Gallego F, Fernandez-Busquets X, Daban J R
Departament de Bioquímica i Biologia Molecular, Facultad de Ciències, Universitat Autónoma de Barcelona, Bellaterra, Spain.
Biochemistry. 1995 May 23;34(20):6711-9. doi: 10.1021/bi00020a016.
We have used a linear DNA template (239 bp) containing a nucleosome positioning sequence (NX1) downstream of the T7 RNA polymerase promoter to study the mechanism of transcription elongation through a nucleosome. Under ionic strength approaching physiological conditions we have observed that transcription causes nucleosome dissociation and histone redistribution within the template. We have examined the role of the different elements that, in principle, could induce nucleosome dissociation during transcription. The high affinity of histones for single-stranded DNA observed in titration experiments performed using the purified (+) and (-) strands of the NX1 fragment suggests that nucleosome dissociation is not due to the formation of segments of single-stranded DNA by RNA polymerase in the elongation process. Furthermore, our results show that although RNA can interact with core histones, the synthesized RNA is not bound to the histones dissociated by transcription. Our results indicate that core histones released during transcription can be bound to naked DNA and chromatin (with or without histones H1-H5). From the dynamic properties of excess histones bound to chromatin, we suggest a nucleosome transcription mechanism in which displaced histones are transiently bound to chromatin and finally are reassembled with DNA after the passage of the polymerase.
我们使用了一种线性DNA模板(239 bp),该模板在T7 RNA聚合酶启动子下游包含一个核小体定位序列(NX1),以研究转录延伸通过核小体的机制。在接近生理条件的离子强度下,我们观察到转录会导致模板内的核小体解离和组蛋白重新分布。我们研究了原则上可能在转录过程中诱导核小体解离的不同元件的作用。在使用NX1片段的纯化(+)链和(-)链进行的滴定实验中观察到组蛋白对单链DNA的高亲和力,这表明核小体解离不是由于RNA聚合酶在延伸过程中形成单链DNA片段所致。此外,我们的结果表明,尽管RNA可以与核心组蛋白相互作用,但合成的RNA并不与转录解离的组蛋白结合。我们的结果表明,转录过程中释放的核心组蛋白可以与裸DNA和染色质(有或没有组蛋白H1-H5)结合。根据与染色质结合的过量组蛋白的动态特性,我们提出了一种核小体转录机制,其中被置换的组蛋白暂时与染色质结合,最终在聚合酶通过后与DNA重新组装。