Bhargava P
Centre for Cellular and Molecular Biology, Hyderabad, India.
Protein Sci. 1993 Dec;2(12):2246-58. doi: 10.1002/pro.5560021224.
The sulfhydryl-specific fluorescence probe 1,5-IAEDANS (5-(2-((iodoacetyl)amino)ethyl)amino-naphthalene-1-sulfonic acid) was attached to the single cysteine of H3, and reconstituted fluorescent mononucleosomes were used as the template for in vitro transcription by the yeast RNA polymerase II (pol II). DNase I digestion analysis revealed that transcription of nucleosomes by pol II resulted in an overall loosening of the structure. Monitoring the transcription event by steady-state fluorescence analysis showed that nucleosomes only partially open during transcription. This opening is transient in nature, and nucleosomes close back as soon as the pol II falls off the template. Thus, using the technique of fluorescence spectroscopy, partial opening of nucleosome structure could be differentiated from complete dissociation into free DNA and histone octamer, a distinction that may not be possible by techniques like gel electrophoresis. Time-resolved fluorescence emission spectroscopy suggested that during read-through of the template by the pol II, histone octamers do not fall off the DNA. Only minor conformational changes within the histone octamer take place to accommodate the transcribing polymerase.
巯基特异性荧光探针1,5-IAEDANS(5-(2-((碘乙酰基)氨基)乙基)氨基萘-1-磺酸)连接到H3的单个半胱氨酸上,重组的荧光单核小体用作酵母RNA聚合酶II(pol II)体外转录的模板。DNase I消化分析表明,pol II对核小体的转录导致结构整体松弛。通过稳态荧光分析监测转录事件表明,核小体在转录过程中仅部分打开。这种打开本质上是短暂的,一旦pol II从模板上脱落,核小体就会重新闭合。因此,利用荧光光谱技术,可以区分核小体结构的部分打开和完全解离成游离DNA和组蛋白八聚体,而凝胶电泳等技术可能无法做到这种区分。时间分辨荧光发射光谱表明,在pol II通读模板的过程中,组蛋白八聚体不会从DNA上脱落。组蛋白八聚体内仅发生微小的构象变化以适应转录中的聚合酶。