García Jesús, Cordeiro Tiago N, Nieto José M, Pons Ignacio, Juárez Antonio, Pons Miquel
Laboratory of Biomolecular NMR, Parc Científic de Barcelona, Josep Samitier, 1-5, 08028-Barcelona, Spain.
Biochem J. 2005 Jun 15;388(Pt 3):755-62. doi: 10.1042/BJ20050002.
The H-NS family of proteins has been shown to participate in the regulation of a large number of genes in Gram-negative bacteria in response to environmental factors. In recent years, it has become apparent that proteins of the Hha family are essential elements for H-NS-regulated gene expression. Hha has been shown to bind H-NS, although the details for this interaction are still unknown. In the present paper, we report fluorescence anisotropy and NMR studies of the interaction between Hha and H-NS64, a truncated form of H-NS containing only its N-terminal dimerization domain. We demonstrate the initial formation of a complex between one Hha and two H-NS64 monomers in 150 mM NaCl. This complex seems to act as a nucleation unit for higher-molecular-mass complexes. NMR studies suggest that Hha is in equilibrium between two different conformations, one of which is stabilized by binding to H-NS64. A similar exchange is also observed for Hha in the absence of H-NS when temperature is increased to 37 degrees C, suggesting a key role for intrinsic conformational changes of Hha in modulating its interaction with H-NS.
已证明H-NS蛋白家族参与革兰氏阴性菌中大量基因响应环境因素的调控。近年来,很明显Hha家族蛋白是H-NS调控基因表达的关键要素。已证明Hha能结合H-NS,尽管这种相互作用的细节仍不清楚。在本文中,我们报告了Hha与H-NS64(一种仅包含其N端二聚化结构域的H-NS截短形式)相互作用的荧光各向异性和核磁共振研究。我们证明了在150 mM NaCl中,一个Hha与两个H-NS64单体最初形成复合物。这种复合物似乎作为高分子量复合物的成核单元。核磁共振研究表明,Hha处于两种不同构象之间的平衡状态,其中一种构象通过与H-NS64结合而稳定。当温度升高到37℃时,在没有H-NS的情况下,Hha也观察到类似的交换,这表明Hha的内在构象变化在调节其与H-NS的相互作用中起关键作用。