Thermoacidophilic archaea such as Thermoplasma acidophilum and Sulfolobus solfataricus metabolize Dglucose via the non‐phosphorylated metabolic pathway (NMP), an ED‐like pathway in which aldose intermediates are not phosphorylated. The first step of the non‐phosphorylated glycolysis pathway is the oxidation of D‐glucose to D‐gluconate, catalyzed by NADP‐dependent D‐glucose dehydrogenase. DGluconate is then dehydrated by D‐gluconate dehydratase to 2‐keto‐3‐deoxy‐D‐gluconate (KDG), which undergoes an aldolate cleavage to pyruvate and D‐glyceraldehyde by KDG aldolase. During the last ten years we investigated the NMPs in T. acidophilum and S. solfataricus and identified the genes involved in archaeal NMPs. Recently we have also found that oligotrophic marine bacteria metabolize D‐glucose, D‐galactose, Dxylose, L‐arabinose and D‐fucose via the novel NMP where the downstream pathway is different from the previously known NMPs. A BLAST search of the GenBank database has revealed that proteins homologous to the NMP enzymes are present in all three phylogenetic domains of life (Archaea, Bacteria, and Eukarya), which may indicate possible advantages of the non‐phosphorylated metabolic system under oligotrophic or starved conditions. This presentation will review our current understanding of the NMP system in natural environments and our recent progress in the application of the NMP system to the production of bioproducts such as biofuels and bioplastics.
저자
Sun Bok Lee [ Department of Chemical Engineering and Gyungbuk Sea Grant Institute, Pohang University of Science and Technology (POSTECH), Pohang, Korea ]
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
6. 기타 국제 교류 등 본 학회의 목적 달성을 위한 제반 활동