Chang Chun-Yang, Hu Hui-Ting, Tsai Chih-Hsuan, Wu Whei-Fen
Department of Agricultural Chemistry, College of Bio-Resource and Agriculture, National Taiwan University, Taipei, Taiwan, ROC.
Department of Agricultural Chemistry, College of Bio-Resource and Agriculture, National Taiwan University, Taipei, Taiwan, ROC.
Microbiol Res. 2016 Mar;184:42-50. doi: 10.1016/j.micres.2016.01.001. Epub 2016 Jan 16.
In Escherichia coli, RcsA, a positive activator for transcription of cps (capsular polysaccharide synthesis) genes, is degraded by the Lon protease. In lon mutant, the accumulation of RcsA leads to overexpression of capsular polysaccharide. In a previous study, overproduction of ClpYQ(HslUV) protease represses the expression of cpsB∷lacZ, but there has been no direct observation demonstrating that ClpYQ degrades RcsA. By means of a MBP-RcsA fusion protein, we showed that RcsA activated cpsB∷lacZ expression and could be rapidly degraded by Lon protease in SG22622 (lon(+)). Subsequently, the comparative half-life experiments performed in the bacterial strains SG22623 (lon) and AC3112 (lon clpY clpQ) indicated that the RcsA turnover rate in AC3112 was relatively slow and RcsA was stable at 30°C or 41°C. In addition, ClpY could interact with RscA in an in vitro pull-down assay, and the more rapid degradation of RcsA was observed in the presence of ClpYQ protease at 41°C. Thus, we conclude that RcsA is indeed proteolized by ClpYQ protease.
在大肠杆菌中,RcsA是cps(荚膜多糖合成)基因转录的正激活因子,它会被Lon蛋白酶降解。在lon突变体中,RcsA的积累导致荚膜多糖的过度表达。在先前的一项研究中,ClpYQ(HslUV)蛋白酶的过量产生会抑制cpsB∷lacZ的表达,但尚无直接观察结果表明ClpYQ能降解RcsA。通过一种MBP-RcsA融合蛋白,我们发现RcsA能激活cpsB∷lacZ的表达,并且在SG22622(lon(+))中可被Lon蛋白酶快速降解。随后,在细菌菌株SG22623(lon)和AC3112(lon clpY clpQ)中进行的比较半衰期实验表明,AC3112中RcsA的周转速率相对较慢,且RcsA在30°C或41°C时是稳定的。此外,在体外下拉实验中ClpY能与RscA相互作用,并且在41°C存在ClpYQ蛋白酶的情况下观察到RcsA的降解更快。因此,我们得出结论,RcsA确实会被ClpYQ蛋白酶蛋白水解。