Nair S K, Christianson D W
Department of Chemistry, University of Pennsylvania, Philadelphia 19104-6323.
Eur J Biochem. 1993 Apr 1;213(1):507-15. doi: 10.1111/j.1432-1033.1993.tb17788.x.
The crystal structures of human carbonic anhydrase II (CAII) at pH 5.7 and 8.0 have been determined at 0.21-nm resolution in the presence of 20 mM azide, which is a noncompetitive inhibitor of the CAII-catalyzed CO2 hydration reaction. Although azide often facilitates the crystallization of CAII and its variants, this small anion does not cause any significant structural changes in the enzyme active site or in the overall protein structure, and zinc coordination remains tetrahedral over the pH range 5.7-8.0. Importantly, the binding of azide at pH 8.0 has implications for the zinc-binding mode of the catalytic product, bicarbonate ion. Since azide is a competitive inhibitor of the reverse reaction of bicarbonate dehydration, and since the zinc-bound azide nitrogen makes a non-hydrogen-bonded van der Waals contact with the hydroxyl group of Thr199, it is possible that a zinc-bound bicarbonate oxyanion could likewise make a non-hydrogen-bonded, van der Waals contact with the hydroxyl group of Thr199. Therefore, the donation of a hydrogen bond to Thr199 is not absolutely required for anion binding to tetracoordinate zinc.
在20 mM叠氮化物存在的情况下,已在0.21纳米分辨率下测定了人碳酸酐酶II(CAII)在pH 5.7和8.0时的晶体结构,叠氮化物是CAII催化的CO2水合反应的非竞争性抑制剂。尽管叠氮化物常常有助于CAII及其变体的结晶,但这种小阴离子不会在酶活性位点或整个蛋白质结构中引起任何显著的结构变化,并且在pH 5.7 - 8.0范围内锌配位仍保持四面体结构。重要的是,叠氮化物在pH 8.0时的结合对催化产物碳酸氢根离子的锌结合模式有影响。由于叠氮化物是碳酸氢根脱水逆反应的竞争性抑制剂,并且由于与锌结合的叠氮化物氮与Thr199的羟基形成了非氢键范德华接触,所以与锌结合的碳酸氢根氧阴离子同样有可能与Thr199的羟基形成非氢键范德华接触。因此,对于阴离子与四配位锌的结合而言,向Thr199提供氢键并非绝对必要。