Jänis Janne, Pulkkinen Petri, Rouvinen Juha, Vainiotalo Pirjo
Department of Chemistry, University of Joensuu, FI-80101 Joensuu, Finland.
Anal Biochem. 2007 Jun 15;365(2):165-73. doi: 10.1016/j.ab.2007.03.034. Epub 2007 Apr 2.
A direct mass spectrometric approach was used for the determination of steady-state kinetic parameters, the turnover number (k(cat)), the Michaelis constant (K(M)), and the specificity constant (k(cat)/K(M)) for an enzyme-catalyzed hydrolysis of xylooligosaccharides. Electrospray ionization mass spectrometry was performed to observe product distributions and to determine k(cat), K(M), and k(cat)/K(M) values for Trichoderma reesei endo-1,4-beta-xylanase II (TRX II) with xylohexaose (Xyl(6)), xylopentaose (Xyl(5)), xylotetraose (Xyl(4)), and xylotriose (Xyl(3)) as substrates. The determined k(cat)/K(M) values (0.93, 0.37, 0.027, and 0.00015 microM(-1) s(-1), respectively) indicated that Xyl(6) was the most preferred substrate of TRX II. In addition, the obtained K(M) value for Xyl(5) (136 microM) was roughly twice as high as that for Xyl(6) (73 microM), suggesting that at least six putative subsites contribute to the substrate binding in the active site of TRX II. Previous mass spectrometric assays for enzyme kinetics have been used mostly in the case of reactions that result in a transfer of acidic groups (e.g., phosphate) into neutral oligosaccharides giving rise to negatively charged products. Here we demonstrate that such analysis is also feasible in the case of neutral underivatized oligosaccharides. Implications of the results for the catalytic mechanism of TRX II in particular are discussed.
采用直接质谱法测定木寡糖酶催化水解的稳态动力学参数、周转数(k(cat))、米氏常数(K(M))和特异性常数(k(cat)/K(M))。进行电喷雾电离质谱分析以观察产物分布,并测定里氏木霉内切 - 1,4 - β - 木聚糖酶II(TRX II)以木六糖(Xyl(6))、木五糖(Xyl(5))、木四糖(Xyl(4))和木三糖(Xyl(3))为底物时的k(cat)、K(M)和k(cat)/K(M)值。所测定的k(cat)/K(M)值(分别为0.93、0.37、0.027和0.00015 μM⁻¹ s⁻¹)表明Xyl(6)是TRX II最优先选择的底物。此外,所获得的Xyl(5)的K(M)值(136 μM)大约是Xyl(6)的K(M)值(73 μM)的两倍,这表明至少六个假定的亚位点有助于TRX II活性位点中的底物结合。先前用于酶动力学的质谱分析主要用于导致酸性基团(如磷酸)转移到中性寡糖中产生带负电荷产物的反应情况。在此我们证明,这种分析对于中性未衍生化寡糖的情况也是可行的。特别讨论了这些结果对TRX II催化机制的影响。