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包含第一和第二个KH结构域的人多聚(C)结合蛋白构建体的结构揭示了其调控机制。

Structure of a construct of a human poly(C)-binding protein containing the first and second KH domains reveals insights into its regulatory mechanisms.

作者信息

Du Zhihua, Fenn Sebastian, Tjhen Richard, James Thomas L

机构信息

Department of Pharmaceutical Chemistry, University of California, San Francisco, California 94143, USA.

出版信息

J Biol Chem. 2008 Oct 17;283(42):28757-66. doi: 10.1074/jbc.M803046200. Epub 2008 Aug 13.

Abstract

Poly(C)-binding proteins (PCBPs) are important regulatory proteins that contain three KH (hnRNP K homology) domains. Binding poly(C) D/RNA sequences via KH domains is essential for multiple PCBP functions. To reveal the basis for PCBP-D/RNA interactions and function, we determined the structure of a construct containing the first two domains (KH1-KH2) of human PCBP2 by NMR. KH1 and KH2 form an intramolecular pseudodimer. The large hydrophobic dimerization surface of each KH domain is on the side opposite the D/RNA binding interface. Chemical shift mapping indicates both domains bind poly(C) DNA motifs without disrupting the KH1-KH2 interaction. Spectral comparison of KH1-KH2, KH3, and full-length PCBP2 constructs suggests that the KH1-KH2 pseudodimer forms, but KH3 does not interact with other parts of the protein. From NMR studies and modeling, we propose possible modes of cooperative binding tandem poly(C) motifs by the KH domains. D/RNA binding may induce pseudodimer dissociation or stabilize dissociated KH1 and KH2, making protein interaction surfaces available to PCBP-binding partners. This conformational change may represent a regulatory mechanism linking D/RNA binding to PCBP functions.

摘要

聚(C)结合蛋白(PCBP)是重要的调节蛋白,包含三个KH(核不均一核糖核蛋白K同源)结构域。通过KH结构域结合聚(C)的DNA/RNA序列对于多种PCBP功能至关重要。为了揭示PCBP与DNA/RNA相互作用及功能的基础,我们通过核磁共振(NMR)确定了包含人PCBP2前两个结构域(KH1-KH2)的构建体的结构。KH1和KH2形成分子内假二聚体。每个KH结构域的大的疏水二聚化表面位于与DNA/RNA结合界面相对的一侧。化学位移图谱表明两个结构域均结合聚(C)DNA基序而不破坏KH1-KH2相互作用。KH1-KH2、KH3和全长PCBP2构建体的光谱比较表明,KH1-KH2假二聚体形成,但KH3不与蛋白质的其他部分相互作用。通过NMR研究和建模,我们提出了KH结构域协同结合串联聚(C)基序的可能模式。DNA/RNA结合可能诱导假二聚体解离或稳定解离的KH1和KH2,使蛋白质相互作用表面可用于PCBP结合伴侣。这种构象变化可能代表一种将DNA/RNA结合与PCBP功能联系起来的调节机制。

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