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

Shifting redox reaction equilibria on demand using an orthogonal redox cofactor

利用正交氧化还原辅因子按需改变氧化还原反应平衡

Aspacio, Derek; Zhang, Yulai; Cui, Youtian; Luu, Emma; King, Edward; Black, William B; Perea, Sean; Zhu, Qiang; Wu, Yongxian; Luo, Ray; Siegel, Justin B; Li, Han

Engineering Escherichia coli Pyruvate Metabolism to Generate Noncanonical Reducing Power

通过基因工程改造大肠杆菌丙酮酸代谢以产生非经典还原力

Aspacio, Derek; Luu, Emma; Worakaensai, Suphanida; Cui, Youtian; Maxel, Sarah; King, Edward; Hagerty, Raine; Chu, Alexander; Minn, Derek; Siegel, Justin B; Li, Han

Shifting Redox Reaction Equilibria on Demand Using an Orthogonal Redox Cofactor

利用正交氧化还原辅因子按需改变氧化还原反应平衡

Aspacio, Derek; Zhang, Yulai; Cui, Youtian; King, Edward; Black, William B; Perea, Sean; Luu, Emma; Siegel, Justin B; Li, Han

Engineering Embden-Meyerhof-Parnas Glycolysis to Generate Noncanonical Reducing Power

工程改造 Embden-Meyerhof-Parnas 糖酵解途径以产生非典型还原力

King, Edward; Cui, Youtian; Aspacio, Derek; Nicklen, Frances; Zhang, Linyue; Maxel, Sarah; Luo, Ray; Siegel, Justin B; Aitchison, Erick; Li, Han

Growth-Based, High-Throughput Selection for NADH Preference in an Oxygen-Dependent Biocatalyst

基于生长的高通量选择氧依赖性生物催化剂中的 NADH 偏好

Sarah Maxel, Samer Saleh, Edward King, Derek Aspacio, Linyue Zhang, Ray Luo, Han Li

A Growth-Based, High-Throughput Selection Platform Enables Remodeling of 4-Hydroxybenzoate Hydroxylase Active Site

基于生长的高通量筛选平台能够重塑4-羟基苯甲酸羟化酶活性位点

Maxel, Sarah; Aspacio, Derek; King, Edward; Zhang, Linyue; Acosta, Ana Paula; Li, Han

Metabolic engineering of Escherichia coli for optimized biosynthesis of nicotinamide mononucleotide, a noncanonical redox cofactor

通过代谢工程改造大肠杆菌,优化烟酰胺单核苷酸(一种非经典氧化还原辅因子)的生物合成。

Black, William B; Aspacio, Derek; Bever, Danielle; King, Edward; Zhang, Linyue; Li, Han