Kash S F, Kellems R E
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas 77030.
Mol Cell Biol. 1994 Sep;14(9):6198-207. doi: 10.1128/mcb.14.9.6198-6207.1994.
Transcription arrest plays a key role in the regulation of the murine adenosine deaminase (ADA) gene, as well as a number of other cellular and viral genes. We have previously characterized the ADA intron 1 arrest site, located 145 nucleotides downstream of the transcription start site, with respect to sequence and elongation factor requirements. Here, we show that the optimal conditions for both intron 1 arrest and overall ADA transcription involve the addition of high concentrations of KCl soon after initiation. As we have further delineated the sequence requirements for intron 1 arrest, we have found that sequences downstream of the arrest site are unnecessary for arrest. Also, a 24-bp fragment containing sequences upstream of the arrest site is sufficient to generate arrest downstream of the adenovirus major late promoter only in the native orientation. Surprisingly, we found that deletion of sequences encompassing the ADA transcription start site substantially reduced intron 1 arrest, with no effect on overall levels of transcription. At the same time, deletion of sequences upstream of the TATA box had no significant effect on either process. We believe the start site mutations have disrupted either the assembly or the composition of the transcription complex such that intron 1 site read-through is now favored. This finding, coupled with the increase in overall transcription after high-concentration KCl treatment, allows us to further refine our model of ADA gene regulation.
转录停滞在小鼠腺苷脱氨酶(ADA)基因以及许多其他细胞和病毒基因的调控中起着关键作用。我们之前已经对ADA基因内含子1的停滞位点进行了表征,该位点位于转录起始位点下游145个核苷酸处,涉及序列和延伸因子需求。在此,我们表明内含子1停滞和整体ADA转录的最佳条件都涉及在起始后不久添加高浓度的KCl。随着我们进一步确定内含子1停滞的序列要求,我们发现停滞位点下游的序列对于停滞是不必要的。此外,一个包含停滞位点上游序列的24碱基对片段仅在天然方向上就足以在腺病毒主要晚期启动子下游产生停滞。令人惊讶的是,我们发现缺失包含ADA转录起始位点的序列会显著降低内含子1的停滞,而对整体转录水平没有影响。同时,TATA框上游序列的缺失对这两个过程均无显著影响。我们认为起始位点突变破坏了转录复合物的组装或组成,使得内含子1位点通读现在更受青睐。这一发现,再加上高浓度KCl处理后整体转录的增加,使我们能够进一步完善我们的ADA基因调控模型。