首页> 外文期刊>DNA and Cell Biology >Intermediate Filaments Reconstituted from Vimentin, Desmin, and Glial Fibrillary Acidic Protein Selectively Bind Repetitive and Mobile DNA Sequences from a Mixture of Mouse Genomic DNA Fragments
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Intermediate Filaments Reconstituted from Vimentin, Desmin, and Glial Fibrillary Acidic Protein Selectively Bind Repetitive and Mobile DNA Sequences from a Mixture of Mouse Genomic DNA Fragments

机译:从波形蛋白,结蛋白和胶质纤维酸性蛋白重构的中间丝选择性地结合了小鼠基因组DNA片段混合物中的重复和移动DNA序列。

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Employing the whole-genome PCR technique, intermediate filaments (IFs) reconstituted from vimentin, desmin, and glial fibrillary acidic protein were shown to select repetitive and mobile DNA sequence elements from a mixture of mouse genomic DNA fragments. The bound fragments included major and minor satellite DNA, telomere DNA, minisatellites, microsatellites, short and long interspersed nucleotide elements (SINEs and LINEs), A-type particle elements, members of the mammalian retrotransposon-like (MaLR) family, and a series of repeats not assignable to major repetitive DNA families. The latter sequences were either similar to flanking regions of genes; possessed recombinogenic elements such as polypurine/polypyrimidine stretches, GT-rich arrays, or GGNNGG signals; or were characterized by the distribution of oligopurine and pyrimidine motifs whose sequential and vertical alignment resulted in patterns indicative of high recombination potentials of the respective sequences. The different IF species exhibited distinct quantitative differences in DNA selectivities. Complexes consisting of vimentin IFs and DNA fragments containing LINE, (GT)n microsatellite, and major satellite DNA sequences were saturable and dynamic and were formed with high efficiency only when the DNAs were partially denatured. The major-groove binder methyl green exerted a stronger inhibitory effect on the binding reaction than did the minor-groove binder distamycin A; the effects of the two compounds were additive. In addition, DNA footprinting studies revealed significant configurational changes in the DNA fragments on interaction with vimentin IFs. In the case of major satellite DNA, vimentin IFs provided protection of the T-rich strand from cleavage by DNase I, whereas the A-rich strand was totally degraded. Taken together, these observations suggest that IF protein(s) bind to double-stranded DNAs at existing single-stranded sites and, taking advantage of their helix-destabilizing potential, further unwind them via a cooperative effort of their N-terminal DNA-binding regions. A comparison of the present results with literature data, as well as a search in the NCBI database, showed that IF proteins are related to nuclear matrix attachment region (MAR)-binding proteins, and the DNA sequences they interact with are very similar or even identical to those involved in a plethora of DNA recombination and related repair events. On the basis of these comparisons, IF proteins are proposed to contribute in a global fashion, not only to genetic diversity, but also to genomic integrity, in addition to their role in gene expression.
机译:利用全基因组PCR技术,显示了从波形蛋白,结蛋白和神经胶质原纤维酸性蛋白重构的中间丝(IF),可从小鼠基因组DNA片段混合物中选择重复的和可移动的DNA序列元件。结合的片段包括主要和次要卫星DNA,端粒DNA,小卫星,微卫星,短和长散布的核苷酸元素(SINE和LINE),A型粒子元素,哺乳动物逆转座子样(MaLR)家族的成员以及一系列不能分配给主要重复DNA家族的重复序列。后一序列与基因的侧翼区域相似;具有重组元素,如聚嘌呤/聚嘧啶段,富含GT的阵列或GGNNGG信号;它们的特征是寡嘌呤和嘧啶基序的分布,它们的顺序和垂直比对导致图案指示各个序列的高重组潜力。不同的IF物种在DNA选择性方面表现出明显的定量差异。由波形蛋白IF和含有LINE,(GT)n微卫星和主要卫星DNA序列的DNA片段组成的复合物是饱和且动态的,只有当DNA部分变性后才能高效形成。大槽粘合剂甲基绿对结合反应的抑制作用强于小槽粘合剂二棉霉素A。两种化合物的作用是累加的。此外,DNA足迹研究显示与波形蛋白IF相互作用时,DNA片段的构型发生了显着变化。对于主要的卫星DNA,波形蛋白IFs可以保护富含T的链免受DNase I的切割,而富含A的链则被完全降解了。综上所述,这些观察结果表明,IF蛋白在现有单链位点与双链DNA结合,并利用其螺旋不稳定的潜力,通过其N端DNA结合的协同作用进一步解开它们。地区。将本结果与文献数据进行比较,并在NCBI数据库中进行搜索,结果表明IF蛋白与核基质附着区(MAR)结合蛋白有关,它们相互作用的DNA序列非常相似甚至与涉及大量DNA重组和相关修复事件的那些相同。在这些比较的基础上,提出了IF蛋白除了其在基因表达中的作用外,还以全球方式贡献于遗传多样性,还有助于基因组完整性。

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