Unveiling the molecular mechanisms of the type IX secretion system's response regulator: Structural and functional insights

Author:

Saran Anshu12ORCID,Kim Hey-Min3,Manning Ireland4,Hancock Mark A25ORCID,Schmitz Claus6ORCID,Madej Mariusz7ORCID,Potempa Jan78ORCID,Sola Maria6ORCID,Trempe Jean-François25ORCID,Zhu Yongtao49ORCID,Davey Mary Ellen3ORCID,Zeytuni Natalie12ORCID

Affiliation:

1. Department of Anatomy and Cell Biology, McGill University , 3640 Rue University, Montreal, QC H3A 0C7 , Canada

2. Centre de Recherche en Biologie Structurale (CRBS) , McGill University, 3649 Promenade Sir William Olser, Montreal, QC H3G 0B1 , Canada

3. Department of Microbiology, The Forsyth Institute , 245 First St, Cambridge, MA 02142 , USA

4. Department of Biological Sciences, Minnesota State University Mankato , 242 Trafton Science Center South, Mankato, MN 56001 , USA

5. Department of Pharmacology & Therapeutics, McGill University , 3655 Promenade Sir-William-Osler, Montreal, QC H3G 1Y6 , Canada

6. Department of Structural Biology, Molecular Biology Institute of Barcelona, Spanish Research Council, Barcelona Science Park , Barcelona E-08028 , Spain

7. Department of Microbiology, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University , Gronostajowa 7, Kraków PL-30-387 , Poland

8. Department of Oral Immunology and Infectious Diseases, School of Dentistry, University of Louisville , 501 S Preston St, Louisville, KY 40202 , USA

9. Department of Biological Sciences, Xi’an Jiaotong-Liverpool University , 111 Ren’ai Road, Suzhou Dushu Lake Science and Education Innovation District, Suzhou Industrial Park, Suzhou, Jiangsu 215123 , China

Abstract

Abstract The type IX secretion system (T9SS) is a nanomachinery utilized by bacterial pathogens to facilitate infection. The system is regulated by a signaling cascade serving as its activation switch. A pivotal member in this cascade, the response regulator protein PorX, represents a promising drug target to prevent the secretion of virulence factors. Here, we provide a comprehensive characterization of PorX both in vitro and in vivo. First, our structural studies revealed PorX harbors a unique enzymatic effector domain, which, surprisingly, shares structural similarities with the alkaline phosphatase superfamily, involved in nucleotide and lipid signaling pathways. Importantly, such pathways have not been associated with the T9SS until now. Enzymatic characterization of PorX's effector domain revealed a zinc-dependent phosphodiesterase activity, with active site dimensions suitable to accommodate a large substrate. Unlike typical response regulators that dimerize via their receiver domain upon phosphorylation, we found that zinc can also induce conformational changes and promote PorX's dimerization via an unexpected interface. These findings suggest that PorX can serve as a cellular zinc sensor, broadening our understanding of its regulatory mechanisms. Despite the strict conservation of PorX in T9SS-utilizing bacteria, we demonstrate that PorX is essential for virulence factors secretion in Porphyromonas gingivalis and affects metabolic enzymes secretion in the nonpathogenic Flavobacterium johnsoniae, but not for the secretion of gliding adhesins. Overall, this study advances our structural and functional understanding of PorX, highlighting its potential as a druggable target for intervention strategies aimed at disrupting the T9SS and mitigating virulence in pathogenic species.

Funder

National Institutes of Health

Howard Hughes Medical Institute

U.S. Department of Energy

National Institute of Dental and Craniofacial Research

Polish National Science Center

Publisher

Oxford University Press (OUP)

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