Stella Stefano, Falconi Maurizio, Lammi Matilde, Gualerzi Claudio O, Pon Cynthia L
Laboratory of Genetics, Department of Biology MCA, University of Camerino, 62032 Camerino (MC), Italy.
J Mol Biol. 2006 Jan 13;355(2):169-74. doi: 10.1016/j.jmb.2005.10.034. Epub 2005 Nov 8.
The nucleoid-associated transcriptional repressor H-NS forms both dimers and tetramers in vivo. Two types of two-hybrid systems, one capable of detecting protein dimerization and the other protein tetramerization, have been used to determine whether environmental changes could affect the oligomerization capacity of this protein in the cell. Increasing the temperature from 37 degrees C to 48 degrees C and changing the pH between 4.0 and 9.0 did not influence either dimerization or tetramerization, whereas lowering the temperature below 25 degrees C and increasing osmolarity were found to reduce the formation of H-NS tetramers, which are the active form of this protein, without affecting dimerization. These findings provide a rationale to explain the induction of H-NS expression during cold-shock, suggest a mechanism contributing to derepressing osmotic-shock genes transcriptionally regulated by H-NS and indicate that changes of the oligomerization properties of H-NS do not play a role in the H-NS and temperature-dependent control of virulence gene expression.
类核相关转录阻遏物H-NS在体内可形成二聚体和四聚体。两种双杂交系统,一种能够检测蛋白质二聚化,另一种能够检测蛋白质四聚化,已被用于确定环境变化是否会影响该蛋白在细胞中的寡聚化能力。将温度从37℃提高到48℃以及将pH值在4.0至9.0之间变化,均不会影响二聚化或四聚化,而将温度降低至25℃以下以及提高渗透压则会减少H-NS四聚体(该蛋白的活性形式)的形成,且不影响二聚化。这些发现为解释冷休克期间H-NS表达的诱导提供了理论依据,提示了一种有助于解除受H-NS转录调控的渗透休克基因抑制的机制,并表明H-NS寡聚化特性的变化在H-NS和温度依赖性毒力基因表达控制中不起作用。