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Effects of reaction conditions on cellulose structures synthesized in vitro by bacterial cellulose synthases

机译:反应条件对细菌纤维素合成酶体外合成纤维素结构的影响

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摘要

Cellulose was synthesized by cellulose synthases extracted from the Komagataeibacter xylinus (formerly known as Gluconacetobacter xylinus). The effects of temperature and centrifugation of the reaction solution on the synthesis products were investigated. Cellulose with number-average degree of polymerization (DPn) roughly in the range 60-80 and cellulose II crystal structure was produced under all conditions. The amount of cellulose varied with temperature and centrifugation, and the centrifugation at 2000 x g also slightly reduced the DPn. Cellulose production was maximal around the temperature 35 degrees C and without centrifugation. At higher temperatures and during centrifugation at 2000 x g the proteins started to denature, causing differences also in the morphology of the cellulosic aggregates, as seen with electron microscopy. These observations serve as a basis for discussions about the factors affecting the structure formation and chain length of in vitro synthesized cellulose. (C) 2015 Elsevier Ltd. All rights reserved.
机译:纤维素是通过从木糖木杆菌(以前称为木糖杆菌)中提取的纤维素合酶合成的。研究了温度和反应溶液的离心分离对合成产物的影响。在所有条件下均生产出数均聚合度(DPn)大致在60-80范围内的纤维素和纤维素II晶体结构。纤维素的量随温度和离心作用而变化,并且在2000 x g的离心作用下,DPn也略有降低。在不进行离心的情况下,纤维素的产量在35摄氏度左右最大。如在电子显微镜下所见,在较高的温度下以及在2000 x g的离心过程中,蛋白质开始变性,从而引起纤维素聚集体形态的差异。这些观察结果为讨论影响体外合成纤维素的结构形成和链长的因素提供了基础。 (C)2015 Elsevier Ltd.保留所有权利。

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