Structural basis for Lamassu-based antiviral immunity and its evolution from DNA repair machinery

M Matthieu Haudiquet (Institut Pasteur, Université Paris-Cité, CNRS UMR2535, Department of Genomes and Genetics, Molecular Diversity of Microbes) A Arpita Chakravarti (Structural Biology Program, Memorial Sloan-Kettering Cancer Center) Z Zhiying Zhang (Structural Biology Program, Memorial Sloan-Kettering Cancer Center) J Josephine L. Ramirez A Alba Herrero del Valle (Institut Pasteur, Université Paris-Cité, CNRS UMR2535, Department of Genomes and Genetics, Molecular Diversity of Microbes) P Paul Dominic B. Olinares (Laboratory of Mass Spectrometry and Gaseous Ion Chemistry, Rockefeller University) R Rachel Lavenir (Institut Pasteur, Université Paris-Cité, CNRS UMR2535, Department of Genomes and Genetics, Molecular Diversity of Microbes) M Massilia Aït Ahmed (Institut Pasteur, Université Paris-Cité, CNRS UMR2535, Department of Genomes and Genetics, Molecular Diversity of Microbes) M M. Jason de la Cruz (Structural Biology Core) B Brian T. Chait (Laboratory of Mass Spectrometry and Gaseous Ion Chemistry, Rockefeller University) S Samuel H. Sternberg A Aude Bernheim (Institut Pasteur, Université Paris-Cité, CNRS UMR2535, Department of Genomes and Genetics, Molecular Diversity of Microbes) D Dinshaw J. Patel (Structural Biology Program, Memorial Sloan-Kettering Cancer Center)

Abstract

Bacterial immune systems exhibit remarkable diversity and modularity, as a consequence of the continuous selective pressures imposed by phage predation. Despite recent mechanistic advances, the evolutionary origins of many antiphage immune systems remain elusive, especially for those that encode homologs of the structural maintenance of chromosomes (SMC) superfamily, which are essential for chromosome maintenance and DNA repair across domains of life. Here, we elucidate the structural basis and evolutionary emergence of Lamassu, a bacterial immune system family featuring diverse effectors but a core conserved SMC-like sensor. Using cryo-EM, we determined structures of the Vibrio cholerae Lamassu complex in both apo- and dsDNA-bound states, revealing unexpected stoichiometry and topological architectures. We further demonstrate how Lamassu specifically senses dsDNA ends in vitro and phage replication origins in vivo, thereby triggering the formation of LmuA tetramers that activate its Cap4 nuclease domain. Our findings reveal that Lamassu evolved via exaptation of the bacterial Rad50-Mre11 DNA repair system to form a compact, modular sensor for viral replication, exemplifying how cellular machinery can be co-opted for novel immune functions.

Article Details

Volume / Issue Vol. 122, Issue 47
Published November 25, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (13)

M

Matthieu Haudiquet

Institut Pasteur, Université Paris-Cité, CNRS UMR2535, Department of Genomes and Genetics, Molecular Diversity of Microbes

A

Arpita Chakravarti

Structural Biology Program, Memorial Sloan-Kettering Cancer Center

Z

Zhiying Zhang

Structural Biology Program, Memorial Sloan-Kettering Cancer Center

J

Josephine L. Ramirez

A

Alba Herrero del Valle

Institut Pasteur, Université Paris-Cité, CNRS UMR2535, Department of Genomes and Genetics, Molecular Diversity of Microbes

P

Paul Dominic B. Olinares

Laboratory of Mass Spectrometry and Gaseous Ion Chemistry, Rockefeller University

R

Rachel Lavenir

Institut Pasteur, Université Paris-Cité, CNRS UMR2535, Department of Genomes and Genetics, Molecular Diversity of Microbes

M

Massilia Aït Ahmed

Institut Pasteur, Université Paris-Cité, CNRS UMR2535, Department of Genomes and Genetics, Molecular Diversity of Microbes

M

M. Jason de la Cruz

Structural Biology Core

B

Brian T. Chait

Laboratory of Mass Spectrometry and Gaseous Ion Chemistry, Rockefeller University

S

Samuel H. Sternberg

A

Aude Bernheim

Institut Pasteur, Université Paris-Cité, CNRS UMR2535, Department of Genomes and Genetics, Molecular Diversity of Microbes

D

Dinshaw J. Patel

Structural Biology Program, Memorial Sloan-Kettering Cancer Center