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首页> 外文期刊>Nucleic Acids Research >Nucleic acid binding properties of the nucleic acid chaperone domain of hepatitis delta antigen
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Nucleic acid binding properties of the nucleic acid chaperone domain of hepatitis delta antigen

机译:肝炎δ抗原的核酸伴侣结构域的核酸结合特性

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摘要

The N terminal region of hepatitis delta antigen (HDAg), referred to here as NdAg, has a nucleic acid chaperone activity that modulates the ribozyme activity of hepatitis delta virus (HDV) RNA and stimulates hammerhead ribozyme catalysis. We characterized the nucleic acid binding properties of NdAg, identified the structural and sequence domains important for nucleic acid binding, and studied the correlation between the nucleic acid binding ability and the nucleic acid chaperone activity. NdAg does not recognize the catalytic core of HDV ribozyme specifically. Instead, NdAg interacts with a variety of nucleic acids and has higher affinities to longer nucleic acids. The studies with RNA homopolymers reveal that the binding site size of NdAg is around nine nucleotides long. The extreme N terminal portion of NdAg, the following coiled-coil domain and the basic amino acid clusters in these regions are important for nucleic acid binding. The nucleic acid-NdAg complex is stabilized largely by electrostatic interactions. The formation of RNA-protein complex appears to be a prerequisite for facilitating hammerhead ribozyme catalysis of NdAg and its derivatives. Mutations that reduce the RNA binding activity or high ionic strength that destabilizes the RNA-protein complex, reduce the nucleic acid chaperone activity of NdAg.
机译:肝炎三角洲抗原(HDAg)的N末端区域(此处称为NdAg)具有核酸伴侣活性,可调节肝炎三角洲病毒(HDV)RNA的核酶活性并刺激锤头状核酶催化。我们表征了NdAg的核酸结合特性,鉴定了对核酸结合重要的结构域和序列域,并研究了核酸结合能力与核酸伴侣活性之间的相关性。 NdAg不能特异性识别HDV核酶的催化核心。取而代之的是,NdAg与多种核酸相互作用,并且对更长的核酸具有更高的亲和力。 RNA均聚物的研究表明NdAg的结合位点大小约为9个核苷酸长。 NdAg的极端N末端部分,随后的螺旋螺旋结构域和这些区域中的碱性氨基酸簇对于核酸结合非常重要。核酸-NdAg复合物主要通过静电相互作用稳定。 RNA-蛋白质复合物的形成似乎是促进锤头状核酶催化NdAg及其衍生物的先决条件。降低RNA结合活性或破坏RNA蛋白复合物稳定性的高离子强度的突变会降低NdAg的核酸伴侣活性。

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