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DNA Conformation Induces Adaptable Binding by Tandem Zinc Finger Proteins

机译:DNA构象诱导串联锌指蛋白的适应性结合

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摘要

Tandem zinc finger (ZF) proteins are the largest and most rapidly diverging family of DNA-binding transcription regulators in mammals. ZFP568 represses a transcript of placental-specific insulin like growth factor 2 (Igf2-P0) in mice. ZFP568 binds a 24-base pair sequence-specific element upstream of Igf2-P0 via the eleven-ZF array. Both DNA and protein conformations deviate from the conventional one finger-three bases recognition, with individual ZFs contacting 2, 3, or 4 bases and recognizing thymine on the opposite strand. These interactions arise from a shortened minor groove caused by an AT-rich stretch, suggesting adaptability of ZF arrays to sequence variations. Despite conservation in mammals, mutations at Igf2 and ZFP568 reduce their binding affinity in chimpanzee and humans. Our studies provide important insights into the evolutionary and structural dynamics of ZF-DNA interactions that play a key role in mammalian development and evolution.
机译:串联锌手指(ZF)蛋白质是哺乳动物中最大且最迅速分歧的DNA结合转录调节剂。 ZFP568抑制小鼠中生长因子2(IGF2-P0)的胎盘特异性胰岛素的转录物。 ZFP568通过Eleven-ZF阵列将IGF2-P0的24碱基对序列特异性元素粘合。 DNA和蛋白质构象均偏离常规的一种手指三个基础识别,单个ZFS接触2,3或4个碱基并在相对的股线上识别胸腺嘧啶。 这些相互作用产生由由富有的耐伸缩引起的缩短的凹痕,表明ZF阵列对序列变化的适应性。 尽管哺乳动物保护,但IGF2和ZFP568的突变降低了对黑猩猩和人类的结合亲和力。 我们的研究在哺乳动物开发和演变中发挥关键作用的ZF-DNA相互作用的进化和结构动态提供了重要的见解。

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  • 来源
    《Cell》 |2018年第1期|共25页
  • 作者单位

    Emory Univ Sch Med Dept Biochem 1510 Clifton Rd Atlanta GA 30322 USA;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum NIH Bethesda MD 20892 USA;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum NIH Bethesda MD 20892 USA;

    Emory Univ Sch Med Dept Biochem 1510 Clifton Rd Atlanta GA 30322 USA;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum NIH Bethesda MD 20892 USA;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum NIH Bethesda MD 20892 USA;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum NIH Bethesda MD 20892 USA;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum NIH Bethesda MD 20892 USA;

    Univ Texas MD Anderson Canc Ctr Dept Mol &

    Cellular Biol Houston TX 77030 USA;

    Univ Texas MD Anderson Canc Ctr Dept Mol &

    Cellular Biol Houston TX 77030 USA;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum NIH Bethesda MD 20892 USA;

    Emory Univ Sch Med Dept Biochem 1510 Clifton Rd Atlanta GA 30322 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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