Biological hydrogen production, using microorganisms, is an exciting field of technology development that offers potential production of usable hydrogen from a variety of renewable resources. Microbial hydrogen production is mainly based on H2 evolving enzyme, hydrogenase, specifically [Fe] hyrogenase. However, [Fe] hydrogenase has substantial limitation because of its oxygen-sensitive property. Thus in this work, we focused on [NiFe] hydrogenases as another target enzymes for microbial H2 production. Even they have relatively lower activity to [Fe] hydrogenase, they have high oxygen tolerance. This property is important to build more robust process for biohydrogen production. As a model system, recombinant E. coli which expressed [NiFe] hydrogenase was investigated for biohydrogen production. As target enzymes, [NiFe] hydrogenases from E. coli and H. marinus was cloned and expressed in E. coli BL21 because it is a non H2-producing strain. Up to now, it is generally known as [NiFe] hydrogenase is involved in H2-uptake process. However, in this work, E. coli BL21 expressing [NiFe] hydrogenase produced hydrogen actively compared to wild type BL21. Recombinant [NiFe] hydrogenase was also isolated as extract form or purified form and in vitro activity was investigated. Even [NiFe] hydrogenase origated from E. coli has oxygen tolerance, that from H. marinus has more highly tolerant property to oxygen. It showed 2-fold higher activity than E. coli [NiFe] hydrognease under normal atmospheric condition.
한국생물공학회 [The Korean Society for Biotechnology and Bioengineering]
설립연도
1984
분야
공학>생물공학
소개
이 법인은 생물 공학의 발전과 보급에 이바지하고, 회원 상호 간의 연구 협력과 친목을 도모함을 목적으로 한다
1. 생물공학 분야의 발전을 위한 연구 협력
2. 생물공학의 실용화를 촉진시키기 위한 산학 협동
3. 학술연구 발표회, 강연회, 연수회 등 학술활동의 개최
4. 국,영문 학술지,소식지,학술회의 Proceedings 및 학술도서의 발간
5. 생물공학 발전을 위한 정책 건의
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