ComFB, a widespread family of c-di-NMP receptor proteins

S Sherihan Samir (Interfaculty Institute of Microbiology and Infection Medicine, Organismic Interactions Department, Cluster of Excellence “Controlling Microbes to Fight Infections - CMFI”, Eberhard Karls University of Tübingen) A Abdalla A. Elshereef (Interfaculty Institute of Microbiology and Infection Medicine, Organismic Interactions Department, Cluster of Excellence “Controlling Microbes to Fight Infections - CMFI”, Eberhard Karls University of Tübingen) V Vikram Alva (Department of Protein Evolution, Max Planck Institute for Biology) J Jeanette Hahn (Public Health Research Institute and Department of Microbiology, Biochemistry and Molecular Genetics, New Jersey Medical School, Rutgers University) F Frederik Eck (Institute of Microbiology and Molecular Biology, Justus-Liebig-Universität Giessen) L Louisa Celma (Public Health Research Institute and Department of Microbiology, Biochemistry and Molecular Genetics, New Jersey Medical School, Rutgers University) E Eduardo S. Lopes (Microbial Biochemistry Group, Institute of Phototrophic Microbiology, Heinrich-Heine University Düsseldorf) K Kai Thormann (Institute of Microbiology and Molecular Biology, Justus-Liebig-Universität Giessen) D David Dubnau (Public Health Research Institute and Department of Microbiology, Biochemistry and Molecular Genetics, New Jersey Medical School, Rutgers University) M Michael Y. Galperin (Division of Intramural Research, National Library of Medicine, NIH) K Khaled A. Selim (Microbial Biochemistry Group, Institute of Phototrophic Microbiology, Faculty of Mathematics and Natural Sciences, Heinrich-Heine University Düsseldorf)

Abstract

Cyclic dimeric-GMP (c-di-GMP) is a ubiquitous bacterial second messenger that regulates a variety of cellular processes, including motility, biofilm formation, secretion, cell cycle progression, and development, and also contributes to the virulence of many bacterial pathogens. While the genes encoding c-di-GMP cyclases and hydrolases are readily identifiable in microbial genomes, known c-di-GMP receptor domains are quite few, with only PilZ and MshEN broadly distributed across bacterial phyla. Recently, a new c-di-GMP receptor, named CdgR or ComFB, has been identified in cyanobacteria and shown to regulate cell size and natural competence. We demonstrated that CdgR proteins exhibit sequence and structural similarity to the Bacillus subtilis late competence development protein ComFB, a conserved protein of unknown function associated with bacterial competence. This prompted us to hypothesize that ComFB and ComFB-like proteins could also serve as c-di-GMP receptors. Here, we comprehensively investigated the ComFB protein family and demonstrated that ComFB proteins are evolutionarily widespread among bacteria and function as a novel family of c-di-GMP receptors. We showed that ComFB proteins from Gram-positive bacteria ( B. subtilis , Thermoanaerobacter brockii ) and Gram-negative pathogens ( Vibrio cholerae , Treponema denticola ) bind c-di-GMP with high affinity. Several ComFB proteins also bind cyclic di-adenosine monophosphate (c-di-AMP), suggesting that ComFB represents a widely distributed bacterial protein family with dual specificity for c-di-GMP and c-di-AMP. Our physiological studies further showed that ComFB plays vital roles in controlling motility in a c-di-GMP-dependent manner in two phylogenetically distant bacteria, B. subtilis and the gram-negative Shewanella oneidensis , attesting to the biological relevance of ComFB as a c-di-GMP binding protein.

Article Details

Volume / Issue Vol. 122, Issue 38
Published September 23, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (11)

S

Sherihan Samir

Interfaculty Institute of Microbiology and Infection Medicine, Organismic Interactions Department, Cluster of Excellence “Controlling Microbes to Fight Infections - CMFI”, Eberhard Karls University of Tübingen

A

Abdalla A. Elshereef

Interfaculty Institute of Microbiology and Infection Medicine, Organismic Interactions Department, Cluster of Excellence “Controlling Microbes to Fight Infections - CMFI”, Eberhard Karls University of Tübingen

V

Vikram Alva

Department of Protein Evolution, Max Planck Institute for Biology

J

Jeanette Hahn

Public Health Research Institute and Department of Microbiology, Biochemistry and Molecular Genetics, New Jersey Medical School, Rutgers University

F

Frederik Eck

Institute of Microbiology and Molecular Biology, Justus-Liebig-Universität Giessen

L

Louisa Celma

Public Health Research Institute and Department of Microbiology, Biochemistry and Molecular Genetics, New Jersey Medical School, Rutgers University

E

Eduardo S. Lopes

Microbial Biochemistry Group, Institute of Phototrophic Microbiology, Heinrich-Heine University Düsseldorf

K

Kai Thormann

Institute of Microbiology and Molecular Biology, Justus-Liebig-Universität Giessen

D

David Dubnau

Public Health Research Institute and Department of Microbiology, Biochemistry and Molecular Genetics, New Jersey Medical School, Rutgers University

M

Michael Y. Galperin

Division of Intramural Research, National Library of Medicine, NIH

K

Khaled A. Selim

Microbial Biochemistry Group, Institute of Phototrophic Microbiology, Faculty of Mathematics and Natural Sciences, Heinrich-Heine University Düsseldorf