Nitroreductases are important enzymes for a variety of applications, including cancer therapy and bioremediation. They often require encapsulation to improve stability and activity. We focus on genetically encoded encapsulation of nitroreductases within protein capsids, like encapsulins. Our study showcases the encapsulation of nitroreductase NfsB as functional dimers within encapsulins, which enhances protein activity and stability in diverse conditions. Mutations within the pore region are beneficial for activity of the encapsulated enzyme, potentially by increasing diffusion rates. Cryogenic electron microscopy reveals the overall architecture of the encapsulated dimeric NfsB within the nanoreactor environment and identifies multiple pore states in the shell. These findings highlight the potential of encapsulins as versatile tools for enhancing enzyme performance across various fields.
A nanoengineered tandem nitroreductase: designing a robust prodrug-activating nanoreactor.
纳米工程串联硝基还原酶:设计一种稳健的前药激活纳米反应器
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作者:Zmyslia Mariia, Capper Michael J, Grimmeisen Michael, Sartory Kerstin, Deuringer Benedikt, Abdelsalam Mohamed, Shen Kaiwei, Jung Manfred, Sippl Wolfgang, Koch Hans-Georg, Kaul Laurine, Süss Regine, Köhnke Jesko, Jessen-Trefzer Claudia
| 期刊: | RSC Chemical Biology | 影响因子: | 3.100 |
| 时间: | 2024 | 起止号: | 2024 Nov 4; 6(1):21-35 |
| doi: | 10.1039/d4cb00127c | 研究方向: | 免疫/内分泌 |
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