Bahloul A, Boubrik F, Rouviere-Yaniv J
Laboratoire de Physiologie Bactérienne, CNRS, UPR 9073, Institut de Biologie Physico-Chimique, 13, rue Pierre-et-Marie-Curie, 75005, Paris, France.
Biochimie. 2001 Feb;83(2):219-29. doi: 10.1016/s0300-9084(01)01246-9.
The HU protein is a small, basic, heat-stable DNA-binding protein that is well-conserved in prokaryotes and is associated with the bacterial nucleoid. In enterobacteria, including Escherichia coli, HU is a heterotypic dimer, HUalphabeta, composed of two closely related sub-units encoded by the hupA and hupB genes, respectively. HU was shown to participate in vitro in the initiation of DNA replication as an accessory factor to assist the action of DnaA protein in the unwinding of oriC DNA. To further elucidate the role of HU in the regulation of the DNA replication initiation process, we tested the synchrony phenotype in the absence of either one or both HU sub-units. The hupAB mutant exhibits an asynchronous initiation, the hupA mutant shows a similar reduced synchrony, whereas the hupB mutant shows a normal phenotype. Using a thermosensitive dnaA46 strain (dnaA46ts), an initiation mutant, we reveal a special role of HUbeta. The presence of a plasmid overproducing HUbeta in a dnaA46ts lacking HU (hupAB background) compensates for the thermosensitivity of this initiation mutant. Moreover, the overproduction of HUbeta confers to dnaA46ts a pattern of asynchrony similar to that of a dnaAcos, the intragenic suppressor of dnaA46ts. We show that the relative ratio of HUalpha versus HUbeta is greatly perturbed in dnaA46ts which accumulates little, if any, HUbeta. Therefore, the suppression of thermosensitivity in dnaA46hupAB by HUbeta may be caused by an unexpected absence of HUbeta in the dnaA46ts mutant. Visibly the HU composition is sensitive to the different states of DnaA, and may play a role during the regulation of the initiation process of the DNA replication by affecting subsequent events along the cell cycle.
HU蛋白是一种小的、碱性的、热稳定的DNA结合蛋白,在原核生物中高度保守,与细菌类核相关。在包括大肠杆菌在内的肠杆菌中,HU是一种异型二聚体,即HUαβ,由分别由hupA和hupB基因编码的两个密切相关的亚基组成。已表明HU在体外作为辅助因子参与DNA复制的起始,协助DnaA蛋白解开oriC DNA。为了进一步阐明HU在DNA复制起始过程调控中的作用,我们测试了缺失一个或两个HU亚基时的同步表型。hupAB突变体表现出异步起始,hupA突变体显示出类似的同步性降低,而hupB突变体表现出正常表型。使用一种温度敏感的dnaA46菌株(dnaA46ts),一种起始突变体,我们揭示了HUβ的特殊作用。在缺乏HU(hupAB背景)的dnaA46ts中,过量表达HUβ的质粒的存在补偿了这种起始突变体的温度敏感性。此外,HUβ的过量表达赋予dnaA46ts一种与dnaAcos(dnaA46ts的基因内抑制子)类似的异步模式。我们表明,在几乎不积累HUβ的dnaA46ts中,HUα与HUβ的相对比例受到极大干扰。因此,HUβ对dnaA46hupAB温度敏感性的抑制可能是由于dnaA46ts突变体中意外缺乏HUβ所致。显然,HU组成对DnaA的不同状态敏感,并且可能通过影响细胞周期中的后续事件在DNA复制起始过程的调控中发挥作用。