Assairi Liliane, Bertrand Thomas, Ferdinand Joëlle, Slavova-Azmanova Neli, Christensen Mette, Briozzo Pierre, Schaeffer Francis, Craescu Constantin T, Neuhard Jan, Bârzu Octavian, Gilles Anne-Marie
Laboratoire de Chimie Structurale des Macromolécules, Unité de Recherche Associeé 2185 du Cantre National de la Recherche Scientifique, Institut Pasteur, 75724 Paris 15, France.
Protein Sci. 2004 May;13(5):1295-303. doi: 10.1110/ps.03566004. Epub 2004 Apr 9.
We identified in Salmonella enterica serovar Typhi a cluster of four genes encoding a deoxyribokinase (DeoK), a putative permease (DeoP), a repressor (DeoQ), and an open reading frame encoding a 337 amino acid residues protein of unknown function. We show that the latter protein, called DeoM, is a hexamer whose synthesis is increased by a factor over 5 after induction with deoxyribose. The CD spectrum of the purified recombinant protein indicated a dominant contribution of betatype secondary structure and a small content of alpha-helix. Temperature and guanidinium hydrochloride induced denaturation of DeoM indicated that the hexamer dissociation and monomer unfolding are coupled processes. DeoM exhibits 12.5% and 15% sequence identity with galactose mutarotase from Lactococcus lactis and respectively Escherichia coli, which suggested that these three proteins share similar functions. Polarimetric experiments demonstrated that DeoM is a mutarotase with high specificity for deoxyribose. Site-directed mutagenesis of His183 in DeoM, corresponding to a catalytically active residue in GalM, yielded an almost inactive deoxyribose mutarotase. DeoM was crystallized and diffraction data collected for two crystal systems, confirmed its hexameric state. The possible role of the protein and of the entire gene cluster is discussed in connection with the energy metabolism of S. enterica under particular growth conditions.
我们在伤寒沙门氏菌中鉴定出一个由四个基因组成的基因簇,这四个基因分别编码一种脱氧核糖激酶(DeoK)、一种推定的通透酶(DeoP)、一种阻遏蛋白(DeoQ)以及一个编码功能未知的含337个氨基酸残基蛋白质的开放阅读框。我们发现,后一种蛋白质(称为DeoM)是一种六聚体,在用脱氧核糖诱导后其合成增加了5倍以上。纯化的重组蛋白的圆二色光谱表明,β型二级结构占主导,α螺旋含量较少。温度和盐酸胍诱导的DeoM变性表明,六聚体解离和单体解折叠是耦合过程。DeoM与乳酸乳球菌和大肠杆菌的半乳糖变旋酶分别具有12.5%和15%的序列同一性,这表明这三种蛋白质具有相似的功能。旋光实验表明,DeoM是一种对脱氧核糖具有高特异性的变旋酶。对DeoM中对应于GalM催化活性残基的His183进行定点诱变,产生了一种几乎无活性的脱氧核糖变旋酶。DeoM被结晶,并收集了两个晶体系统的衍射数据,证实了其六聚体状态。结合伤寒沙门氏菌在特定生长条件下的能量代谢,讨论了该蛋白质和整个基因簇的可能作用。