Klimpel K W, Lesley S A, Clark V L
Department of Microbiology and Immunology, University of Rochester, New York 14642.
J Bacteriol. 1989 Jul;171(7):3713-8. doi: 10.1128/jb.171.7.3713-3718.1989.
Heparin-agarose and single-stranded DNA-cellulose chromatography were used to purify RNA polymerase 25-fold from Neisseria gonorrhoeae, and the activity of the polymerase was characterized in altered assay systems. The core subunits (beta, beta', and alpha) were tentatively identified as major proteins copurifying with polymerase activity. The identification of the core subunits was confirmed by Western (immunoblot) analysis with polyclonal antisera to Escherichia coli core RNA polymerase. Gonococcal sigma factor heterogeneity was examined by Western blot analysis with polyclonal antiserum to the major E. coli sigma factor, sigma 70, to the E. coli heat shock sigma factor, sigma 32, and with a monoclonal antiserum to Salmonella typhimurium NtrA (sigma 54). Purified RNA polymerase and whole-cell extracts from type 1, type 4, heat-shocked, and anaerobically grown gonococci were examined. Four putative gonococcal sigma factors were detected in purified RNA polymerase preparations and in whole-cell extracts from all cell types. Two of these bands appeared as a doublet, which had an estimated Mr of 80,000. A single lower-Mr band, estimated to be 40,000, was also present. All three of these bands reacted with antisera to E. coli sigma 70 and to E. coli sigma 32. A fourth gonococcal protein reacted solely with a highly specific monoclonal antibody to sigma 54 and had an Mr of 90,000. We conclude that N. gonorrhoeae may contain multiple sigma factors, which it may use to regulate gene expression.
采用肝素-琼脂糖和单链DNA-纤维素色谱法从淋病奈瑟菌中纯化RNA聚合酶,纯化倍数达25倍,并在改良的测定系统中对该聚合酶的活性进行了表征。核心亚基(β、β′和α)被初步鉴定为与聚合酶活性共纯化的主要蛋白质。用针对大肠杆菌核心RNA聚合酶的多克隆抗血清进行Western(免疫印迹)分析,证实了核心亚基的鉴定。用针对大肠杆菌主要σ因子σ70、大肠杆菌热休克σ因子σ32的多克隆抗血清以及针对鼠伤寒沙门氏菌NtrA(σ54)的单克隆抗血清,通过Western印迹分析检测淋病奈瑟菌σ因子的异质性。检测了1型、4型、热休克型和厌氧生长的淋病奈瑟菌的纯化RNA聚合酶和全细胞提取物。在纯化的RNA聚合酶制剂和所有细胞类型的全细胞提取物中检测到四种假定的淋病奈瑟菌σ因子。其中两条带呈现为双峰,估计分子量为80,000。还存在一条分子量较低的单带,估计为40,000。所有这三条带都与针对大肠杆菌σ70和大肠杆菌σ32的抗血清发生反应。第四种淋病奈瑟菌蛋白仅与针对σ54的高度特异性单克隆抗体发生反应,分子量为90,000。我们得出结论,淋病奈瑟菌可能含有多种σ因子,可用于调节基因表达。