Chittori Sagar, Simanshu Dhirendra K, Savithri H S, Murthy M R N
Molecular Biophysics Unit, Indian Institute of Science, Bangalore, India.
Acta Crystallogr D Biol Crystallogr. 2007 Feb;63(Pt 2):197-205. doi: 10.1107/S090744490604618X. Epub 2007 Jan 16.
Salmonella typhimurium YeaD (stYeaD), annotated as a putative aldose 1-epimerase, has a very low sequence identity to other well characterized mutarotases. Sequence analysis suggested that the catalytic residues and a few of the substrate-binding residues of galactose mutarotases (GalMs) are conserved in stYeaD. Determination of the crystal structure of stYeaD in an orthorhombic form at 1.9 A resolution and in a monoclinic form at 2.5 A resolution revealed this protein to adopt the beta-sandwich fold similar to GalMs. Structural comparison of stYeaD with GalMs has permitted the identification of residues involved in catalysis and substrate binding. In spite of the similar fold and conservation of catalytic residues, minor but significant differences were observed in the substrate-binding pocket. These analyses pointed out the possible role of Arg74 and Arg99, found only in YeaD-like proteins, in ligand anchoring and suggested that the specificity of stYeaD may be distinct from those of GalMs.
鼠伤寒沙门氏菌YeaD(stYeaD),被注释为一种假定的醛糖1-表异构酶,与其他特征明确的变旋酶的序列同一性非常低。序列分析表明,半乳糖变旋酶(GalMs)的催化残基和一些底物结合残基在stYeaD中是保守的。以1.9埃分辨率测定正交晶系形式的stYeaD晶体结构,并以2.5埃分辨率测定单斜晶系形式的晶体结构,结果显示该蛋白采用了与GalMs相似的β-折叠结构。将stYeaD与GalMs进行结构比较,有助于确定参与催化和底物结合的残基。尽管具有相似的折叠结构和催化残基的保守性,但在底物结合口袋中观察到了微小但显著的差异。这些分析指出了仅在YeaD样蛋白中发现的Arg74和Arg99在配体锚定中的可能作用,并表明stYeaD的特异性可能与GalMs不同。