Centre for Medical Biotechnology, FB Biology and Geography, University Duisburg-Essen, 45117 Essen, Germany.
J Mol Biol. 2010 Apr 9;397(4):957-66. doi: 10.1016/j.jmb.2010.02.027. Epub 2010 Feb 22.
The PDZ protease DegS senses mislocalized outer membrane proteins and initiates the sigmaE pathway in the bacterial periplasm. This unfolded protein response pathway is activated by processing of the anti-sigma factor RseA by DegS and other proteases acting downstream of DegS. DegS mediates the rate-limiting step of sigma E induction and its activity must be highly specific and tightly regulated. While DegS is structurally and biochemically well studied, the determinants of its pronounced substrate specificity are unknown. We therefore performed swapping experiments by introducing elements of the homologous but unspecific PDZ protease DegP. Introduction of loop L2 of DegP into DegS converted the enzyme into a non-specific protease, while swapping of PDZ domains did not. Therefore, loop L2 of the protease domain is a key determinant of substrate specificity. Interestingly, swapping of loop L2 did not affect the tight regulation of DegS. In addition, the combined introduction of loop L2 and PDZ domain 1 of DegP into DegS converted DegS even further into a DegP-like protease. These and other data suggest that homologous enzymes with distinct activities and regulatory features can be converted by simple genetic modifications.
PDZ 蛋白酶 DegS 可感应错误定位的外膜蛋白,并在细菌周质中启动 sigmaE 途径。该未折叠蛋白反应途径通过 DegS 和 DegS 下游的其他蛋白酶对反西格玛因子 RseA 的加工而被激活。DegS 介导 sigma E 诱导的限速步骤,其活性必须具有高度特异性和严格的调控。虽然 DegS 在结构和生化方面得到了很好的研究,但它显著的底物特异性的决定因素尚不清楚。因此,我们通过引入同源但非特异性的 PDZ 蛋白酶 DegP 的元件来进行交换实验。将 DegP 的环 L2 引入 DegS 中,将酶转化为非特异性蛋白酶,而 PDZ 结构域的交换则没有。因此,蛋白酶结构域的环 L2 是决定底物特异性的关键因素。有趣的是,环 L2 的交换并不影响 DegS 的紧密调控。此外,将 DegP 的环 L2 和 PDZ 结构域 1 同时引入 DegS 中,甚至会进一步将 DegS 转化为 DegP 样蛋白酶。这些和其他数据表明,具有不同活性和调节特征的同源酶可以通过简单的遗传修饰来转换。