Lee Kyunghee, Choi Hyojung, Im Hana
Department of Chemistry, Sejong University, Seoul, 143 747, Korea.
Curr Microbiol. 2009 Aug;59(2):160-6. doi: 10.1007/s00284-009-9412-0. Epub 2009 May 21.
Trigger factor (TF) plays a key role as a molecular chaperone with a peptidyl-prolyl cis-trans isomerase (PPIase) activity by which cells promote folding of newly synthesized proteins coming out of ribosomes. Since psychrophilic bacteria grow at a quite low temperature, between 4 and 15 degrees C, TF from such bacteria was investigated and compared with that of mesophilic bacteria E. coli in order to offer an explanation of cold-adaptation at a molecular level. Using a combination of gradient PCRs with homologous primers and LA PCR in vitro cloning technology, the tig gene was fully identified from Psychromonas arctica, whose genome sequence is not yet available. The resulting amino acid sequence of the TF was compared with other homologous TFs using sequence alignments to search for common domains. In addition, we have developed a protein expression system, by which TF proteins from P. arctica (PaTF) were produced by IPTG induction upon cloning the tig gene on expression vectors, such as pAED4. We have further examined the role of expressed psychrophilic PaTF on survival against cold treatment at 4 degrees C. Finally, we have attempted the in vitro biochemical characterization of TF proteins with His-tags expressed in a pET system, such as the PPIase activity of PaTF protein. Our results demonstrate that the expressed PaTF proteins helped cells survive against cold environments in vivo and the purified PaTF in vitro display the functional PPIase activity in a concentration dependent manner.
触发因子(TF)作为一种具有肽基脯氨酰顺反异构酶(PPIase)活性的分子伴侣发挥着关键作用,细胞通过该活性促进核糖体上新合成蛋白质的折叠。由于嗜冷细菌在相当低的温度(4至15摄氏度)下生长,因此对来自此类细菌的TF进行了研究,并与嗜温细菌大肠杆菌的TF进行了比较,以便在分子水平上解释冷适应性。通过结合使用同源引物的梯度PCR和体外克隆技术LA PCR,从北极嗜冷单胞菌中完全鉴定出tig基因,其基因组序列尚未可知。使用序列比对将所得TF的氨基酸序列与其他同源TF进行比较,以寻找共同结构域。此外,我们开发了一种蛋白质表达系统,通过该系统,在将tig基因克隆到表达载体(如pAED4)上后,通过IPTG诱导产生来自北极嗜冷单胞菌的TF蛋白(PaTF)。我们进一步研究了表达的嗜冷PaTF在4摄氏度冷处理下的存活作用。最后,我们尝试对在pET系统中表达的带有His标签的TF蛋白进行体外生化特性分析,例如PaTF蛋白的PPIase活性。我们的结果表明,表达的PaTF蛋白在体内帮助细胞在寒冷环境中存活,并且体外纯化的PaTF以浓度依赖的方式显示出功能性PPIase活性。