Daigle F, Forget C, Martin C, Drolet M, Tessier M C, Dezfulian H, Harel J
Department of Pathology and Microbiology, University of Montreal, St. Hyacinthe, Québec, Canada.
Res Microbiol. 2000 Sep;151(7):563-74. doi: 10.1016/s0923-2508(00)00226-6.
Escherichia coli O115:F165 strains are associated with septicaemia in young pigs and possess at least two types of fimbriae. F165(1) fimbriae belong to the P fimbrial family and F165(2) fimbriae belong to the S fimbrial family. Regulatory regions of foo (F165(1)) and fot (F165(2)) fimbrial gene clusters from wild-type strain 4787 were sequenced and characterised. Expression of F165(1) and F165(2) fimbrial genes was analysed by using lacZ and/or luxAB as reporter genes under the control of the native fimbrial promoters. Differential expression of fimbrial genes was observed. Global regulatory mechanisms such as catabolite repression, leucine-responsive regulatory protein (Lrp), methylation and DNA supercoiling were demonstrated to influence foo and fot expression. foo and fot expression was optimal at 37 degrees C and under aerobic conditions. Expression of foo was higher on minimal medium, whereas fot expression was higher on complex Luria-Bertani medium. This could reflect an in vivo differential expression.
大肠杆菌O115:F165菌株与幼猪败血症有关,且至少拥有两种菌毛类型。F165(1)菌毛属于P菌毛家族,F165(2)菌毛属于S菌毛家族。对野生型菌株4787的foo(F165(1))和fot(F165(2))菌毛基因簇的调控区域进行了测序和特征分析。以lacZ和/或luxAB作为报告基因,在天然菌毛启动子的控制下,分析了F165(1)和F165(2)菌毛基因的表达。观察到菌毛基因的差异表达。已证明诸如分解代谢物阻遏、亮氨酸应答调节蛋白(Lrp)、甲基化和DNA超螺旋等全局调控机制会影响foo和fot的表达。foo和fot的表达在37℃和有氧条件下最为适宜。foo在基本培养基上的表达较高,而fot在复杂的Luria-Bertani培养基上的表达较高。这可能反映了体内的差异表达。