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

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 t...

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Autores principales: Lynch, Michael J, Deshpande, Maithili, Kurniyati, Kurni, Zhang, Kai, James, Milinda, Miller, Michael, Zhang, Sheng, Passalia, Felipe J, Wunder, Elsio A, Charon, Nyles W, Li, Chunhao, Crane, Brian R
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10691653/
https://www.ncbi.nlm.nih.gov/pubmed/38047041
http://dx.doi.org/10.1093/pnasnexus/pgad349
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author Lynch, Michael J
Deshpande, Maithili
Kurniyati, Kurni
Zhang, Kai
James, Milinda
Miller, Michael
Zhang, Sheng
Passalia, Felipe J
Wunder, Elsio A
Charon, Nyles W
Li, Chunhao
Crane, Brian R
author_facet Lynch, Michael J
Deshpande, Maithili
Kurniyati, Kurni
Zhang, Kai
James, Milinda
Miller, Michael
Zhang, Sheng
Passalia, Felipe J
Wunder, Elsio A
Charon, Nyles W
Li, Chunhao
Crane, Brian R
author_sort Lynch, Michael J
collection PubMed
description 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.
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spelling pubmed-106916532023-12-02 Lysinoalanine cross-linking is a conserved post-translational modification in the spirochete flagellar hook Lynch, Michael J Deshpande, Maithili Kurniyati, Kurni Zhang, Kai James, Milinda Miller, Michael Zhang, Sheng Passalia, Felipe J Wunder, Elsio A Charon, Nyles W Li, Chunhao Crane, Brian R PNAS Nexus Biological, Health, and Medical Sciences 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. Oxford University Press 2023-10-26 /pmc/articles/PMC10691653/ /pubmed/38047041 http://dx.doi.org/10.1093/pnasnexus/pgad349 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of National Academy of Sciences. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Biological, Health, and Medical Sciences
Lynch, Michael J
Deshpande, Maithili
Kurniyati, Kurni
Zhang, Kai
James, Milinda
Miller, Michael
Zhang, Sheng
Passalia, Felipe J
Wunder, Elsio A
Charon, Nyles W
Li, Chunhao
Crane, Brian R
Lysinoalanine cross-linking is a conserved post-translational modification in the spirochete flagellar hook
title Lysinoalanine cross-linking is a conserved post-translational modification in the spirochete flagellar hook
title_full Lysinoalanine cross-linking is a conserved post-translational modification in the spirochete flagellar hook
title_fullStr Lysinoalanine cross-linking is a conserved post-translational modification in the spirochete flagellar hook
title_full_unstemmed Lysinoalanine cross-linking is a conserved post-translational modification in the spirochete flagellar hook
title_short Lysinoalanine cross-linking is a conserved post-translational modification in the spirochete flagellar hook
title_sort lysinoalanine cross-linking is a conserved post-translational modification in the spirochete flagellar hook
topic Biological, Health, and Medical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10691653/
https://www.ncbi.nlm.nih.gov/pubmed/38047041
http://dx.doi.org/10.1093/pnasnexus/pgad349
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