De Bernardin W, Koller T, Sogo J M
J Mol Biol. 1986 Oct 5;191(3):469-82. doi: 10.1016/0022-2836(86)90142-7.
In order to study the structure of chromatin during transcription, individual in-vivo transcribing simian virus 40 (SV40) minichromosomes were analyzed in the electron microscope after crosslinking the nascent RNA strands with different psoralen derivatives to the template DNA. Since psoralen crosslinks the DNA between nucleosomes, spreading of the crosslinked DNA and DNA-RNA complexes reveals single-stranded bubbles at positions where nucleosomes were located. We found that the transcribing SV40 minichromosomes contained a similar number of nucleosomes as did the minichromosomes without crosslinked nascent RNA. The nascent RNA was crosslinked in about equal proportions either in single-stranded bubbles of nucleosomal length or in continuously crosslinked regions between bubbles, in contrast with control experiments with ribosomal chromatin of Dictyostelium. Treatment of SV40 minichromosomes with 1.2 M-NaCl before and during photocrosslinking with psoralen led to the disappearance of the single-stranded bubbles. Since no bubbles could be detected at the attachment sites of the RNA molecules when the nucleosomes were disrupted in high salt, and since in about half of the molecules the RNA was attached to fully crosslinked linker DNA, we assume that the single-stranded bubbles with crosslinked RNA are not due to protection by the elongating RNA polymerase II complex, but are rather due to nucleosome-like structures. At the resolution level of single nucleosomes, these results imply for the first time that nucleosome-like structures (perhaps modified compared with "normal" nucleosomes) on SV40 minichromosomes do not prevent transcription elongation by RNA polymerase II.
为了研究转录过程中染色质的结构,在用不同的补骨脂素衍生物将新生RNA链与模板DNA交联后,在电子显微镜下对单个体内转录的猴病毒40(SV40)微型染色体进行了分析。由于补骨脂素使核小体之间的DNA交联,交联DNA和DNA-RNA复合物的铺展揭示了核小体所在位置的单链泡。我们发现,正在转录的SV40微型染色体所含核小体的数量与未交联新生RNA的微型染色体相似。与盘基网柄菌核糖体染色质的对照实验相比,新生RNA以大致相等的比例交联在核小体长度的单链泡中或泡之间的连续交联区域中。在用补骨脂素进行光交联之前和期间,用1.2 M NaCl处理SV40微型染色体导致单链泡消失。由于当核小体在高盐中被破坏时,在RNA分子的附着位点未检测到泡,并且由于在大约一半的分子中RNA附着于完全交联的连接子DNA,我们推测带有交联RNA的单链泡不是由于延伸的RNA聚合酶II复合物的保护,而是由于类核小体结构。在单核小体的分辨率水平上,这些结果首次表明SV40微型染色体上的类核小体结构(可能与“正常”核小体相比有所修饰)不会阻止RNA聚合酶II的转录延伸。