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High-throughput nanopore sequencing of Treponema pallidum tandem repeat genes arp and tp0470 reveals clade-specific patterns and recapitulates global whole genome phylogeny

Sequencing of most Treponema pallidum genomes excludes repeat regions in tp0470 and the tp0433 gene, encoding the acidic repeat protein (arp). As a first step to understanding the evolution and function of these genes and the proteins they encode, we developed a protocol to nanopore sequence tp0470...

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Autores principales: Lieberman, Nicole A. P., Armstrong, Thaddeus D., Chung, Benjamin, Pfalmer, Daniel, Hennelly, Christopher M., Haynes, Austin, Romeis, Emily, Wang, Qian-Qiu, Zhang, Rui-Li, Kou, Cai-Xia, Ciccarese, Giulia, Conte, Ivano Dal, Cusini, Marco, Drago, Francesco, Nakayama, Shu-ichi, Lee, Kenichi, Ohnishi, Makoto, Konda, Kelika A., Vargas, Silver K., Eguiluz, Maria, Caceres, Carlos F., Klausner, Jeffrey D., Mitja, Oriol, Rompalo, Anne, Mulcahy, Fiona, Hook, Edward W., Hoffman, Irving F., Matoga, Mitch M., Zheng, Heping, Yang, Bin, Lopez-Medina, Eduardo, Ramirez, Lady G., Radolf, Justin D., Hawley, Kelly L., Salazar, Juan C., Lukehart, Sheila A., Seña, Arlene C., Parr, Jonathan B., Giacani, Lorenzo, Greninger, Alexander L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9531955/
https://www.ncbi.nlm.nih.gov/pubmed/36204625
http://dx.doi.org/10.3389/fmicb.2022.1007056
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author Lieberman, Nicole A. P.
Armstrong, Thaddeus D.
Chung, Benjamin
Pfalmer, Daniel
Hennelly, Christopher M.
Haynes, Austin
Romeis, Emily
Wang, Qian-Qiu
Zhang, Rui-Li
Kou, Cai-Xia
Ciccarese, Giulia
Conte, Ivano Dal
Cusini, Marco
Drago, Francesco
Nakayama, Shu-ichi
Lee, Kenichi
Ohnishi, Makoto
Konda, Kelika A.
Vargas, Silver K.
Eguiluz, Maria
Caceres, Carlos F.
Klausner, Jeffrey D.
Mitja, Oriol
Rompalo, Anne
Mulcahy, Fiona
Hook, Edward W.
Hoffman, Irving F.
Matoga, Mitch M.
Zheng, Heping
Yang, Bin
Lopez-Medina, Eduardo
Ramirez, Lady G.
Radolf, Justin D.
Hawley, Kelly L.
Salazar, Juan C.
Lukehart, Sheila A.
Seña, Arlene C.
Parr, Jonathan B.
Giacani, Lorenzo
Greninger, Alexander L.
author_facet Lieberman, Nicole A. P.
Armstrong, Thaddeus D.
Chung, Benjamin
Pfalmer, Daniel
Hennelly, Christopher M.
Haynes, Austin
Romeis, Emily
Wang, Qian-Qiu
Zhang, Rui-Li
Kou, Cai-Xia
Ciccarese, Giulia
Conte, Ivano Dal
Cusini, Marco
Drago, Francesco
Nakayama, Shu-ichi
Lee, Kenichi
Ohnishi, Makoto
Konda, Kelika A.
Vargas, Silver K.
Eguiluz, Maria
Caceres, Carlos F.
Klausner, Jeffrey D.
Mitja, Oriol
Rompalo, Anne
Mulcahy, Fiona
Hook, Edward W.
Hoffman, Irving F.
Matoga, Mitch M.
Zheng, Heping
Yang, Bin
Lopez-Medina, Eduardo
Ramirez, Lady G.
Radolf, Justin D.
Hawley, Kelly L.
Salazar, Juan C.
Lukehart, Sheila A.
Seña, Arlene C.
Parr, Jonathan B.
Giacani, Lorenzo
Greninger, Alexander L.
author_sort Lieberman, Nicole A. P.
collection PubMed
description Sequencing of most Treponema pallidum genomes excludes repeat regions in tp0470 and the tp0433 gene, encoding the acidic repeat protein (arp). As a first step to understanding the evolution and function of these genes and the proteins they encode, we developed a protocol to nanopore sequence tp0470 and arp genes from 212 clinical samples collected from ten countries on six continents. Both tp0470 and arp repeat structures recapitulate the whole genome phylogeny, with subclade-specific patterns emerging. The number of tp0470 repeats is on average appears to be higher in Nichols-like clade strains than in SS14-like clade strains. Consistent with previous studies, we found that 14-repeat arp sequences predominate across both major clades, but the combination and order of repeat type varies among subclades, with many arp sequence variants limited to a single subclade. Although strains that were closely related by whole genome sequencing frequently had the same arp repeat length, this was not always the case. Structural modeling of TP0470 suggested that the eight residue repeats form an extended α-helix, predicted to be periplasmic. Modeling of the ARP revealed a C-terminal sporulation-related repeat (SPOR) domain, predicted to bind denuded peptidoglycan, with repeat regions possibly incorporated into a highly charged β-sheet. Outside of the repeats, all TP0470 and ARP amino acid sequences were identical. Together, our data, along with functional considerations, suggests that both TP0470 and ARP proteins may be involved in T. pallidum cell envelope remodeling and homeostasis, with their highly plastic repeat regions playing as-yet-undetermined roles.
