首页> 美国卫生研究院文献>The EMBO Journal >Molecular basis of sequence-specific single-stranded DNA recognition by KH domains: solution structure of a complex between hnRNP K KH3 and single-stranded DNA
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Molecular basis of sequence-specific single-stranded DNA recognition by KH domains: solution structure of a complex between hnRNP K KH3 and single-stranded DNA

机译:KH域识别序列特异性单链DNA的分子基础:hnRNPK KH3与单链DNA之间的复合物的溶液结构

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摘要

To elucidate the basis of sequence-specific single-stranded (ss) DNA recognition by K homology (KH) domains, we have solved the solution structure of a complex between the KH3 domain of the transcriptional regulator heterogeneous nuclear ribonucleoprotein K (hnRNP K) and a 10mer ssDNA. We show that hnRNP K KH3 specifically recognizes a tetrad of sequence 5′d-TCCC. The complex is stabilized by a dense network of methyl-oxygen hydrogen bonds involving the methyl groups of three isoleucine residues and the O2 and N3 atoms of the two central cytosine bases. Comparison with the recently solved structure of a specific protein–ssDNA complex involving the KH3 and KH4 domains of the far upstream element (FUSE) binding protein FBP suggests that the amino acid located five residues N-terminal of the invariant GXXG motif, which is characteristic of all KH domains, plays a crucial role in discrimination of the first two bases of the tetrad.
机译:为了阐明通过K同源性(KH)域识别序列特异性单链(ss)DNA的基础,我们解决了转录调节异质核糖核蛋白K(hnRNṔK)的KH3域与10聚体的ssDNA。我们显示hnRNP K KH3特异性识别序列5'd-TCCC的四联体。该复合物通过包含三个异亮氨酸残基的甲基以及两个中心胞嘧啶碱基的O2和N3原子的甲基-氧氢键致密网络而稳定。与最近解决的涉及远上游元件(FUSE)结合蛋白FBP的KH3和KH4结构域的特定蛋白质-ssDNA复合体的结构比较表明,该氨基酸位于不变的GXXG基序的N末端五个残基上在所有KH域中,在区分四联体的前两个碱基方面起着至关重要的作用。

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