Optimal microbial strains for bioethanol fermentation must utilize various carbon sources and withstand stressful conditions such as high temperature, high osmotic pressure, high concentration of ethanol, and, in some cases, extreme pH. We have developed a method in microbial cells that uses combinatorial libraries of zinc finger–containing, artificial transcription factors to induce stress resistance and to identify genes involved in stress resistance. By linking multiple zinc finger domains together, we constructed more than 300,000 zinc finger proteins with varied DNA-binding specificities. These zinc finger proteins were fused to appropriate effector domains to produce libraries of transcription factors. Zinc finger transcriptional regulatory proteins, then, were expressed individually in yeast or in E. coli, and the transformed cells were screened for organic solvent tolerance and thermotolerance. Combining chromatin immunoprecipitation experiments and in silico prediction of target DNA binding sequences for the artificial transcription factors, we identified novel genes associated with the stress resistance in E. coli. Our results show that randomized libraries of artificial transcription factors are powerful tools for functional genomic studies and for microbial engineering.
저자
Jin-Soo Kim [ Department of Chemistry, Seoul National University ]
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