Department of Biology, College of Biological Sciences and Biotechnology, Chungnam National University, Taejon, Republic of Korea.
PLoS One. 2012;7(9):e45236. doi: 10.1371/journal.pone.0045236. Epub 2012 Sep 13.
Cnu (an OriC-binding nucleoid protein) associates with H-NS. A variant of Cnu was identified as a key factor for filamentous growth of a wild-type Escherichia coli strain at 37°C. This variant (CnuK9E) bears a substitution of a lysine to glutamic acid, causing a charge reversal in the first helix. The temperature-dependent filamentous growth of E. coli bearing CnuK9E could be reversed by either lowering the temperature to 25°C or lowering the CnuK9E concentration in the cell. Gene expression analysis suggested that downregulation of dicA by CnuK9E causes a burst of dicB transcription, which, in turn, elicits filamentous growth. In vivo assays indicated that DicA transcriptionally activates its own gene, by binding to its operator in a temperature-dependent manner. The antagonizing effect of CnuK9E with H-NS on DNA-binding activity of DicA was stronger at 37°C, presumably due to the lower operator binding of DicA at 37°C. These data suggest that the temperature-dependent negative effect of CnuK9E on DicA binding plays a major role in filamentous growth. The C-terminus of DicA shows significant amino acid sequence similarity to the DNA-binding domains of RovA and SlyA, regulators of pathogenic genes in Yersinia and Salmonella, respectively, which also show better DNA-binding activity at 25°C.
Cnu(OriC 结合核蛋白)与 H-NS 相关。鉴定出 Cnu 的一种变体是野生型大肠杆菌菌株在 37°C 下丝状生长的关键因素。该变体(CnuK9E)带有赖氨酸到谷氨酸的取代,导致第一个螺旋的电荷反转。携带 CnuK9E 的大肠杆菌的温度依赖性丝状生长可以通过将温度降低到 25°C 或降低细胞中的 CnuK9E 浓度来逆转。基因表达分析表明,CnuK9E 下调 dicA 导致 dicB 转录的爆发,进而引发丝状生长。体内测定表明,DicA 通过与操纵子的温度依赖性结合来转录激活自身基因。CnuK9E 与 H-NS 对 DicA DNA 结合活性的拮抗作用在 37°C 时更强,可能是由于 DicA 在 37°C 时的操纵子结合较弱。这些数据表明,CnuK9E 对 DicA 结合的温度依赖性负效应在丝状生长中起主要作用。DicA 的 C 末端与致病性基因的调节因子 RovA 和 SlyA 的 DNA 结合结构域具有显著的氨基酸序列相似性,分别在 Yersinia 和 Salmonella 中,它们在 25°C 时也具有更好的 DNA 结合活性。