|本期目录/Table of Contents|

[1]林章凛,曹竹安,邢新会,等.工业生物催化技术[J].生物加工过程,2003,1(01):17-22.[doi:10.3969/j.issn.1672-3678.2003.01.006]
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工业生物催化技术()
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《生物加工过程》[ISSN:1672-3678/CN:32-1706/Q]

卷:
1
期数:
2003年01期
页码:
17-22
栏目:
出版日期:
2003-02-28

文章信息/Info

Title:
Industrial biocatalysis
作者:
林章凛曹竹安邢新会刘铮
清华大学 化工系生物化学工程研究所,北京 100084
关键词:
工业生物催化生物转化定向进化基因组学蛋白质组学
分类号:
Q814.2
DOI:
10.3969/j.issn.1672-3678.2003.01.006
摘要:
以蛋白质酶的工程应用为核心的工业生物催化技术,被认为是生物技术继生物医药和转基因植物之后的第三次浪潮。它的发展与应用将对人类的工业化学过程带来根本的变革。工业生物催化的兴起与以下的两个关键技术因素有密切的关手:(1)蛋白质定向进化技术的出现,(2)基因组学和蛋白质组学的发展。探讨了工业生物催化技术的现状和发展趋势,并对我国如何发展该领域的基础和应用研究提出一些见解。

参考文献/References:

[1] Council for Chemical Research (US). New biocatalysis: Essential tools for a sustainable 21st century chemical industry [M]. 1999.
[2] Arnold F H. Directed evolution. Creating biocatalysts for the future [J]. Chemical engineering science, 1996.5091-5102.doi:10.1016/S0009-2509(96)00288-6.
[3] Joo H, Lin Z, Arnold F H. Laboratory evolution of peroxide-mediated cytochrome P450 hydroxylation [J]. Nature, 1999.670-673.doi:10.1038/21395.
[4] Wilke D. Chemicals from biotechnology.molecular plant genetics will challenge the chemical and the fermentation industry [J]. Applied Microbiology and Biotechnology, 1999.135-145.doi:10.1007/s002530051500.
[5] Schmid A, Dordick J S, Hauer, B. Industrial Biocatalysts today and tomorrow [J]. Nature, 2001.258-268.doi:10.1038/35051736.

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备注/Memo

备注/Memo:
基金项目:清华大学校科研和教改项目
更新日期/Last Update: 1900-01-01