Hunke Sabine, Betton Jean-Michel
Humboldt-Universität zu Berlin, Institut für Biologie/Bakterienphysiologie, Chausseestr. 117, D-10115 Berlin, Germany.
Mol Microbiol. 2003 Dec;50(5):1579-89. doi: 10.1046/j.1365-2958.2003.03785.x.
We previously characterized a defective-folding mutant of maltose-binding protein of Escherichia coli, MalE31, which formed periplasmic inclusion bodies. Here, we show that MalE31 aggregation does not affect bacterial growth at 30 degrees C but is lethal at 37 degrees C. Surprisingly, under mild heat shock conditions at 42 degrees C, inclusion bodies are degraded and bacterial growth is restored. One physiological consequence for the cells overproducing MalE31 was to induce an extracytoplasmic stress response by increasing the expression of the heat shock protease DegP via the CpxA/CpxR two-component signalling pathway. Furthermore, we show that the Cpx response is required to rescue the cells from the toxicity mediated by MalE31. Finally, expression of highly destabilized MalE variants that do not aggregate in the periplasm also induces the Cpx pathway, indicating that inclusion body formation is not necessary to activate this specific extracytoplasmic stress regulatory system.
我们之前鉴定了大肠杆菌麦芽糖结合蛋白的一个错误折叠突变体MalE31,它会在周质中形成包涵体。在此,我们表明MalE31的聚集在30℃时不影响细菌生长,但在37℃时是致死的。令人惊讶的是,在42℃的温和热休克条件下,包涵体会降解且细菌生长得以恢复。过量产生MalE31的细胞的一个生理后果是通过CpxA/CpxR双组分信号通路增加热休克蛋白酶DegP的表达来诱导胞外应激反应。此外,我们表明Cpx反应是拯救细胞免受MalE31介导的毒性所必需的。最后,在周质中不聚集的高度不稳定的MalE变体的表达也会诱导Cpx途径,这表明包涵体形成对于激活这个特定的胞外应激调节系统并非必要。