Octameric dGTPase assemblies mediate broad anti-phage defense

M Miao Shi P Peipei Li Q Quanjin Li C Chao Ning S Sen Yin Y Yina Gao Y Yong Wang J Jingyu Li (School of Materials Science and Engineering) Z Zhaolong Li S Songqing Liu D Dong Li C Changwei Wei A Ang Gao

Abstract

Abstract Deoxyguanosine triphosphatases (dGTPases) are nucleotide-depleting enzymes known to play a role in antiviral defense. While their enzymatic mechanism is established, the structural and functional diversity of dGTPases remains poorly understood. Here, we report a systematic analysis of dGTPase homologs across bacteria, archaea, and eukaryotes, revealing their widespread distribution and association with diverse immune-related domains. Through integrative bioinformatics and structural mining, we identify a class of bacterial dGTPases that assemble into stable octameric and higher-order oligomeric structures. Using cryo-electron microscopy, we resolve the octameric and 16-mer assemblies of a representative Vibrio dGTPase (Vdg) and further captured filamentous forms. Functional assays demonstrate that octamer formation is essential and sufficient for antiviral activity, while higher-order assemblies are dispensable. We also identify dAMP as an allosteric regulator, underscoring the functional versatility of dGTPases. Our findings provide insights into the modular architecture, oligomerization-driven activation, and immune function of bacterial dGTPases, and broaden our understanding of nucleotide depletion-based antiviral strategies.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 25, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (13)

M

Miao Shi

P

Peipei Li

Q

Quanjin Li

C

Chao Ning

S

Sen Yin

Y

Yina Gao

Y

Yong Wang

J

Jingyu Li

School of Materials Science and Engineering

Z

Zhaolong Li

S

Songqing Liu

D

Dong Li

C

Changwei Wei

A

Ang Gao