Bourgois Tine M, Nguyen Dung V, Sansen Stefaan, Rombouts Sigrid, Beliën Tim, Fierens Katleen, Raedschelders Gert, Rabijns Anja, Courtin Christophe M, Delcour Jan A, Van Campenhout Steven, Volckaert Guido
Katholieke Universiteit Leuven, Laboratory of Gene Technology, Kasteelpark Arenberg 21, B-3001 Leuven, Belgium.
J Biotechnol. 2007 May 31;130(1):95-105. doi: 10.1016/j.jbiotec.2007.02.011. Epub 2007 Feb 25.
The Bacillus subtilis endoxylanase XynA (BSXY) is frequently used to improve the functionality of arabinoxylan-containing material in cereal based industries. The presence of endogenous Triticum aestivum xylanase inhibitors (TAXI-I and TAXI-II) in wheat is a real concern as they have a direct negative impact on the efficiency of this enzyme. Here, we used the recently determined structure of the complex between TAXI-I and an endoxylanase of Aspergillus niger to develop inhibitor-insensitive BSXY variants by site-directed mutagenesis of strategically chosen amino acids. We either induced steric hindrance to reject the inhibitors or interrupted key interactions with the inhibitors in the endoxylanase substrate-binding groove. The first strategy was successfully applied to position G12 where G12W combined inhibition insensitivity with unharmed catalytic performance. Variants from the second strategy showed altered inhibitor sensitivities concomitant with changes in enzyme activities and allowed to gain insight in the binding-mode of both TAXI-I and TAXI-II with BSXY.
枯草芽孢杆菌内切木聚糖酶XynA(BSXY)常用于改善谷物基产业中含阿拉伯木聚糖材料的功能。小麦中存在内源性普通小麦木聚糖酶抑制剂(TAXI-I和TAXI-II)是一个实际问题,因为它们对这种酶的效率有直接负面影响。在这里,我们利用最近确定的TAXI-I与黑曲霉内切木聚糖酶之间复合物的结构,通过对策略性选择的氨基酸进行定点诱变来开发对抑制剂不敏感的BSXY变体。我们要么诱导空间位阻以排斥抑制剂,要么中断内切木聚糖酶底物结合槽中与抑制剂的关键相互作用。第一种策略成功应用于第12位甘氨酸(G12),其中G12W兼具抑制不敏感性和未受损害的催化性能。第二种策略的变体表现出抑制剂敏感性改变,同时酶活性也发生变化,这有助于深入了解TAXI-I和TAXI-II与BSXY的结合模式。