Shen Li, Li Maixiang, Zhang You-Xun
Section of Infectious Diseases, Department of Medicine, Boston Medical Center, Boston University School of Medicine, Boston, Massachusetts 02118, USA.
Microbiology (Reading). 2004 Jan;150(Pt 1):205-215. doi: 10.1099/mic.0.26734-0.
The rpsD gene of Chlamydia trachomatis encodes the alternative sigma factor sigma28, which bears strong homology to many bacterial sigma factors, including Escherichia coli sigma8 and Bacillus subtilis sigmaB and sigmaD. Recently, a sigma28 promoter was identified upstream of the late-cycle-expressed gene hctB, which encodes the Chlamydia-histone-like protein 2 (Yu & Tan, 2003). In this study it is shown that the product of chlamydial rpsD is an E. coli sigma28 homologue. It was found that recombinant chlamydial sigma8, in combination with E. coli core RNA polymerase, initiates transcription in vitro from the E. coli sigma28-dependent promoter of fliC. It was also demonstrated that the recombinant chlamydial sigma28 does not recognize major sigma factor sigma70-consensus-like sequences in vitro. In C. trachomatis-infected cells, two rpsD transcripts were detected with 5' ends located 18 (transcript I) and 54 bp (transcript II) upstream of the translational initiation codon at 16 and 30 h post-infection. When the temperature of cultures infected with C. trachomatis was shifted from 35 to 42 degrees C, the rpsD transcript I increased dramatically. The levels of chlamydial sigma28, relative to EF-Tu, were greater throughout the exponential growth phase of the reticulate body, but lower late in the developmental cycle. These data support the hypothesis that sigma28 plays a role in the regulatory network that allows chlamydiae to survive changes in its environment, enabling it to complete its unique developmental cycle.
沙眼衣原体的rpsD基因编码替代σ因子σ28,它与许多细菌的σ因子具有很强的同源性,包括大肠杆菌的σ8以及枯草芽孢杆菌的σB和σD。最近,在晚期表达基因hctB的上游鉴定出一个σ28启动子,hctB基因编码沙眼衣原体组蛋白样蛋白2(Yu和Tan,2003年)。本研究表明,衣原体rpsD的产物是大肠杆菌σ28的同源物。研究发现,重组衣原体σ8与大肠杆菌核心RNA聚合酶结合,可在体外从fliC的大肠杆菌σ28依赖性启动子起始转录。还证明了重组衣原体σ28在体外不识别主要σ因子σ70 - 共有序列样序列。在沙眼衣原体感染的细胞中,在感染后16小时和30小时检测到两种rpsD转录本,其5'端位于翻译起始密码子上游18(转录本I)和54 bp(转录本II)处。当感染沙眼衣原体的培养物温度从35℃转变为42℃时,rpsD转录本I急剧增加。相对于EF - Tu,衣原体σ28的水平在网状体的整个指数生长期都较高,但在发育周期后期较低。这些数据支持以下假设:σ28在调节网络中发挥作用,使衣原体能够在其环境变化中存活,从而完成其独特的发育周期。