Malecki Piotr H, Raczynska Joanna E, Vorgias Constantinos E, Rypniewski Wojciech
Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, 61-704 Poznan, Poland.
Acta Crystallogr D Biol Crystallogr. 2013 May;69(Pt 5):821-9. doi: 10.1107/S0907444913002011. Epub 2013 Apr 11.
X-ray crystallography reveals chitinase from the psychrophilic bacterium Moritella marina to be an elongated molecule which in addition to the catalytic β/α-barrel domain contains two Ig-like domains and a chitin-binding domain, all linked in a chain. A ligand-binding study using NAG oligomers showed the enzyme to be active in the crystal lattice and resulted in complexes of the protein with oxazolinium ion (the reaction intermediate) and with NAG2, a reaction product. The characteristic motif DXDXE, containing three acidic amino-acid residues, which is a signature of type 18 chitinases, is conserved in the enzyme. Further analysis of the unliganded enzyme with the two protein-ligand complexes and a comparison with other known chitinases elucidated the roles of other conserved residues near the active site. Several features have been identified that are probably important for the reaction mechanism, substrate binding and the efficiency of the enzyme at low temperatures. The chitin-binding domain and the tryptophan patch on the catalytic domain provide general affinity for chitin, in addition to the affinity of the binding site; the two Ig-like domains give the protein a long reach over the chitin surface, and the flexible region between the chitin-binding domain and the adjacent Ig-like domain suggests an ability of the enzyme to probe the surface of the substrate, while the open shallow substrate-binding groove allows easy access to the active site.
X射线晶体学研究表明,嗜冷细菌海氏莫拉菌的几丁质酶是一种细长分子,除了催化性的β/α桶状结构域外,还包含两个免疫球蛋白样结构域和一个几丁质结合结构域,所有这些结构域都串联在一起。使用NAG寡聚物进行的配体结合研究表明,该酶在晶格中具有活性,并形成了该蛋白质与恶唑啉离子(反应中间体)以及与反应产物NAG2的复合物。包含三个酸性氨基酸残基的特征基序DXDXE是18型几丁质酶的标志,在该酶中保守。对未结合配体的酶与两种蛋白质-配体复合物进行进一步分析,并与其他已知的几丁质酶进行比较,阐明了活性位点附近其他保守残基的作用。已确定了几个可能对反应机制、底物结合以及该酶在低温下的效率很重要的特征。几丁质结合结构域和催化结构域上的色氨酸区除了结合位点的亲和力外,还为几丁质提供了一般亲和力;两个免疫球蛋白样结构域使该蛋白质能够在几丁质表面上有较长的作用范围,几丁质结合结构域与相邻免疫球蛋白样结构域之间的柔性区域表明该酶具有探测底物表面的能力,而开放的浅底物结合凹槽则便于进入活性位点。