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Introduction to Enzymes01:22

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The use of enzymes by humans dates to 7000 BCE. Humans first used enzymes to ferment sugars and produce alcohol without knowing that this was an enzyme-catalyzed reaction. Wilhelm Kuhne coined the term 'enzyme' in 1877 from the Greek words ‘en’ meaning ‘in’ or ‘within’ and ‘zyme’ meaning ‘yeast.’
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The theory of catalytically perfect enzymes was first proposed by W.J. Albery and J. R. Knowles in 1976. These enzymes catalyze biochemical reactions at high-speed. Their catalytic efficiency values range from 108-109 M-1s-1. These enzymes are also called 'diffusion-controlled' as the only rate-limiting step in the catalysis is that of the substrate diffusion into the active site. Examples include triose phosphate isomerase, fumarase, and superoxide dismutase.
 
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Industrial insulin production uses genetically engineered E. coli expressing a proinsulin gene controlled by a tryptophan promoter and containing a methionine linker for later cleavage. The cells also carry ampicillin resistance for selective growth. Seed cultures are stored at −80 °C and production begins by thawing a small amount to inoculate starter cultures, which are progressively scaled to a 50,000-L bioreactor. In the bioreactor, E. coli grow in nutrient-rich media under...
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Polyethylene terephthalate (PET) is a synthetic polymer widely utilized in the packaging industry, particularly for bottles and containers. Due to its chemical stability and durability, PET accumulates in the environment, contributing significantly to plastic pollution. It comprises repeating units of terephthalic acid and ethylene glycol, resulting in a semi-crystalline structure that is resistant to natural degradation processes.A notable breakthrough in plastic biodegradation came with the...
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纸和造纸工业中的化学酶:当前的发展

Abdullah Arsalan1, Yuvaraj Ravikumar2, Xinrui Tang1

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Biotechnology advances
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工程化基因酶通过改善酶协同作用为纸和造纸 (P&P) 工业提供了解决方案. 这些先进的生物催化剂提高了效率,并减少了P&P加工对环境的影响.

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奇米尔酶是一种化学酶.脱化 (delignification) 是一个过程.酶工程是什么?酶工程是什么?多功能酶是一种多功能酶.纸和造纸行业的纸和造纸行业的纸和造纸行业的纸和造纸行业的纸和造纸行业.

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科学领域:

  • 生物技术和工业酶的使用
  • 可持续的化学加工方法
  • 材料科学 材料科学 材料科学

背景情况:

  • 纸和纸业 (P&P) 对于经济进步至关重要,但依赖于能源密集型和化学危险的工艺.
  • 酶减少了P&P中的化学和能源需求,但由于不同的最佳条件,当前的酶尾酒往往缺乏协同作用.
  • 这就需要开发能够在各种操作参数下有效运行的酶.

研究的目的:

  • 审查用于纸和造纸行业的工程化化学酶的开发.
  • 要突出酶工程如何克服传统酶应用的局限性.
  • 为设计多功能酶提供洞察力,以在P&P处理中发挥协同作用.

主要方法:

  • 审查酶工程方法以改善催化性能和稳定性.
  • 研究设计原理,以创建具有多个功能的化学酶.
  • 在不同的操作条件下分析协同酶作用的潜力.

主要成果:

  • 酶工程能够在不理想的环境中进行催化,并增强酶的稳定性.
  • 化学酶可以设计为同时执行多个催化功能.
  • 设计的多功能酶表现出有效的协同作用,改善了P&P处理.

结论:

  • 化学酶代表了纸和造纸行业的重大进步.
  • 酶工程为开发强大,协同作用的生物催化剂提供了一条途径.
  • 化学酶的选择性开发可以导致更可持续和更高效的P&P生产.