Miller J B, Scott D J, Amy N K
J Bacteriol. 1987 May;169(5):1853-60. doi: 10.1128/jb.169.5.1853-1860.1987.
The chlD gene in Escherichia coli is required for the incorporation and utilization of molybdenum when the cells are grown with low concentrations of molybdate. We constructed chlD-lac operon fusions and measured expression of the fusion, Mo cofactor, and nitrate reductase activities under a variety of growth conditions. The chlD-lac fusion was highly expressed when cells were grown with less than 10 nm molybdate. Increasing concentrations of molybdate caused loss of activity, with less than 5% of the activity remaining at 500 nM molybdate; when tungstate replaced molybdate, it had an identical affect on chlD expression. Expression of chlD-lac was increased in cells grown with nitrate. Strains with chlD-lac plus an additional mutation in a chl or nar gene were constructed to test whether the regulation of chlD-lac required the concerted action of gene products involved with Mo cofactor or nitrate reductase synthesis. Mutations in narL prevented the increase in activity in response to nitrate; mutations in chlB, narC, or narI resulted in partial constitutive expression of the chlD-lac fusion: the fusion was regulated by molybdate, but it no longer required the presence of nitrate for maximal activity. Mutations in chlA, chlE, or chlG which affect Mo cofactor metabolism, did not affect the expression of chlD-lac.
当大肠杆菌在低浓度钼酸盐条件下生长时,chlD基因对于钼的掺入和利用是必需的。我们构建了chlD - 乳糖操纵子融合体,并在多种生长条件下测量了融合体的表达、钼辅因子以及硝酸还原酶的活性。当细胞在低于10 nM钼酸盐条件下生长时,chlD - 乳糖融合体高度表达。钼酸盐浓度增加导致活性丧失,在500 nM钼酸盐时活性仅剩余不到5%;当钨酸盐替代钼酸盐时,它对chlD表达有相同影响。在以硝酸盐为生长底物的细胞中,chlD - 乳糖的表达增加。构建了带有chlD - 乳糖且chl或nar基因有额外突变的菌株,以测试chlD - 乳糖的调控是否需要参与钼辅因子或硝酸还原酶合成的基因产物协同作用。narL基因突变阻止了对硝酸盐响应的活性增加;chlB、narC或narI基因突变导致chlD - 乳糖融合体部分组成型表达:该融合体受钼酸盐调控,但不再需要硝酸盐的存在来实现最大活性。影响钼辅因子代谢的chlA、chlE或chlG基因突变不影响chlD - 乳糖的表达。