Gain‐of‐Function Engineering of the NifEN Scaffold Into a Self‐Assembling Nitrogenase

ABSTRACT Biological nitrogen fixation by Mo‐nitrogenase is a complex process requiring coordinated electron transfer through specialized metal clusters. NifEN, an α 2 β 2 heterotetrameric homolog of the nitrogenase catalytic component NifDK, naturally serves as a maturation scaffold but exhibits only trace catalytic activity due to its “imperfect” cluster environments. In this study, we systematically engineered NifEN to reconstruct the structural features of NifDK, specifically targeting the P→M cluster electron relay and the active‐site M‐cluster environment. Specifically, we developed a series of variants, culminating in NifEN P/M_S2B , which incorporates a restored P‐cluster species and a refined M‐cluster coordination site and S2B‐associated belt region. Spectroscopic analysis confirmed the successful installation of the target clusters. Moreover, activity assays and nanoSIMS analysis demonstrated that NifEN P/M_S2B supported ATP‐dependent N 2 reduction both in vitro and in vivo. Structural modeling further identified remaining catalytic bottlenecks, particularly those in the S3A and S5A regions, highlighting the importance of precise cofactor belt organization for substrate reduction. Together, these findings establish NifEN as a self‐assembling, catalytically competent nitrogenase scaffold that bypasses the need for complex cofactor transfer steps, providing a streamlined platform for mechanistic studies and engineering efforts of biological nitrogen fixation.

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Publication Details

Journal
Angewandte Chemie International Edition
Published
2026-09-21
DOI
https://doi.org/10.1002/anie.8683437
Primary Topic
Metalloenzymes and iron-sulfur proteins
Type
article
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article

Gain‐of‐Function Engineering of the NifEN Scaffold Into a Self‐Assembling Nitrogenase

Yilin Hu, Steve Ortiz, Markus Walter Ribbe, Chi Chung Lee et al.
Angewandte Chemie International Edition
Metalloenzymes and iron-sulfur proteins
article

Gain‐of‐Function Engineering of the NifEN Scaffold Into a Self‐Assembling Nitrogenase

Yilin Hu, Steve Ortiz, Markus Walter Ribbe, Chi Chung Lee, Yimo Yang
article en

Abstract

ABSTRACT Biological nitrogen fixation by Mo‐nitrogenase is a complex process requiring coordinated electron transfer through specialized metal clusters. NifEN, an α 2 β 2 heterotetrameric homolog of the nitrogenase catalytic component NifDK, naturally serves as a maturation scaffold but exhibits only trace catalytic activity due to its “imperfect” cluster environments. In this study, we systematically engineered NifEN to reconstruct the structural features of NifDK, specifically targeting the P→M cluster electron relay and the active‐site M‐cluster environment. Specifically, we developed a series of variants, culminating in NifEN P/M_S2B , which incorporates a restored P‐cluster species and a refined M‐cluster coordination site and S2B‐associated belt region. Spectroscopic analysis confirmed the successful installation of the target clusters. Moreover, activity assays and nanoSIMS analysis demonstrated that NifEN P/M_S2B supported ATP‐dependent N 2 reduction both in vitro and in vivo. Structural modeling further identified remaining catalytic bottlenecks, particularly those in the S3A and S5A regions, highlighting the importance of precise cofactor belt organization for substrate reduction. Together, these findings establish NifEN as a self‐assembling, catalytically competent nitrogenase scaffold that bypasses the need for complex cofactor transfer steps, providing a streamlined platform for mechanistic studies and engineering efforts of biological nitrogen fixation.

Angewandte Chemie International Edition
University of California, Irvine (US)
Openalex Percentile: Top 29%
Metalloenzymes and iron-sulfur proteins
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Gain‐of‐Function Engineering of the NifEN Scaffold Into a Self‐Assembling Nitrogenase — Yilin Hu, Steve Ortiz, et al. · Angewandte Chemie International Edition (2026) | TGRS Research Map | TGRS