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

Sequence Display enables large-scale sequence-activity datasets for rapid protein evolution

序列显示技术能够构建大规模序列活性数据集,从而实现蛋白质的快速进化。

Cheng, Linqi; Zheng, Xinzhe; Jiang, Shiyu Jason; Hu, Yu; Liu, Yijie; Yang, Kaiqiang; Rui, Jinyan; Ding, Haoxue; Zhang, Mengxi; Yuan, Teng; Lu, Qianglan; Ye, Haoxin; Li, Chen-Long; Guo, Yiming; Tian, Zuotong; Qin, Anna; Zhou, Boyang; Yang, Kevin K; Huang, Xiongyi; Xiao, Han

Merging photoredox with metalloenzymatic catalysis for enantioselective decarboxylative C(sp(3))‒N(3) and C(sp(3))‒SCN bond formation

将光氧化还原反应与金属酶催化相结合,用于对映选择性脱羧C(sp(3))‒N(3)和C(sp(3))‒SCN键的形成

Rui, Jinyan; Mu, Xinpeng; Soler, Jordi; Paris, Jared C; Guo, Yisong; Garcia-Borràs, Marc; Huang, Xiongyi

Engineering non-haem iron enzymes for enantioselective C(sp3)-F bond formation via radical fluorine transfer

通过自由基氟转移改造非血红素铁酶,实现对映选择性C(sp3)-F键形成

Zhao, Qun; Chen, Zhenhong; Soler, Jordi; Chen, Xiahe; Rui, Jinyan; Ji, Nathan Tianlin; Yu, Qinglan E; Yang, Yunfang; Garcia-Borràs, Marc; Huang, Xiongyi

Radical fluorine transfer catalysed by an engineered nonheme iron enzyme

工程改造的非血红素铁酶催化的自由基氟转移

Zhao, Qun; Chen, Zhenhong; Rui, Jinyan; Huang, Xiongyi

Radical-relay C(sp(3))-H azidation catalyzed by an engineered nonheme iron enzyme.

由工程化非血红素铁酶催化的自由基接力 C(sp(3))-H 叠氮化反应

Zhao Qun, Rui Jinyan, Huang Xiongyi

Directed evolution of nonheme iron enzymes to access abiological radical-relay C(sp(3))-H azidation

定向进化非血红素铁酶以实现非生物自由基传递C(sp(3))-H叠氮化反应

Rui, Jinyan; Zhao, Qun; Huls, Anthony J; Soler, Jordi; Paris, Jared C; Chen, Zhenhong; Reshetnikov, Viktor; Yang, Yunfang; Guo, Yisong; Garcia-Borràs, Marc; Huang, Xiongyi

Catalytic and Photochemical Strategies to Stabilized Radicals Based on Anomeric Nucleophiles

基于异头亲核试剂的稳定自由基的催化和光化学策略

Zhu, Feng; Zhang, Shuo-Qing; Chen, Zhenhao; Rui, Jinyan; Hong, Xin; Walczak, Maciej A