Nair S K, Christianson D W
Department of Chemistry, University of Pennsylvania, Philadelphia 19104-6323.
Biochemistry. 1993 May 4;32(17):4506-14. doi: 10.1021/bi00068a005.
The three-dimensional structures of Leu-198-->Glu, Leu-198-->His, Leu-198-->Arg, and Leu-198-->Ala variants of human carbonic anhydrase II (CAII) have each been determined by X-ray crystallographic methods to a resolution of 2.0 A. The side chain of Leu-198 is located at the mouth of the active site hydrophobic pocket, and this pocket is required for substrate association. Hydrophobic-->hydrophilic amino acid substitutions at the mouth of the pocket decrease kcat/KM for CO2 hydration: the CO2 hydrase activities of Leu-198-->Glu, Leu-198-->His, and Leu-198-->Arg CAIIs are diminished 19-fold, 10-fold, and 17-fold, respectively, relative to the wild-type enzyme; however, the substitution of a compact aliphatic side chain for Leu-198 has a smaller effect on catalysis, in that Leu-198-->Ala CAII exhibits only a 3-fold decrease in CO2 hydrase activity [Krebs, J. F., Rana, F., Dluhy, R. A., & Fierke, C. A. (1993) Biochemistry (preceding paper in this issue)]. It is intriguing that CO2 hydrase activity is not severely diminished in Leu-198-->Arg CAII, even though the side chain of Arg-198 blocks the hydrophobic pocket. Therefore, the bulky side chain of Arg-198 must be reasonably mobile in order to accommodate substrate association. Significantly, a residue larger than the wild-type Leu-198 side chain does not necessarily block the substrate association pocket; e.g., the side chain of Glu-198 packs against a hydrophobic patch, the net result of which is a wider mouth for the pocket.(ABSTRACT TRUNCATED AT 250 WORDS)
人类碳酸酐酶II(CAII)的Leu-198→Glu、Leu-198→His、Leu-198→Arg和Leu-198→Ala变体的三维结构均已通过X射线晶体学方法确定,分辨率达到2.0埃。Leu-198的侧链位于活性位点疏水口袋的开口处,该口袋是底物结合所必需的。口袋开口处的疏水→亲水氨基酸取代会降低CO2水合的kcat/KM:相对于野生型酶,Leu-198→Glu、Leu-198→His和Leu-198→Arg CAII的CO2水合酶活性分别降低了19倍、10倍和17倍;然而,用紧凑的脂肪族侧链取代Leu-198对催化作用的影响较小,因为Leu-198→Ala CAII的CO2水合酶活性仅降低了3倍[克雷布斯,J.F.,拉纳,F.,德鲁希,R.A.,&菲克,C.A.(1993年)《生物化学》(本期前一篇论文)]。有趣的是,尽管Arg-198的侧链阻塞了疏水口袋,但Leu-198→Arg CAII中的CO2水合酶活性并未严重降低。因此,Arg-198的大侧链必须具有相当的灵活性,以便容纳底物结合。值得注意的是,比野生型Leu-198侧链更大的残基不一定会阻塞底物结合口袋;例如,Glu-198的侧链靠在一个疏水区域上,其最终结果是口袋的开口变宽。(摘要截短于250字)