利用山羊瘤胃液纤维素酶水解纤维素的酶解动力学

G. Wijonarko, I. Purbowati, A. Maksum
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引用次数: 0

摘要

随着化石中石油储量的枯竭,人类迫使人们寻找可替代的可再生能源。尼帕植物的茎是含有大量木质纤维素的有机材料。木质纤维素中的纤维素可以水解为葡萄糖以生产生物乙醇。由于使用纯纤维素酶水解需要相对较高的成本,因此有必要寻找廉价纤维素酶的替代来源。纤维素酶的廉价来源之一是山羊瘤胃液。迄今为止,关于山羊瘤胃液的反应动力学和纤维素酶特性的研究还不多。本研究的目的是分离粗纤维素酶提取物,确定KM和Vmax值,并确定最佳温度和ph。研究在Unsoed农业技术实验室进行。所用样本为7种瘤胃液。研究从分离开始,随后进行酶动力学研究。分别加入硫酸铵盐(50、60、70、80%)进行分馏,4℃,7000 rpm离心15分钟。采用酶活性最高的粗纤维素酶提取物进行酶促反应动力学和表征研究。粗纤维素酶在45、55、65℃下进行耐温性试验,pH值分别为4、5、6、7、8。通过测定不同CMC浓度(1、1、5、2、2.5和3%)下粗纤维素酶提取物的活性来确定KM和Vmax值。结果表明,粗纤维素酶提取物的平均比活性为1.7356 IU/mg。酶活性最高为0.9854 IU/ml。粗纤维素酶提取液的最佳条件为pH为6,活性为1.1015 IU/ml,温度为60℃,活性为0.7829 IU/ml。CMC浓度为2.5%时,粗纤维素酶提取物的活性为0.3179 IU/ml, Vmax为0.0045 IU/ml, KM为0.0252%。
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Enzimatic Kinetics of Cellulose Hydrolysis using Cellulase from Goat Rumen Fluids
In line with the depletion of petroleum reserves from fossils, humans have forced people to look for alternative renewable energy sources. Nipah plant stems are organic material that contains a lot of lignocellulose. Cellulose in lignocellulose can be hydrolyzed to glucose to produce bioethanol. Problems arise because hydrolysis using pure cellulase requires relatively high costs, so it is necessary to find an alternative source of cheap cellulase. One of the cheap sources of cellulase is goat rumen fluid. Until now, there is not much information regarding the reaction kinetics and cellulase characteristics of goat rumen fluid. The purpose of this study was to isolate crude cellulase extract, determine the KM and Vmax values ​​and determine the optimum temperature and pH. The research was carried out at the Unsoed Agricultural Technology Laboratory. The samples used were seven rumen fluids. The study began with isolation followed by enzymatic kinetics studies. Fractionation was carried out by adding ammonium sulfate salt (50, 60,70, and 80 %), and centrifugation at 7,000 rpm at 4 oC for 15 minutes. Crude cellulase extract with the highest enzyme activity value was used for the study of enzymatic reaction kinetics and characterization. The crude cellulase resistance test to temperature was carried out at 45, 55 and 65 oC and the pH was carried out at pH 4, 5, 6, 7 and 8. The KM and Vmax values ​were determined by measuring the activity of crude cellulase extract at various concentrations of CMC (1, 1 ,5, 2, 2.5, and 3 %). The results showed that crude cellulase extract had an average specific activity of 1.7356 IU/mg. The highest enzyme activity was 0.9854 IU/ml. The optimum crude cellulase extract was at pH 6 with an activity of 1.1015 IU/ml and a temperature of 60 oC with an activity of 0.7829 IU/ml. At a CMC concentration of 2.5% crude cellulase extract had an activity of 0.3179 IU/ml with a Vmax value of 0.0045 IU/ml and a KM of 0.0252 %.
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