Banditt M, Koller T, Sogo J M
Institute of Cell Biology, Swiss Federal Institute of Technology, ETH-Hönggerberg, CH-8093 Zürich, Switzerland.
Mol Cell Biol. 1999 Jul;19(7):4953-60. doi: 10.1128/MCB.19.7.4953.
We used the psoralen gel retardation assay and Northern blot analysis in an in vivo yeast system to analyze effects of rDNA enhancer deletions on the chromatin structure and the transcription of tagged rDNA units. We found that upon deletion of a single enhancer element, transcription of the upstream and downstream rRNA gene was reduced by about 50%. Although removing both flanking enhancers of an rRNA gene led to a further reduction in transcription levels, a significant amount of transcriptional activity remained, either resulting from the influence of more distantly located enhancer elements or reflecting the basal activity of the polymerase I promoter within the nucleolus. Despite the reduction of transcriptional activity upon enhancer deletion, the activation frequency (proportion of nonnucleosomal to nucleosomal gene copies in a given cell culture) of the tagged rRNA genes was not significantly altered, as determined by the psoralen gel retardation assay. This is a strong indication that, within the nucleolus, the yeast rDNA enhancer functions by increasing transcription rates of active rRNA genes and not by activating silent transcription units.
我们在体内酵母系统中使用补骨脂素凝胶阻滞分析和Northern印迹分析,以分析rDNA增强子缺失对染色质结构和标记的rDNA单元转录的影响。我们发现,缺失单个增强子元件后,上游和下游rRNA基因的转录降低了约50%。虽然去除rRNA基因的两侧增强子会导致转录水平进一步降低,但仍存在大量转录活性,这要么是由于更远距离的增强子元件的影响,要么反映了核仁内聚合酶I启动子的基础活性。尽管增强子缺失后转录活性降低,但通过补骨脂素凝胶阻滞分析确定,标记的rRNA基因的激活频率(给定细胞培养物中非核小体基因拷贝与核小体基因拷贝的比例)没有显著改变。这有力地表明,在核仁内,酵母rDNA增强子通过提高活性rRNA基因的转录速率起作用,而不是通过激活沉默转录单元起作用。