Gerth Ulf, Kirstein Janine, Mostertz Jörg, Waldminghaus Torsten, Miethke Marcus, Kock Holger, Hecker Michael
Institut für Mikrobiologie, Ernst-Moritz-Arndt-Universität, D-17487 Greifswald, Germany.
J Bacteriol. 2004 Jan;186(1):179-91. doi: 10.1128/JB.186.1.179-191.2004.
Clp-controlled proteolysis in Bacillus subtilis seems to play a substantial role, particularly under stress conditions. Calibrated Western blot analyses were used to estimate the approximate numbers of heat-inducible Clp molecules within a single cell. According to these numbers, the different Clp ATPases do not seem to compete for the proteolytic subunit ClpP. Coimmunoprecipitation experiments revealed the predicted specific ClpX-ClpP, ClpC-ClpP, and ClpE-ClpP interactions. ClpE and ClpX are rapidly degraded in wild-type cells during permanent heat stress but remained almost stable in a clpP mutant, suggesting ClpP-dependent degradation. In particular, ClpCP appeared to be involved in the degradation of the short-lived ClpE ATPase, indicating a negative "autoregulatory" circuit for this particular Clp ATPase at the posttranslational level. Analysis of the half-life of stress-inducible clp mRNAs during exponential growth and heat shock revealed precise regulation of the synthesis of each Clp protein at the posttranscriptional level as well to meet the needs of B. subtilis.
枯草芽孢杆菌中Clp控制的蛋白水解似乎起着重要作用,特别是在应激条件下。使用校准的蛋白质印迹分析来估计单个细胞内热诱导型Clp分子的大致数量。根据这些数量,不同的Clp ATP酶似乎不会竞争蛋白水解亚基ClpP。免疫共沉淀实验揭示了预测的特定ClpX-ClpP、ClpC-ClpP和ClpE-ClpP相互作用。在持续热应激期间,ClpE和ClpX在野生型细胞中迅速降解,但在clpP突变体中几乎保持稳定,表明是ClpP依赖性降解。特别是,ClpCP似乎参与了短命的ClpE ATP酶的降解,这表明在翻译后水平上,这种特定的Clp ATP酶存在负向“自调节”回路。对指数生长和热休克期间应激诱导型clp mRNA半衰期的分析表明,在转录后水平上,每种Clp蛋白的合成也受到精确调控,以满足枯草芽孢杆菌的需求。