Roberge M, Shareck F, Morosoli R, Kluepfel D, Dupont C
Centre de Microbiologie et Biotechnologie, INRS-Institut Armand-Frappier, Laval, Québec, Canada.
Protein Eng. 1999 Mar;12(3):251-7. doi: 10.1093/protein/12.3.251.
The role of four aromatic residues (W85, Y172, W266 and W274) in the structure-function relationship in xylanase A from Streptomyces lividans (XlnA) was investigated by site-directed mutagenesis where each residue was subjected to three substitutions (W85A/H/F; W266A/H/F; W274A/H/F and Y172A/F/S). These four amino acids are highly conserved among family 10 xylanases and structural data have implicated them in substrate binding at the active site. Far-UV circular dichroism spectroscopy was used to show that the overall structure of XlnA was not affected by any of these mutations. High-performance liquid chromatographic analysis of the hydrolysis products of birchwood xylan and xylopentaose showed that mutation of these aromatic residues did not alter the enzyme's mode of action. As expected, though, it did reduce the affinity of XlnA for birchwood xylan. A comparison of the kinetic parameters of different mutants at the same position demonstrated the importance of the aromatic nature of W85, Y172 and W274 in substrate binding. Replacement of these residues by a phenylalanine resulted in mutant proteins with a K(M) closer to that of the wild-type protein in comparison with the other mutations analyzed. The kinetic analysis of the mutant proteins at position W266 indicated that this amino acid is important for both substrate binding and efficient catalysis by XlnA. These studies also demonstrated the crucial role of these active site aromatic residues for the thermal stability of XlnA.
通过定点诱变研究了四个芳香族残基(W85、Y172、W266和W274)在淡紫链霉菌木聚糖酶A(XlnA)结构-功能关系中的作用,其中每个残基都进行了三种取代(W85A/H/F;W266A/H/F;W274A/H/F和Y172A/F/S)。这四个氨基酸在10族木聚糖酶中高度保守,结构数据表明它们参与活性位点的底物结合。远紫外圆二色光谱用于表明XlnA的整体结构不受任何这些突变的影响。对桦木木聚糖和木五糖水解产物的高效液相色谱分析表明,这些芳香族残基的突变并未改变酶的作用方式。不过,正如预期的那样,它确实降低了XlnA对桦木木聚糖的亲和力。对同一位置不同突变体动力学参数的比较证明了W85、Y172和W274的芳香性质在底物结合中的重要性。与分析的其他突变相比,用苯丙氨酸取代这些残基产生的突变蛋白的K(M)更接近野生型蛋白。对W266位置突变蛋白的动力学分析表明,该氨基酸对XlnA的底物结合和有效催化都很重要。这些研究还证明了这些活性位点芳香族残基对XlnA热稳定性的关键作用。