首页> 外文OA文献 >The Effect of Xyloglucans on the Degradation of Cell-Wall-Embedded Cellulose by the Combined Action of Cellobiohydrolase and Endoglucanases from Trichoderma viride.
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The Effect of Xyloglucans on the Degradation of Cell-Wall-Embedded Cellulose by the Combined Action of Cellobiohydrolase and Endoglucanases from Trichoderma viride.

机译:木葡聚糖通过纤维木糖水解酶和内切葡聚糖酶的结合作用对木壁嵌入式纤维素降解的影响。

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摘要

Two endoglucanases of Trichoderma viride, endoI and endoIV, were assayed for their activity toward alkali-extracted apple xyloglucans. EndoIV was shown to have a 60-fold higher activity toward xyloglucan than endoI, whereas carboxymethyl cellulose and crystalline cellulose were better substrates for the latter. The enzymic degradation of cellulose embedded in the complex cell-wall matrix of apple fruit tissue has been studied using cellobiohydrolase (CBH) and these two different endoglucanases. A high-performance liquid chromatographic method (Aminex HPX-22H) was used to monitor the release of cellobiose and oligomeric xyloglucan fragments. Synergistic action between CBH and endoglucanases on cell-wall-embedded cellulose was, with respect to their optimal ratio, slightly different from that reported for crystalline cellulose. The combination of endoIV and CBH solubilized twice as much cellobiose compared to a combination of endoI and CBH. Apparently, the concomitant removal of the xyloglucan coating from cellulose microfibrils by endoIV is essential for an efficient degradation of cellulose in a complex matrix. Cellulose degradation slightly enhanced the solubilization of xyloglucans. These results indicate optimal degradation of cell-wall-embedded cellulose by a three-enzyme system consisting of an endoglucanase with high affinity toward cellulose (endoI), a xyloglucanase (endoIV), and CBH.
机译:测定了木霉木霉的两种内切葡聚糖酶endoI和endoIV对碱提取的苹果木葡聚糖的活性。事实证明,EndoIV对木葡聚糖的活性比endI高60倍,而羧甲基纤维素和结晶纤维素则是后者更好的底物。已经使用纤维二糖水解酶(CBH)和这两种不同的内切葡聚糖酶研究了嵌入苹果果实组织的复杂细胞壁基质中的纤维素的酶促降解。高效液相色谱法(Aminex HPX-22H)用于监测纤维二糖和低聚木葡聚糖片段的释放。就其最佳比例而言,CBH和内切葡聚糖酶对细胞壁包埋的纤维素的协同作用与结晶纤维素的协同作用略有不同。与endoI和CBH的组合相比,endoIV和CBH的组合可溶解两倍的纤维二糖。显然,伴随着endoIV从纤维素微纤维中去除木葡聚糖涂层对于有效降解复杂基质中的纤维素是必不可少的。纤维素降解稍微增强了木葡聚糖的增溶作用。这些结果表明通过三酶系统对细胞壁包埋的纤维素的最佳降解,该酶由对纤维素(endoI),木糖葡聚糖酶(endoIV)和CBH具有高亲和力的内切葡聚糖酶组成。

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