首页> 外文期刊>DNA and Cell Biology >Isolation of SDS-Stable Complexes of the Intermediate Filament Protein Vimentin with Repetitive, Mobile, Nuclear Matrix Attachment Region, and Mitochondrial DNA Sequence Elements from Cultured Mouse and Human Fibroblasts
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Isolation of SDS-Stable Complexes of the Intermediate Filament Protein Vimentin with Repetitive, Mobile, Nuclear Matrix Attachment Region, and Mitochondrial DNA Sequence Elements from Cultured Mouse and Human Fibroblasts

机译:从培养的小鼠和人类成纤维细胞中分离具有重复,移动,核基质附着区和线粒体DNA序列元件的中间丝蛋白波形蛋白SDS稳定复合物

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Crosslinkage of vimentin to DNA in mouse L929 cells by formaldehyde and isolation of SDS-stable DNA–vimentin complexes from normal L929 cells and mouse and human embryo fibroblasts indicated close spatial relations between these components in the intact cell. The adducts, obtained by immunoprecipitation with anti-vimentin antibody, contained substantial quantities, not only of repetitive and mobile sequence elements such as centromeric satellite DNA, telomere DNA, microsatellites and minisatellites, long and short interspersed nucleotide elements, and retroposons, but also of mitochondrial (mt) DNA. Because the SDS-stable complexes could be isolated with distinctly higher yields from oxidatively stressed, senescent fibroblasts and were dissociated by boiling, they possibly arose from accidental condensation reactions mediated by unsaturated and dialdehydes, products of free radical-induced lipid peroxidation. They can therefore be considered vestiges of a general interaction of vimentin with cellular DNA. The sequence patterns of their DNA fragments were similar to those of extrachromosomal circular and linear DNA, including retroviral elements, markers and enhancers of genomic instability that also occur in the cytoplasm and are able to transport vimentin into the nucleus. Many of the fragments were also remarkably similar to AT-rich nuclear matrix attachment regions (MARs) in that they contained, in addition to various mobile elements, a palette of typical MAR motifs. With its tendency to multimerize and to interact with single-stranded and supercoiled DNA, vimentin thus behaves like a nuclear matrix protein and may as such participate in a variety of nuclear matrix-associated processes such as replication, recombination, repair, and transcription of DNA. These activities seem to be extendible to the mitochondrial compartment, as vimentin was also crosslinked to mtDNA, preferentially to its D-loop and hypervariable main control region. These sites are prone to point and deletion mutations and, like nuclear MARs, are associated with the cyto-karyomatrix. Moreover, as a developmentally regulated and tissue-specific cyto-karyomatrix protein, vimentin may contribute to the organization of chromatin, including centromeric and telomeric heterochromatin at the nuclear periphery, with all its consequences for genomic activities during embryogenesis and in adulthood of vertebrates. However, because of its high affinity for hypervariable, recombinogenic DNA sequences, vimentin is proposed to play a major role in both the preservation and the evolution of the nuclear and mitochondrial genome.
机译:波形蛋白与甲醛在小鼠L929细胞中的交联以及从正常L929细胞,小鼠和人类胚胎成纤维细胞中分离出的SDS稳定的DNA-波形蛋白复合物表明完整细胞中这些成分之间的紧密空间关系。通过抗波形蛋白抗体免疫沉淀获得的加合物,不仅包含大量的重复和移动序列元素,例如着丝粒卫星DNA,端粒DNA,微卫星和微卫星,长短穿插的核苷酸元素以及逆转录子,而且还包含大量。线粒体(mt)DNA。由于SDS稳定的复合物可以从氧化应激的衰老成纤维细胞中分离出来,并且产率高得多,并且可以通过沸腾解离,因此它们可能是由自由基引起的脂质过氧化作用的不饱和和二醛介导的意外缩合反应引起的。因此,它们可以被视为波形蛋白与细胞DNA的一般相互作用的痕迹。它们的DNA片段的序列模式与染色体外环状和线性DNA的序列模式相似,包括逆转录病毒元件,基因组不稳定的标记和增强子,它们也存在于细胞质中,并且能够将波形蛋白转运到细胞核中。许多片段还与富含AT的核基质附着区(MAR)非常相似,因为它们除了包含各种可移动元素外,还包含典型MAR图案的调色板。由于波形蛋白具有与单链和超螺旋DNA多聚并相互作用的趋势,因此其行为像核基质蛋白一样,因此可能参与多种与核基质相关的过程,例如DNA的复制,重组,修复和转录。 。这些活性似乎可扩展到线粒体区室,因为波形蛋白也与mtDNA交联,优先与D环和高变主控制区交联。这些位点容易出现点和缺失突变,并且像核MARs一样与细胞核基质有关。此外,波形蛋白作为一种发育受调控的组织特异性细胞核基质蛋白,可能促进染色质的组织,包括核外围的着丝粒和端粒异染色质,并对其在胚胎发生和脊椎动物成年期间的基因组活性产生所有影响。但是,由于波形蛋白对高变的重组DNA序列具有很高的亲和力,因此波形蛋白在核和线粒体基因组的保存和进化中均起着重要作用。

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