Liu Yiling A, Lee Chi Chung, Górecki Kamil, Stiebritz Martin T, Duffin Calder, Solomon Joseph B, Ribbe Markus W, Hu Yilin
Department of Molecular Biology and Biochemistry, University of California, Irvine, CA 92697-3900, USA.
Department of Biology, Friedrich-Alexander University Erlangen-Nuremberg, D-91052 Erlangen, Germany.
Sci Adv. 2025 May 2;11(18):eadw6785. doi: 10.1126/sciadv.adw6785.
The heterologous synthesis of a nitrogen-fixing system in a non-diazotrophic organism is a long-sought-after goal because of the crucial importance of nitrogenase for agronomy, energy, and the environment. Here, we report the heterologous synthesis of a two-component nitrogenase analog from , which consists of the reductase component (NifH) and the cofactor maturase (NifEN), in . Metal, electron paramagnetic resonance, and activity analyses verify the cluster composition and functional competence of the heterologously expressed NifH and NifEN. Nuclear magnetic resonance, nanoscale secondary ion mass spectrometry, and growth experiments further illustrate the ability of the NifH/NifEN system to reduce N and incorporate the reduced N into the cellular mass. These results establish NifEN/NifH as a simplified nitrogenase analog that could be optimized and engineered to facilitate transgenic expression and biotechnological adaptations of this important metalloenzyme.
由于固氮酶对农学、能源和环境至关重要,在非固氮生物中异源合成固氮系统是一个长期追求的目标。在此,我们报道了在[具体生物]中异源合成一种由还原酶组分(NifH)和辅因子成熟酶(NifEN)组成的双组分固氮酶类似物。金属、电子顺磁共振和活性分析验证了异源表达的NifH和NifEN的簇组成和功能活性。核磁共振、纳米级二次离子质谱和生长实验进一步说明了NifH/NifEN系统还原氮并将还原态氮整合到细胞物质中的能力。这些结果确立了NifEN/NifH作为一种简化的固氮酶类似物,可对其进行优化和工程改造,以促进这种重要金属酶的转基因表达和生物技术应用。