Turgay K, Hahn J, Burghoorn J, Dubnau D
Department of Endocrinology and Reproduction, Faculty of Medicine, Erasmus University, Rotterdam, The Netherlands.
EMBO J. 1998 Nov 16;17(22):6730-8. doi: 10.1093/emboj/17.22.6730.
Competence is a physiological state, distinct from sporulation and vegetative growth, that enables cells to bind and internalize transforming DNA. The transcriptional regulator ComK drives the development of competence in Bacillus subtilis. ComK is directly required for its own transcription as well as for the transcription of the genes that encode DNA transport proteins. When ComK is sequestered by binding to a complex of the proteins MecA and ClpC, the positive feedback loop leading to ComK synthesis is interrupted. The small protein ComS, produced as a result of signaling by a quorum-sensing two-component regulatory pathway, triggers the release of ComK from the complex, enabling comK transcription to occur. We show here, based on in vivo and in vitro experiments, that ComK accumulation is also regulated by proteolysis and that binding to MecA targets ComK for degradation by the ClpP protease in association with ClpC. The release of ComK from binding by MecA and ClpC, which occurs when ComS is synthesized, protects ComK from proteolysis. Following this release, the rates of MecA and ComS degradation by ClpCP are increased in our in vitro system. In this novel system, MecA serves to recruit ComK to the ClpCP protease and connects ComK degradation to the quorum-sensing signal-transduction pathway, thereby regulating a key developmental process. This is the first regulated degradation system in which a specific targeting molecule serves such a function.
感受态是一种生理状态,与芽孢形成和营养生长不同,它使细胞能够结合并内化转化DNA。转录调节因子ComK驱动枯草芽孢杆菌感受态的发育。ComK对于其自身的转录以及编码DNA转运蛋白的基因的转录是直接必需的。当ComK通过与蛋白质MecA和ClpC的复合物结合而被隔离时,导致ComK合成的正反馈回路被中断。作为群体感应双组分调节途径信号传导的结果而产生的小蛋白ComS,触发ComK从复合物中释放,使comK转录得以发生。我们在此基于体内和体外实验表明,ComK的积累也受蛋白水解调节,并且与MecA的结合将ComK靶向由ClpP蛋白酶与ClpC联合进行的降解。当合成ComS时发生的ComK从与MecA和ClpC的结合中释放,保护ComK不被蛋白水解。释放后,在我们的体外系统中ClpCP对MecA和ComS的降解速率增加。在这个新系统中,MecA用于将ComK募集到ClpCP蛋白酶,并将ComK降解与群体感应信号转导途径联系起来,从而调节一个关键的发育过程。这是第一个由特定靶向分子发挥这种功能的受调控降解系统。