Homerová D, Sprusanský O, Kutejová E, Kormanec J
Institute of Molecular Biology, Slovak Academy of Sciences, 842 51 Bratislava, Slovakia.
Folia Microbiol (Praha). 2002;47(4):311-7. doi: 10.1007/BF02818688.
A gapR gene, encoding a protein similar to the AraC/XylS family of bacterial transcriptional regulators, was previously identified upstream of the gap gene, coding for glyceraldehyde-3-phosphate dehydrogenase in Streptomyces aureofaciens. The GapR protein overproduced in Escherichia coli was shown to bind to the gap-P promoter region. Using the gel mobility shift assay with cell-free protein extracts from different developmental stages of S. aureofaciens, we identified several other proteins, in addition to GapR, that specifically bound to the S. aureofaciens gap-P promoter region. When cell-free extracts from S. aureofaciens cultivated in liquid medium with glucose were analyzed, only one complex corresponding to GapR was detected. A new protein interacting with the gap-P promoter was detected in stationary culture of S. aureofaciens grown in the presence of mannitol as carbon sources. The GapR protein was partially purified from S. aureofaciens cultivated in liquid medium containing glucose and used for binding studies. DNA footprinting analysis revealed an identical protected region as previously identified for the GapR protein overproduced from Escherichia coli. The direct role of the GapR protein in the regulation of gap expression in S. aureofaciens in vivo was confirmed but regulation of gap expression seems to be more complex, possibly involving other regulatory protein(s), depending on the developmental stage of S. aureofaciens.
一个编码与细菌转录调节因子AraC/XylS家族相似蛋白质的gapR基因,先前在编码金色链霉菌中甘油醛-3-磷酸脱氢酶的gap基因上游被鉴定出来。在大肠杆菌中过量产生的GapR蛋白被证明能与gap-P启动子区域结合。通过对金色链霉菌不同发育阶段的无细胞蛋白提取物进行凝胶迁移率变动分析,我们鉴定出除GapR外还有几种其他蛋白质能特异性结合金色链霉菌的gap-P启动子区域。当分析在含葡萄糖的液体培养基中培养的金色链霉菌的无细胞提取物时,仅检测到一种与GapR对应的复合物。在以甘露醇作为碳源生长的金色链霉菌的静止培养物中检测到一种与gap-P启动子相互作用的新蛋白质。从在含葡萄糖的液体培养基中培养的金色链霉菌中部分纯化出GapR蛋白,并用于结合研究。DNA足迹分析揭示了一个与先前从大肠杆菌中过量产生的GapR蛋白所鉴定出的相同的受保护区域。GapR蛋白在体内对金色链霉菌中gap表达的调节作用得到了证实,但gap表达的调节似乎更为复杂,可能取决于金色链霉菌的发育阶段,涉及其他调节蛋白。