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

Ground-State Electron Transfer as an Initiation Mechanism for Biocatalytic C-C Bond Forming Reactions

基态电子转移作为生物催化C-C键形成反应的引发机制

Fu, Haigen; Lam, Heather; Emmanuel, Megan A; Kim, Ji Hye; Sandoval, Braddock A; Hyster, Todd K

Emerging strategies for expanding the toolbox of enzymes in biocatalysis

生物催化中酶工具箱扩展的新兴策略

Sandoval, Braddock A; Hyster, Todd K

Photoexcitation of flavoenzymes enables a stereoselective radical cyclization

黄素酶的光激发可实现立体选择性自由基环化反应。

Biegasiewicz, Kyle F; Cooper, Simon J; Gao, Xin; Oblinsky, Daniel G; Kim, Ji Hye; Garfinkle, Samuel E; Joyce, Leo A; Sandoval, Braddock A; Scholes, Gregory D; Hyster, Todd K

Photoenzymatic Catalysis Enables Radical-Mediated Ketone Reduction in Ene-Reductases

光酶催化作用使烯还原酶中自由基介导的酮还原成为可能

Sandoval, Braddock A; Kurtoic, Sarah I; Chung, Megan M; Biegasiewicz, Kyle F; Hyster, Todd K

Heme redox potentials hold the key to reactivity differences between nitric oxide reductase and heme-copper oxidase

血红素氧化还原电位是解释一氧化氮还原酶和血红素-铜氧化酶反应活性差异的关键。

Bhagi-Damodaran, Ambika; Reed, Julian H; Zhu, Qianhong; Shi, Yelu; Hosseinzadeh, Parisa; Sandoval, Braddock A; Harnden, Kevin A; Wang, Shuyan; Sponholtz, Madeline R; Mirts, Evan N; Dwaraknath, Sudharsan; Zhang, Yong; Moënne-Loccoz, Pierre; Lu, Yi

Why copper is preferred over iron for oxygen activation and reduction in haem-copper oxidases

为什么血红素铜氧化酶中氧活化和还原反应更倾向于使用铜而不是铁?

Bhagi-Damodaran, Ambika; Michael, Matthew A; Zhu, Qianhong; Reed, Julian; Sandoval, Braddock A; Mirts, Evan N; Chakraborty, Saumen; Moënne-Loccoz, Pierre; Zhang, Yong; Lu, Yi

Crystallographic insights into the structure-activity relationships of diazaborine enoyl-ACP reductase inhibitors

晶体学对二氮硼烯酰-ACP还原酶抑制剂构效关系的深入研究

Jordan, Cheryl A; Sandoval, Braddock A; Serobyan, Mkrtich V; Gilling, Damian H; Groziak, Michael P; Xu, H Howard; Vey, Jessica L