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首页> 外文期刊>DNA and Cell Biology >Interaction In Vitro of Type III Intermediate Filament Proteins with Higher Order Structures of Single-Stranded DNA, Particularly with G-Quadruplex DNA
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Interaction In Vitro of Type III Intermediate Filament Proteins with Higher Order Structures of Single-Stranded DNA, Particularly with G-Quadruplex DNA

机译:具有单链DNA尤其是G-四链体DNA高阶结构的III型中间丝蛋白的体外相互作用

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摘要

Cytoplasmic intermediate filament (cIF) proteins interact strongly with single-stranded (ss) DNAs and RNAs, particularly with G-rich sequences. To test the hypothesis that this interaction depends on special nucleotide sequences and, possibly, higher order structures of ssDNA, a random mixture of mouse genomic ssDNA fragments generated by a novel "whole ssDNA genome PCR" technique via RNA intermediates was subjected to three rounds of affinity binding to in vitro reconstituted vimentin IFs at physiological ionic strength with intermediate PCR amplification of the bound ssDNA segments. Nucleotide sequence and computer folding analysis of the vimentin-selected fragments revealed an enrichment in microsatellites, predominantly of the (GT)n type, telomere DNA, and C/T-rich sequences, most of which, however, were incapable of folding into stable stem-loop structures. Because G-rich sequences were underrepresented in the vimentin-bound fraction, it had to be assumed that such sequences require intramolecular folding or lateral assembly into multistrand structures to be able to stably interact with vimentin, but that this requirement was inadequately fulfilled under the conditions of the selection experiment. For that reason, the few vimentin-selected G-rich ssDNA fragments and a number of telomere models were analyzed for their capacity to form inter- and intramolecular Gquadruplexes (G4 DNAs) under optimized conditions and to interact as such with vimentin and its type III relatives, glial fibrillary acidic protein, and desmin. Band shift assays indeed demonstrated differential binding of the cIF proteins to parallel four-stranded G4 DNAs and, with lower affinity, to bimolecular G'2 and unimolecular G'4 DNA configurations, whereby the transition regions from four- to single-strandedness played an additional role in the binding reaction. In this respect, the binding activity of cIF proteins was comparable with that toward other noncanonical DNA structures, like ds/ss DNA forks, triplex DNA, four-way junction DNA and Z-DNA, which also involve configurational transitions in their interaction with the filament proteins. Association of the cIF proteins with the corresponding nonfolded G-rich ssDNAs was negligible. Considering the almost universal involvement of ssDNA regions and G-quadruplexes in nuclear processes, including DNA transcription and recombination as well as telomere maintenance and dynamics, it is plausible to presume that cIF proteins as complementary constituents of the nuclear matrix participate in the cell- and tissue-specific regulation of these processes.
机译:细胞质中间丝(cIF)蛋白与单链(ss)DNA和RNA强烈相互作用,尤其是与富含G的序列相互作用。为了检验这种相互作用取决于特殊的核苷酸序列以及可能更高阶结构的ssDNA的假设,对通过新颖的“全ssDNA基因组PCR”技术通过RNA中间体产生的小鼠基因组ssDNA片段的随机混合物进行了三轮通过结合的ssDNA片段的中间PCR扩增,以生理离子强度与体外重组波形蛋白IF亲和结合。波形蛋白选择片段的核苷酸序列和计算机折叠分析表明,微卫星中的富集程度很高,主要是(GT)n型,端粒DNA和富含C / T的序列,但是,其中大多数不能折叠成稳定的茎环结构。由于富含G的序列在波形蛋白结合的部分中代表不足,因此必须假定此类序列需要分子内折叠或横向组装成多链结构才能与波形蛋白稳定相互作用,但在一定条件下不能充分满足这一要求选择实验因此,分析了一些波形蛋白选择的富含G的ssDNA片段和许多端粒模型在优化条件下形成分子间和分子内四链体(G4 DNA)以及与波形蛋白及其III型相互作用的能力。亲戚,神经胶质原纤维酸性蛋白和结蛋白。频移分析确实证明了cIF蛋白与平行的四链G4 DNA的差异结合,并以较低的亲和力与双分子G'2和单分子G'4 DNA构型结合,从而从四链到单链的过渡区发挥了作用。在结合反应中的附加作用。在这方面,cIF蛋白的结合活性与针对其他非规范DNA结构的结合活性相当,例如ds / ss DNA叉,三链DNA,四向连接DNA和Z-DNA,它们在与CIF相互作用中也涉及构型转变。细丝蛋白。 cIF蛋白与相应的非折叠的富含G的ssDNA的关联是微不足道的。考虑到ssDNA区域和G-四链体几乎普遍参与核过程,包括DNA转录和重组以及端粒的维持和动力学,可以假设cIF蛋白作为核基质的互补成分参与细胞和细胞的发育。这些过程的组织特异性调节。

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  • 来源
    《DNA and Cell Biology》 |2005年第2期|p.85-110|共26页
  • 作者单位

    Max-Planck-Institut fur Zellbiologie, Rosenhof, D-68526 Ladenburg, Germany.1Present address: Heinrich-Pette Institute for Experimental Virology and Immunology, Hamburg University, Hamburg, Germany.2Present address: Robert Wood Johnson Medical School, Department of Biochemistry, University of Medicine and Dentistry of New Jersey,Piscataway, New Jersey.3Present address: Max-Planck-Institut fur Medizinische Forschung, Heidelberg, Germany.4Present address: Institute for Cellular and Molecular Botany, Bonn University, Bonn, Germany.;

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  • 正文语种 eng
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  • 关键词

    Cytoplasmic intermediate filament (cIF);

    机译:细胞质中间丝(cIF);

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