Leitner F
Department of Microbiology, Michael Reese Hospital and Medical Center, Chicago, Illinois 60616, USA.
Biophys J. 1967 Nov;7(6):913-23. doi: 10.1016/S0006-3495(67)86629-3. Epub 2008 Dec 31.
At neutral pH, the rate of penicillinase synthesis by staphylococci declines gradually after removal of free inducer, while at pH 5.4 enzyme formation is generally linear for an extended period. Linear synthesis of penicillinase was observed at neutral pH in nonsaturating concentrations (1mug/ml) of actinomycin D. The rate of enzyme synthesis, corrected for inhibition of growth caused by the antibiotic, was relatively independent of the time of actinomycin addition. The lag preceding linear enzyme formation increased with the interval between induction and the addition of actinomycin. The findings are consistent with the concept that, at neutral pH, "operons" activated by induction are rapidly repressed, while at pH 5.4, this process is delayed. At a concentration of 4mug/ml, actinomycin D blocked penicillinase messenger synthesis and also elicited a short-lived acceleration of the increase of penicillinase activity in uninduced and, late after induction, in induced cultures. This effect did not require a functional genomic repressor mechanism since it occurred also in a penicillinase-constitutive strain. It required protein synthesis and could not be attributed to a greater enzyme stability in the presence of actinomycin. The results suggest enhanced penicillinase translation after addition of actinomycin D.
在中性pH值条件下,去除游离诱导剂后葡萄球菌合成青霉素酶的速率会逐渐下降,而在pH 5.4时,酶的形成在较长一段时间内通常呈线性。在中性pH值下,于非饱和浓度(1微克/毫升)的放线菌素D中观察到青霉素酶的线性合成。校正由抗生素引起的生长抑制后,酶的合成速率相对独立于放线菌素添加的时间。线性酶形成之前的延迟随着诱导与放线菌素添加之间的间隔而增加。这些发现与以下概念一致:在中性pH值下,由诱导激活的“操纵子”会迅速受到抑制,而在pH 5.4时,这一过程会延迟。在浓度为4微克/毫升时,放线菌素D阻断了青霉素酶信使核糖核酸的合成,并且在未诱导的培养物中以及诱导后期的诱导培养物中还引发了青霉素酶活性增加的短暂加速。这种效应不需要功能性的基因组阻遏机制,因为它在青霉素酶组成型菌株中也会发生。它需要蛋白质合成,并且不能归因于在放线菌素存在下酶的稳定性更高。结果表明添加放线菌素D后青霉素酶的翻译增强。