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通过能指导真核RNA聚合酶II精确起始的提取物将猴病毒40 DNA转化为有序核蛋白结构。

Conversion of simian virus 40 DNA to ordered nucleoprotein structures by extracts that direct accurate initiation by eukaryotic RNA polymerase II.

作者信息

Sinha S N, Hellwig R J, Allison D P, Niyogi S K

出版信息

Nucleic Acids Res. 1982 Sep 25;10(18):5533-52. doi: 10.1093/nar/10.18.5533.

Abstract

Interaction of SV40 DNA with three different HeLa cell extracts capable of directing correct initiation of transcription leads to the formation of ordered nucleoprotein complexes that are structurally similar to SV40 minichromosomes and eukaryotic chromatin. These nucleoprotein complexes can be conveniently purified by band sedimentation or gel filtration. Their sedimentation and elution properties resemble those of SV40 minichromosomes. Electron microscopy of purified complexes shows beaded structures that are sensitive to proteases, resulting in recovery of naked, largely undegraded DNA. Contour lengths and compaction ratios of these nucleoprotein complexes are similar to those of authentic SV40 minichromosomes. Their digestion patterns with micrococcal nuclease and pancreatic DNase I resemble those of SV40 minichromosomes. Such nucleosome-like structures can also be obtained with linear SV40 DNA. Unlike nucleosomes, no histones could be detected in the purified nucleoprotein complexes. Non-histone chromosomal protein fractions (high mol. wt. and free of high mobility group proteins) prepared from the HeLa cell extracts can also generate similar ordered structures. We conclude that ordered nucleoprotein structures with certain common characteristics can be formed by interaction of DNA with non-histone chromosomal proteins as well as with histones. Only the former structures are generated in currently used cell-free transcription systems. It appears that only those purified nucleoprotein complexes containing the promoter can be actively transcribed in the presence of additional cell-free extract, suggesting that such structures and their protein components may be important in transcription.

摘要

SV40 DNA与三种能够指导正确转录起始的不同HeLa细胞提取物相互作用,导致形成有序的核蛋白复合物,其结构与SV40微型染色体和真核染色质相似。这些核蛋白复合物可以通过区带沉降或凝胶过滤方便地纯化。它们的沉降和洗脱特性类似于SV40微型染色体。纯化复合物的电子显微镜观察显示出对蛋白酶敏感的串珠状结构,从而回收了裸露的、基本未降解的DNA。这些核蛋白复合物的轮廓长度和压缩比与真实的SV40微型染色体相似。它们用微球菌核酸酶和胰DNA酶I的消化模式类似于SV40微型染色体。用线性SV40 DNA也可以获得这种类似核小体的结构。与核小体不同,在纯化的核蛋白复合物中未检测到组蛋白。从HeLa细胞提取物中制备的非组蛋白染色体蛋白组分(高分子量且不含高迁移率族蛋白)也能产生类似的有序结构。我们得出结论,DNA与非组蛋白染色体蛋白以及组蛋白相互作用可以形成具有某些共同特征的有序核蛋白结构。目前使用的无细胞转录系统中只产生前者结构。似乎只有那些含有启动子的纯化核蛋白复合物在加入额外的无细胞提取物时才能被积极转录,这表明这些结构及其蛋白质成分在转录中可能很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20ff/320901/5f9cdd6bd832/nar00387-0153-a.jpg

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