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首页> 外文期刊>Enzyme and Microbial Technology >Significance of a family-6 carbohydrate-binding module in a modular feruloyl esterase for removing ferulic acid from insoluble wheat arabinoxylan
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Significance of a family-6 carbohydrate-binding module in a modular feruloyl esterase for removing ferulic acid from insoluble wheat arabinoxylan

机译:在模块化的Forulya酯酶中含有家庭-6碳水化合物结合模块的重要性,用于从不溶性小麦阿拉伯毒蛋白中除去阿魏酸

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摘要

Ruminiclostridium josui Fae1A is a modular enzyme consisting of an N-terminal signal peptide, family-1 carbohydrate esterase module (CE1), family-6 carbohydrate-binding module (CBM6), and dockerin module in that order. Recombinant CE1 and CBM6 polypeptides were collectively and separately produced as RjFae1A, RjCE1, and RjCBM6. RjFae1A showed higher feruloyl esterase activity than RjCE1 towards insoluble wheat arabinoxylan, but the latter was more active towards small synthetic substrates than the former. This suggests that CBM6 in RjFae1A plays an important role in releasing ferulic acid from the native substrate. RjCBM6 showed a higher affinity for soluble wheat arabinoxylan than for rye arabinoxylan and beechwood xylan in native affinity polyacrylamide gel electrophoresis. Isothermal titration calorimetry analysis demonstrated that RjCBM6 recognized a xylopyranosyl residue at the nonreducing ends of xylooligosaccharides. Moreover, it showed exceptional affinity for 2(3)-alpha-L-arabinofuranosyl-xylotriose (A(2)XX) among the tested branched arabinoxylooligosaccharides. Fluorometric titration analysis demonstrated that xylobiose and A(2)XX competitively bound to RjCBM6, and both bound to the same site in RjCBM6. RjCBM6's preference for the xylopyranosyl residue at the nonreducing end of xylan chains explains why the positive effect of CBM6 on RjFae1A activity was observed only during short incubation but not after extended incubation.
机译:Ruminiclostridium Josui Fae1a是由N末端信号肽,家庭-1碳水化合物酯酶模块(CE1),家庭-6碳水化合物粘合模块(CBM6)和Dockerin模块组成的模块化酶。重组CE1和CBM6多肽统称和单独生产为RJFAE1a,Rjce1和RJCBM6。 RJFAE1A显示比RJCE1更高的Feruloyl酯酶活性,朝向不溶性小麦Arabinoxylan,但后者比前者更活跃于小合成基材。这表明RJFAE1A中的CBM6在释放来自天然基质的阿魏酸中起重要作用。 RJCBM6对可溶性小麦阿拉伯毒蛇蛋白的亲和力较高,而不是黑麦阿拉伯辛和Beechwood木聚糖在本地亲和聚丙烯酰胺凝胶电泳。等温滴定热量测定法分析证明RJCBM6在二卤代糖的非还原末端识别出Xylopyranyl渣。此外,它显示出对测试的支化阿拉伯脱甘油嘧啶的测试中的2(3)-Alpha-L-阿拉伯呋喃糖基 - 木糖苷(A(2)XX)的特殊亲和力。荧光滴定分析证明了Xylobiose和A(2)XX竞争地绑定到RJCBM6,并且均在RJCBM6中结合到同一部位。 RJCBM6在Xylan链的NORDUICAING末端的Xylopyranyl残基的偏好解释了为什么在短暂孵育过程中仅观察到CBM6对RJFAE1A活性的阳性效果,但在延长孵育后没有。

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