Lysinoalanine cross-linking is a conserved post-translational modification in the spirochete flagellar hook

Author:

Lynch Michael J1ORCID,Deshpande Maithili1,Kurniyati Kurni2,Zhang Kai2,James Milinda3,Miller Michael4,Zhang Sheng5ORCID,Passalia Felipe J6ORCID,Wunder Elsio A67ORCID,Charon Nyles W3ORCID,Li Chunhao2ORCID,Crane Brian R1ORCID

Affiliation:

1. Department of Chemistry and Chemical Biology, Cornell University , Ithaca, NY 14853 , USA

2. Philips Institute for Oral Health Research, Virginia Commonwealth University School of Dentistry , Richmond, VA 23298 , USA

3. Department of Microbiology, Immunology, and Cell Biology, Robert C. Byrd Health Sciences Center, West Virginia University , Morgantown, WV 26505 , USA

4. Department of Biochemistry, Robert C. Byrd Health Sciences Center, West Virginia University , Morgantown, WV 26505 , USA

5. Proteomics and Metabolomics Facility, Institute of Biotechnology, Cornell University , Ithaca, NY 14853 , USA

6. Department of Epidemiology of Microbial Diseases, Yale School of Public Health , New Haven, CT 06510 , USA

7. Department of Pathobiology and Veterinary Science, University of Connecticut , Storrs, CT 06269 , USA

Abstract

Abstract Spirochetes cause Lyme disease, leptospirosis, syphilis, and several other human illnesses. Unlike other bacteria, spirochete flagella are enclosed within the periplasmic space where the filaments distort and push the cell body by the action of the flagellar motors. We previously demonstrated that the oral pathogen Treponema denticola (Td) and Lyme disease pathogen Borreliella burgdorferi (Bb) form covalent lysinoalanine (Lal) cross-links between conserved cysteine and lysine residues of the FlgE protein that composes the flagellar hook. In Td, Lal is unnecessary for hook assembly but is required for motility, presumably due to the stabilizing effect of the cross-link. Herein, we extend these findings to other, representative spirochete species across the phylum. We confirm the presence of Lal cross-linked peptides in recombinant and in vivo-derived samples from Treponema spp., Borreliella spp., Brachyspira spp., and Leptospira spp. As was observed with Td, a mutant strain of Bb unable to form the cross-link has greatly impaired motility. FlgE from Leptospira spp. does not conserve the Lal-forming cysteine residue which is instead substituted by serine. Nevertheless, Leptospira interrogans FlgE also forms Lal, with several different Lal isoforms being detected between Ser-179 and Lys-145, Lys-148, and Lys-166, thereby highlighting species or order-specific differences within the phylum. Our data reveal that the Lal cross-link is a conserved and necessary posttranslational modification across the spirochete phylum and may thus represent an effective target for the development of spirochete-specific antimicrobials.

Funder

National Institutes of Health

Fundação de Amparo à Pesquisa do Estado de São Paulo

Chemical Biology Interface NIH training

Publisher

Oxford University Press (OUP)

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