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Modeling Cutinase Enzyme Regulation in Polyethylene Terepthalate Plastic Biodegradation

机译:聚乙烯丁二醇酯塑料生物降解中的模拟Culinase酶调控

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PET (Polyethylene terephthalate) is a plastic material that is commonly used in our daily life. The high production of PET and others plastics that can be up to three hundred million tons per year, is not matched by its degradation rate and hence leads to environmental pollution. To overcome this problem, we develop a biodegradation system. This system utilizes LC Cutinase enzyme produced by engineered escherichia coli bacteria to degrade PET. To make the system works efficaciously, it is important to understand the mechanism underlying its enzyme regulation. Therefore, we construct a mathematical model to describe the regulation of LC Cutinase production. The stability of the model is analyzed. We show that the designated biodegradation system can give an oscillatory behavior that is very important to control the amount of inclusion body (the miss-folded proteins that reduce the efficiency of the biodegradation system).
机译:PET(聚对苯二甲酸乙二醇酯)是我们日常生活中常用的塑料材料。每年可以高达三亿吨的宠物和其他塑料的高生产率与其退化率不符合,因此导致环境污染。为了克服这个问题,我们开发了生物降解系统。该系统利用由工程化的大肠杆菌细菌产生的LC Cutinase酶降解宠物。为了使系统效力地工作,重要的是要理解其酶调节的机制。因此,我们构建一种数学模型来描述LC Cutinase生产的调节。分析了模型的稳定性。我们表明指定的生物降解系统可以给出振荡行为,这对于控制包含体量(降低生物降解系统效率的错过折叠蛋白质)非常重要。

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