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spelling pubmed-95319552022-10-05 High-throughput nanopore sequencing of Treponema pallidum tandem repeat genes arp and tp0470 reveals clade-specific patterns and recapitulates global whole genome phylogeny Lieberman, Nicole A. P. Armstrong, Thaddeus D. Chung, Benjamin Pfalmer, Daniel Hennelly, Christopher M. Haynes, Austin Romeis, Emily Wang, Qian-Qiu Zhang, Rui-Li Kou, Cai-Xia Ciccarese, Giulia Conte, Ivano Dal Cusini, Marco Drago, Francesco Nakayama, Shu-ichi Lee, Kenichi Ohnishi, Makoto Konda, Kelika A. Vargas, Silver K. Eguiluz, Maria Caceres, Carlos F. Klausner, Jeffrey D. Mitja, Oriol Rompalo, Anne Mulcahy, Fiona Hook, Edward W. Hoffman, Irving F. Matoga, Mitch M. Zheng, Heping Yang, Bin Lopez-Medina, Eduardo Ramirez, Lady G. Radolf, Justin D. Hawley, Kelly L. Salazar, Juan C. Lukehart, Sheila A. Seña, Arlene C. Parr, Jonathan B. Giacani, Lorenzo Greninger, Alexander L. Front Microbiol Microbiology Sequencing of most Treponema pallidum genomes excludes repeat regions in tp0470 and the tp0433 gene, encoding the acidic repeat protein (arp). As a first step to understanding the evolution and function of these genes and the proteins they encode, we developed a protocol to nanopore sequence tp0470 and arp genes from 212 clinical samples collected from ten countries on six continents. Both tp0470 and arp repeat structures recapitulate the whole genome phylogeny, with subclade-specific patterns emerging. The number of tp0470 repeats is on average appears to be higher in Nichols-like clade strains than in SS14-like clade strains. Consistent with previous studies, we found that 14-repeat arp sequences predominate across both major clades, but the combination and order of repeat type varies among subclades, with many arp sequence variants limited to a single subclade. Although strains that were closely related by whole genome sequencing frequently had the same arp repeat length, this was not always the case. Structural modeling of TP0470 suggested that the eight residue repeats form an extended α-helix, predicted to be periplasmic. Modeling of the ARP revealed a C-terminal sporulation-related repeat (SPOR) domain, predicted to bind denuded peptidoglycan, with repeat regions possibly incorporated into a highly charged β-sheet. Outside of the repeats, all TP0470 and ARP amino acid sequences were identical. Together, our data, along with functional considerations, suggests that both TP0470 and ARP proteins may be involved in T. pallidum cell envelope remodeling and homeostasis, with their highly plastic repeat regions playing as-yet-undetermined roles. Frontiers Media S.A. 2022-09-20 /pmc/articles/PMC9531955/ /pubmed/36204625 http://dx.doi.org/10.3389/fmicb.2022.1007056 Text en Copyright © 2022 Lieberman, Armstrong, Chung, Pfalmer, Hennelly, Haynes, Romeis, Wang, Zhang, Kou, Ciccarese, Conte, Cusini, Drago, Nakayama, Lee, Ohnishi, Konda, Vargas, Eguiluz, Caceres, Klausner, Mitja, Rompalo, Mulcahy, Hook, Hoffman, Matoga, Zheng, Yang, Lopez-Medina, Ramirez, Radolf, Hawley, Salazar, Lukehart, Seña, Parr, Giacani and Greninger. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Lieberman, Nicole A. P.
Armstrong, Thaddeus D.
Chung, Benjamin
Pfalmer, Daniel
Hennelly, Christopher M.
Haynes, Austin
Romeis, Emily
Wang, Qian-Qiu
Zhang, Rui-Li
Kou, Cai-Xia
Ciccarese, Giulia
Conte, Ivano Dal
Cusini, Marco
Drago, Francesco
Nakayama, Shu-ichi
Lee, Kenichi
Ohnishi, Makoto
Konda, Kelika A.
Vargas, Silver K.
Eguiluz, Maria
Caceres, Carlos F.
Klausner, Jeffrey D.
Mitja, Oriol
Rompalo, Anne
Mulcahy, Fiona
Hook, Edward W.
Hoffman, Irving F.
Matoga, Mitch M.
Zheng, Heping
Yang, Bin
Lopez-Medina, Eduardo
Ramirez, Lady G.
Radolf, Justin D.
Hawley, Kelly L.
Salazar, Juan C.
Lukehart, Sheila A.
Seña, Arlene C.
Parr, Jonathan B.
Giacani, Lorenzo
Greninger, Alexander L.
High-throughput nanopore sequencing of Treponema pallidum tandem repeat genes arp and tp0470 reveals clade-specific patterns and recapitulates global whole genome phylogeny
title High-throughput nanopore sequencing of Treponema pallidum tandem repeat genes arp and tp0470 reveals clade-specific patterns and recapitulates global whole genome phylogeny
title_full High-throughput nanopore sequencing of Treponema pallidum tandem repeat genes arp and tp0470 reveals clade-specific patterns and recapitulates global whole genome phylogeny
title_fullStr High-throughput nanopore sequencing of Treponema pallidum tandem repeat genes arp and tp0470 reveals clade-specific patterns and recapitulates global whole genome phylogeny
title_full_unstemmed High-throughput nanopore sequencing of Treponema pallidum tandem repeat genes arp and tp0470 reveals clade-specific patterns and recapitulates global whole genome phylogeny
title_short High-throughput nanopore sequencing of Treponema pallidum tandem repeat genes arp and tp0470 reveals clade-specific patterns and recapitulates global whole genome phylogeny
title_sort high-throughput nanopore sequencing of treponema pallidum tandem repeat genes arp and tp0470 reveals clade-specific patterns and recapitulates global whole genome phylogeny
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9531955/
https://www.ncbi.nlm.nih.gov/pubmed/36204625
http://dx.doi.org/10.3389/fmicb.2022.1007056
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