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Interaction In Vitro of Type III Intermediate Filament Proteins with Triplex DNA

机译:III型中间丝蛋白与三链DNA的体外相互作用

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As previously shown, type III intermediate filaments (IFs) select from a mixture of linear mouse genomic DNA fragments mobile and repetitive, recombinogenic sequences that have also been identified in SDS-stable crosslinkage products of vimentin and DNA isolated from intact fibroblasts. Because these sequences also included homopurinehomopyrimidine (PuPy) tracts known to adopt triple-helical conformation under superhelical tension, and because IF proteins are single-stranded (ss) and supercoiled DNA-binding proteins, it was of interest whether they have a particular affinity for triplex DNA. To substantiate this, IF-selected DNA fragments harboring a (PuPy) segment and synthetic d(GA)n microsatellites were inserted into a vector plasmid and the constructs analyzed for their capacity to interact with IF proteins. Band shift assays revealed a substantially higher affinity of the IF proteins for the insert-containing plasmids than for the empty vector, with an activity decreasing in the order of vimentin > glial fibrillary acidic protein > desmin. In addition, footprint analyses performed with S1 nuclease, KMnO4, and OsO4/bipyridine showed that the (PuPy) inserts had adopted triplex conformation under the superhelical strain of the plasmids, and that the IF proteins protected the triple-helical insert sequences from nucleolytic cleavage and chemical modification. All these activities were largely reduced in extent when analyzed on linearized plasmid DNAs. Because intramolecular triplexes (H-DNA) expose single-stranded loops, and the prokaryotic ssDNA-binding proteins g5p and g32p also protected at least the Pu-strand of the (PuPy) inserts from nucleolytic degradation, it seemed likely that the IF proteins take advantage of their ssDNA-binding activity in interacting with H-DNA. However, in contrast to g5p and E. coli SSB, they produced no clear band shifts with single-stranded d(GA)20 and d(TC)20, so that the interactions rather appear to occur via the duplex-triplex and triplex-loop junctions of H-DNA. On the other hand, the IF proteins, and also g32p, promoted the formation of intermolecular triplexes from the duplex d[A(GA)20(TC)20T] and d(GA)20 and d(TC)20 single strands, with preference of the Py (PuPy) triplex motif, substantiating an affinity of the proteins for the triplex structure as such. This triplex-stabilizing effect of IF proteins also applies to the H-DNA of (PuPy) insert-containing plasmids, as demonstrated by the preservation of intramolecular triplex-vimentin complexes upon linearization of their constituent supercoiled DNAs, in contrast to poor complex formation from free, linearized plasmid DNA and vimentin. Considering that (PuPy) sequences are found near MAR/replication origins, in upstream enhancer and promoter regions of genes, and in recombination hot spots, these results might point to roles of IF proteins in DNA replication, transcription, recombination, and repair.
机译:如前所示,III型中间丝(IFs)从线性小鼠基因组DNA片段的混合物中选择,这些片段是可移动的,重复的,重组的序列,该序列也已在波形蛋白和从完整成纤维细胞分离的DNA的SDS稳定交联产物中确定。由于这些序列还包括已知在超螺旋张力下采用三螺旋构象的高嘌呤高嘧啶(PuPy)片段,并且由于IF蛋白是单链(ss)和超螺旋DNA结合蛋白,因此人们对它们是否具有特定的亲和力感兴趣三重DNA。为了证实这一点,将带有(PuPy)片段的IF选择的DNA片段和合成的d(GA)n微卫星插入到载体质粒中,并分析了构建体与IF蛋白相互作用的能力。带移分析显示,IF蛋白对含插入物的质粒的亲和力比对空载体的亲和力要高得多,且活性按波形蛋白>胶质纤维酸性蛋白> desmin的顺序降低。此外,用S1核酸酶,KMnO4和OsO4 /联吡啶进行的足迹分析表明(PuPy)插入片段在质粒的超螺旋菌株下采用了三链体构象,并且IF蛋白保护了三螺旋插入物序列不被核酸裂解。和化学修饰。在线性化质粒DNA上分析时,所有这些活性在很大程度上都降低了。因为分子内三链体(H-DNA)暴露单链环,并且原核ssDNA结合蛋白g5p和g32p至少也保护(PuPy)插入片段的Pu链免于核酸降解,所以IF蛋白似乎很可能ssDNA结合活性在与H-DNA相互作用中的优势。但是,与g5p和大肠杆菌SSB相比,它们在单链d(GA)20和d(TC)20时未产生明显的带移,因此相互作用似乎是通过双链-三链和三链- H-DNA的环状连接。另一方面,IF蛋白和g32p促进了双链体d [A(GA)20(TC)20T]和d(GA)20和d(TC)20单链分子间三链体的形成, Py(PuPy)三联体基序的偏好,证实了蛋白质对三联体结构的亲和力。 IF蛋白的这种三链体稳定作用也适用于含(PuPy)插入片段的质粒的H-DNA,正如分子内三链体波形蛋白复合物在其组成的超螺旋DNA线性化后的保存所证明的那样,这与由游离的线性化质粒DNA和波形蛋白。考虑到(PuPy)序列在MAR /复制起点附近,基因的上游增强子和启动子区域以及重组热点中发现,这些结果可能表明IF蛋白在DNA复制,转录,重组和修复中的作用。

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