat MIF-mediated inflammatory disorders.
机译:促炎细胞因子巨噬细胞迁移抑制因子(MIF)的过表达与许多自身免疫疾病和癌症相关联。 MIF生产与MIF基因上游的微卫星区域中的CATT重复相关。我们表征了垂体特异性阳性转录因子1(PIT-1)与侧翼微卫星多态性的一部分MIF启动子区的相互作用(-794 CATT(5-8))。使用荧光各向异性,我们在坑1和由八个连续CATT(8xCATT)组成的寡核苷酸之间量化的寡核苷酸之间的紧密复杂形成,具有35nm的表观K-D。使用竞争实验我们发现了一种23个碱基对寡核苷酸,4×CATT重复,是与坑1的高亲和相互作用所需的最小DNA序列。将坑1 DNA相互作用的化学计量确定为2:1,结合本质上是合作的。随后,在结构上表征了复杂的并且与先前描述的凹坑1复合结构形成了坑-1的完全新颖的结合模式。发现对CATT靶序列的坑1的亲和力非常依赖于合作效力。这项工作为理解MIF和追求坑1作为治疗MIF介导的炎症障碍的治疗靶标的基础。

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  • 来源
    《Nucleic Acids Research》 |2018年第2期|共13页
  • 作者单位

    St Louis Univ Sch Med Edward A Doisy Dept Biochem &

    Mol Biol St Louis MO 63104 USA;

    St Louis Univ Sch Med Edward A Doisy Dept Biochem &

    Mol Biol St Louis MO 63104 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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