日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

De novo designed protein guiding targeted protein degradation

从头设计的蛋白质指导靶向蛋白质降解

Li, Zhendong; Qiao, Gan; Wang, Xianghe; Wang, Ming; Cheng, Jinyu; Hu, Guipeng; Li, Xiaomin; Wu, Jing; Liu, Jia; Gao, Cong; Liu, Liming

Microbial engineering for monocyclic aromatic compounds production

利用微生物工程技术生产单环芳香族化合物

Hu, Guipeng; Gao, Cong; Li, Xiaomin; Song, Wei; Wu, Jing

Engineering microorganisms for enhanced tolerance to toxic end-products and intermediates

改造微生物以提高其对有毒终产物和中间体的耐受性

Wang, Xianghe; Wu, Jing; Li, Xiaomin; Hu, Guipeng; Liu, Liming

Structural and mechanism-based engineering of sulfotransferase CHST15 for the efficient synthesis of chondroitin sulfate E

基于结构和机制的磺基转移酶CHST15工程改造,以实现硫酸软骨素E的高效合成

Wang, Zhonghua; Song, Wei; Wei, Wanqing; Qi, Hejia; Meng, Weiwei; Liu, Jia; Li, Xiaomin; Gao, Cong; Liu, Liming; Hu, Guipeng; Zhou, Yiwen; Wu, Jing

Med3-mediated NADPH generation to help Saccharomyces cerevisiae tolerate hyperosmotic stress

Med3介导的NADPH生成有助于酿酒酵母耐受高渗胁迫

Hou, Shuo; Gao, Cong; Liu, Jia; Chen, Xiulai; Wei, Wanqing; Song, Wei; Hu, Guipeng; Li, Xiaomin; Wu, Jing; Liu, Liming

Bifunctional optogenetic switch for improving shikimic acid production in E. coli

用于提高大肠杆菌中莽草酸产量的双功能光遗传开关

Komera, Irene; Gao, Cong; Guo, Liang; Hu, Guipeng; Chen, Xiulai; Liu, Liming

Current state and future perspectives of cytochrome P450 enzymes for C-H and C=C oxygenation

细胞色素P450酶在CH和C=C氧化反应中的现状和未来展望

Yan, Yu; Wu, Jing; Hu, Guipeng; Gao, Cong; Guo, Liang; Chen, Xiulai; Liu, Liming; Song, Wei

Metabolic engineering of Streptomyces to enhance the synthesis of valuable natural products.

通过链霉菌代谢工程增强其合成有价值的天然产物

Xu Zuwei, Ji Lihao, Tang Wenxiu, Guo Liang, Gao Cong, Chen Xiulai, Liu Jia, Hu Guipeng, Liu Liming

Reprogramming microbial populations using a programmed lysis system to improve chemical production

利用程序化裂解系统对微生物群落进行重编程,以提高化学品产量

Diao, Wenwen; Guo, Liang; Ding, Qiang; Gao, Cong; Hu, Guipeng; Chen, Xiulai; Li, Yang; Zhang, Linpei; Chen, Wei; Chen, Jian; Liu, Liming

Engineering Escherichia coli biofilm to increase contact surface for shikimate and L-malate production

通过工程改造大肠杆菌生物膜,增加莽草酸和L-苹果酸生产的接触面积。

Ding, Qiang; Liu, Yadi; Hu, Guipeng; Guo, Liang; Gao, Cong; Chen, Xiulai; Chen, Wei; Chen, Jian; Liu, Liming