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

c-di-AMP-DasR signaling axis mediates mycobacterial acid resistance.

c-di-AMP-DasR 信号轴介导分枝杆菌的耐酸性。

Fu Yu, Xie Xue-Qin, Xu Zhan-Hui, Liang Yi-Fan, Yang Shi-Qi, Ye Bang-Ce, You Di

Actinobacteria TFDB: An integrated view of transcription factors in Actinobacteria

放线菌转录因子数据库:放线菌转录因子的综合概览

Fu, Yu; Xu, Zhan-Hui; Liang, Yi-Fan; Yang, Shi-Qi; Xie, Xue-Qin; Ye, Bang-Ce; You, Di

De novo design of hypercompact transcript degraders by engineering substrate-specific toxins and Cas6-CBS system.

通过改造底物特异性毒素和 Cas6-CBS 系统,从头设计超紧凑型转录本降解剂。

Chen Pin-Ru, Qin Pei-Pei, Wang Ya-Nan, Liu Peng-Fu, Zhang Xin-Yue, Qian Tao, Ye Bang-Ce, Yin Bin-Cheng

Self-Adjusting Engineered Probiotic for Targeted Tumor Colonization and Local Therapeutics Delivery.

用于靶向肿瘤定植和局部治疗药物递送的自调节工程益生菌

Zou Zhen-Ping, Wang Xin-Ge, Shi Xuan-Ren, Sun Shu-Ting, Mi Jing, Zhang Xiao-Peng, Yin Bin-Cheng, Zhou Ying, Ye Bang-Ce

Reversible acetylation of ribosomal protein S1 serves as a smart switch for Salmonella to rapidly adapt to host stress.

核糖体蛋白 S1 的可逆乙酰化是沙门氏菌快速适应宿主压力的智能开关

Shen Yi-Lin, Liu Tian-Xian, Xu Lei, Ye Bang-Ce, Zhou Ying

Gut microbiota and associated metabolites: key players in high-fat diet-induced chronic diseases

肠道菌群及其相关代谢产物:高脂饮食诱发慢性疾病的关键因素

Du, Wei; Zou, Zhen-Ping; Ye, Bang-Ce; Zhou, Ying

De novo biosynthesis of quercetin in Yarrowia Lipolytica through systematic metabolic engineering for enhanced yield

通过系统代谢工程在解脂耶氏酵母中从头生物合成槲皮素,以提高产量

Dong, Yuxing; Wei, Wenping; Li, Mengfan; Qian, Tao; Xu, Jiayun; Chu, Xiaohe; Ye, Bang-Ce

Combinatorial metabolic engineering of Yarrowia lipolytica for high-level production of the plant-derived diterpenoid sclareol

利用组合代谢工程改造解脂耶氏酵母,实现植物源二萜类化合物鼠尾草醇的高水平生产。

Chen, Jiang; Huang, Longzheng; Ye, Bang-Ce; Zhou, Ying

Engineered probiotic-mediated intratumoral delivery and controlled release of bacterial collagenase for cancer therapy

利用工程化益生菌介导的肿瘤内递送和可控释放细菌胶原酶进行癌症治疗

Li, Hong-Rui; Ye, Bang-Ce

Engineering the TetR-family transcriptional regulator XNR_0706 to enhance heterologous spinosad production in Streptomyces albus B4 chassis

通过改造 TetR 家族转录调控因子 XNR_0706,增强链霉菌 albus B4 底盘中异源多杀菌素的产量。

Cui, Xingjun; Tang, Hao; Wang, Wenzong; Wei, Wenping; Wu, Jing; Ye, Bang-Ce