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Possibilities for recycling cellulases after use in celllase processing - part I : effects of end-product inhibition, thermal and mechanical deactivation, and cellulase depletion by adsorption

机译:在纤维素酶加工中使用后回收纤维素酶的可能性-第I部分:最终产物抑制,热和机械失活以及吸附引起的纤维素酶消耗的影响

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摘要

Preliminary recycling experiments with cellulase enzymes after cotton treatments at 50°C showed that activity remaining in the treatment liquors was reduced by about 80% after five recycling steps. The potential problems of end-product inhibition, thermal and mechanical deactivation, and theloss of some components of the cellulase complex by preferential and or irreversible adsorption to cotton substrates were studied. End-product inhibition studies showed that the build-up of cellobiose and glucose would be expected to cause no more than 40% activity loss after five textile treatment cycles. Thermal and mechanical treatments of cellulases suggested that the enzymes start to be deactivated at 60°C and agitation levels similar to those used in textile processing did not cause significant enzyme deactivation.Analysis of cellulase solutions, by fast protein liquid chromatography, before and after adsorption on cotton fabrics, suggested that the cellobiohydrolase II (Cel6A) content of the cellulase complex was reduced, relative to the other components, by preferential adsorption. This would lead to a markedreduction in activity after several treatment cycles and top-up with pure cellobiohydrolase II would be necessary unless this component is easily recoverable from the treated fabric.
机译:在50°C的棉花处理后,使用纤维素酶进行的初步回收利用实验表明,经过5个回收步骤,处理液中残留的活性降低了约80%。研究了最终产物抑制,热和机械失活以及纤维素酶复合物某些成分由于对棉底物的优先吸附或不可逆吸附而损失的潜在问题。最终产品抑制研究表明,在五个纺织处理周期后,纤维二糖和葡萄糖的积累将导致活性损失不超过40%。纤维素酶的热处理和机械处理表明,酶在60°C时开始失活,并且搅拌水平与纺织品加工中所用的相似,并没有引起酶的显着失活。通过快速蛋白质液相色谱法对纤维素酶溶液的吸附前后进行分析在棉织物上,建议通过优先吸附来降低纤维素酶复合物的纤维二糖水解酶II(Cel6A)含量。这将导致几个处理周期后活性显着降低,并且除非纯净的纤维二糖水解酶II易于从处理过的织物中回收,否则将有必要进行补充。

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