Pickersgill R, Jenkins J, Harris G, Nasser W, Robert-Baudouy J
Department of Protein Engineering, Institute of Food Research, Reading, UK.
Nat Struct Biol. 1994 Oct;1(10):717-23. doi: 10.1038/nsb1094-717.
We have solved the structure of the Bacillus subtilis pectate lyase (BsPel) in complex with calcium. The structure consists of a parallel beta-helix domain and a loop region. The alpha L-bounded beta-strand seen in BsPel is a new element of protein structure and its frequent occurrence suggests it is an important characteristic of the parallel beta-helix. A pronounced cleft is formed between the loops and the parallel beta-helix domain and we propose that this is the active site cleft. Calcium, essential for the activity of the enzyme, binds at the bottom of this cleft and an arginine residue close to the calcium, which is conserved across all pectin and pectate lyases, may be involved in catalysis.
我们解析了与钙结合的枯草芽孢杆菌果胶酸裂解酶(BsPel)的结构。该结构由一个平行β-螺旋结构域和一个环区组成。在BsPel中看到的αL-边界β-链是蛋白质结构的一个新元件,其频繁出现表明它是平行β-螺旋的一个重要特征。在环区与平行β-螺旋结构域之间形成了一个明显的裂隙,我们认为这就是活性位点裂隙。对该酶活性至关重要的钙结合在这个裂隙的底部,靠近钙的一个精氨酸残基在所有果胶和果胶酸裂解酶中都是保守的,可能参与催化作用。