Jovanovich S B, Lebowitz J
Department of Microbiology, University of Alabama, Birmingham 35294.
J Bacteriol. 1987 Oct;169(10):4431-5. doi: 10.1128/jb.169.10.4431-4435.1987.
We have estimated the extent to which relaxation of supercoiling by the DNA gyrase inhibitor coumermycin A1 affects gene expression in vivo in Salmonella typhimurium. We isolated a set of Mu d1-8 Lac+ operon fusions to random promoters and measured the effect of coumermycin A1 on the expression of 67 fusions. The differential rate of synthesis was increased for 70% of the fusions and decreased for 16%, and 13% of the fusions had less than a 25% change in expression. The coumermycin A1 response was found to correlate well (P = 0.067) with the basal level of expression such that coumermycin A1 tended to stimulate fusions with low expression and inhibit those with high expression. Since the vast majority of the fusions were sensitive to coumermycin A1 addition and, therefore, to the level of supercoiling, these results indicate that if the level of supercoiling were to vary under physiological conditions, then major readjustments in the cellular economy would occur.
我们已经估算了DNA促旋酶抑制剂香豆霉素A1引起的超螺旋松弛在体内对鼠伤寒沙门氏菌基因表达的影响程度。我们分离出一组与随机启动子融合的Mu d1-8 Lac+操纵子,并测定了香豆霉素A1对67个融合体表达的影响。70%的融合体合成差异率增加,16%的融合体合成差异率降低,13%的融合体表达变化小于25%。发现香豆霉素A1反应与基础表达水平密切相关(P = 0.067),以至于香豆霉素A1倾向于刺激低表达的融合体并抑制高表达的融合体。由于绝大多数融合体对添加香豆霉素A1敏感,因此对超螺旋水平敏感,这些结果表明,如果超螺旋水平在生理条件下发生变化,那么细胞代谢将发生重大调整。