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52家族糖苷水解酶的详细动力学分析:嗜热栖热放线菌的一种β-木糖苷酶

Detailed kinetic analysis of a family 52 glycoside hydrolase: a beta-xylosidase from Geobacillus stearothermophilus.

作者信息

Bravman Tsafrir, Zolotnitsky Gennady, Belakhov Valery, Shoham Gil, Henrissat Bernard, Baasov Timor, Shoham Yuval

机构信息

Department of Food Engineering and Biotechnology, Technion-Israel Institute of Technology, Haifa 32000, Israel.

出版信息

Biochemistry. 2003 Sep 9;42(35):10528-36. doi: 10.1021/bi034505o.

Abstract

Geobacillus stearothermophilus T-6 encodes for a beta-xylosidase (XynB2) from family 52 of glycoside hydrolases that was previously shown to hydrolyze its substrate with net retention of the anomeric configuration. XynB2 significantly prefers substrates with xylose as the glycone moiety and exhibits a typical bell-shaped pH dependence curve. Binding properties of xylobiose and xylotriose to the active site were measured using isothermal titration calorimetry (ITC). Binding reactions were enthalpy driven with xylobiose binding more tightly than xylotriose to the active site. The kinetic constants of XynB2 were measured for the hydrolysis of a variety of aryl beta-D-xylopyranoside substrates bearing different leaving groups. The Brønsted plot of log k(cat) versus the pK(a) value of the aglycon leaving group reveals a biphasic relationship, consistent with a double-displacement mechanism as expected for retaining glycoside hydrolases. Hydrolysis rates for substrates with poor leaving groups (pK(a) > 8) vary widely with the aglycon reactivity, indicating that, for these substrates, the bond cleavage is rate limiting. However, no such dependence is observed for more reactive substrates (pK(a) < 8), indicating that in this case hydrolysis of the xylosyl-enzyme intermediate is rate limiting. Secondary kinetic isotope effects suggest that the intermediate breakdown proceeds with modest oxocarbenium ion character at the transition state, and bond cleavage proceeds with even lower oxocarbenium ion character. Inhibition studies with several gluco analogue inhibitors could be measured since XynB2 has low, yet sufficient, activity toward 4-nitrophenyl beta-D-glucopyranose. As expected, inhibitors mimicking the proposed transition state structure, such as 1-deoxynojirimycin, bind with much higher affinity to XynB2 than ground state inhibitors.

摘要

嗜热栖热放线菌T-6编码一种来自糖苷水解酶家族52的β-木糖苷酶(XynB2),先前已证明该酶在水解底物时能净保留异头构型。XynB2显著偏好以木糖为糖基部分的底物,并呈现出典型的钟形pH依赖性曲线。使用等温滴定量热法(ITC)测量了木二糖和木三糖与活性位点的结合特性。结合反应是由焓驱动的,木二糖比木三糖更紧密地结合到活性位点。测量了XynB2对多种带有不同离去基团的芳基β-D-木糖苷底物水解的动力学常数。log k(cat) 对苷元离去基团pK(a) 值的布朗斯特图显示出双相关系,这与保留型糖苷水解酶预期的双取代机制一致。离去基团较差(pK(a) > 8)的底物的水解速率随苷元反应性变化很大,这表明对于这些底物,键断裂是限速步骤。然而,对于反应性更高的底物(pK(a) < 8)未观察到这种依赖性,这表明在这种情况下木糖基酶中间体的水解是限速步骤。二级动力学同位素效应表明,中间体分解在过渡态具有适度的氧鎓离子特征,而键断裂具有更低的氧鎓离子特征。由于XynB2对4-硝基苯基β-D-葡萄糖吡喃糖苷具有较低但足够的活性,因此可以测量几种葡萄糖类似物抑制剂的抑制作用。正如预期的那样,模拟所提出的过渡态结构的抑制剂,如1-脱氧野尻霉素,与XynB2的结合亲和力比基态抑制剂高得多。

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