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Biomolecular Condensates Power Nitrogen Cycling via Concurrent Redox Activities

delete2026-03-04
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PRE
AI
X
Xiaowei Song
L
Lecheng Lyu
C
Chao Li
Y
Yuefeng Ma
Y
Yanrun Zhou
Y
Yifan Dai *
R
Richard N. Zare *
DOI:10.1021/jacs.5c22593delete
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Abstract

Abstract

En 中文
The role of the inherent chemical activities of biomolecular condensates in metabolism remains underexplored. We discovered that biomolecular condensates, the constituents of which do not possess any intrinsic enzymatic activities, can modulate the nitrogen cycle composed of nitrate (NO3–), ammonia (NH3), and nitric oxide (NO·). By developing a single-condensate-based mass spectrometry technique, we observed condensate-dependent interconversion between NO3– and NH4+ with externally supplied nitrogen sources. Surprisingly, through mass-spectrometry-based protein analysis and fluorogenic reaction assays, we found that the autoxidation of the arginine residue on the disordered protein could also directly contribute to the released NO·, an important signaling factor in biological systems. This work expands our understanding about the intrinsic reactivity of biomolecular condensates, providing insight into its fundamental impact on nitrogen metabolism as a nitrogen supplier and regulator.
Keywords:
Biomolecular condensates
Nitrogen cycle
Redox activities
Autoxidation
Nitric oxide

Journal

Journal of the American Chemical Society cover
Journal of the American Chemical Society
IF:
15.6
Papers:
20.0W
Citations:
60.2W

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T
tsinghua university
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washington university in st. louis
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stanford university
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