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Genomic analysis of globally diverse Mycobacterium tuberculosis strains provides insights into emergence and spread of multidrug resistance

Multidrug-resistant tuberculosis (MDR-TB), caused by drug resistant strains of Mycobacterium tuberculosis, is an increasingly serious problem worldwide. In this study, we examined a dataset of 5,310 M. tuberculosis whole genome sequences from five continents. Despite great diversity with respect to...

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Autores principales: Manson, Abigail L., Cohen, Keira A., Abeel, Thomas, Desjardins, Christopher A., Armstrong, Derek T., Barry, Clifton E., Brand, Jeannette, Chapman, Sinéad B., Cho, Sang-Nae, Gabrielian, Andrei, Gomez, James, Jodals, Andreea M., Joloba, Moses, Jureen, Pontus, Lee, Jong Seok, Malinga, Lesibana, Maiga, Mamoudou, Nordenberg, Dale, Noroc, Ecaterina, Romancenco, Elena, Salazar, Alex, Ssengooba, Willy, Velayati, A. A., Winglee, Kathryn, Zalutskaya, Aksana, Via, Laura E., Cassell, Gail H., Dorman, Susan E., Ellner, Jerrold, Farnia, Parissa, Galagan, James E., Rosenthal, Alex, Crudu, Valeriu, Homorodean, Daniela, Hsueh, Po-Ren, Narayanan, Sujatha, Pym, Alexander S., Skrahina, Alena, Swaminathan, Soumya, Van der Walt, Martie, Alland, David, Bishai, William R., Cohen, Ted, Hoffner, Sven, Birren, Bruce W., Earl, Ashlee M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5402762/
https://www.ncbi.nlm.nih.gov/pubmed/28092681
http://dx.doi.org/10.1038/ng.3767
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author Manson, Abigail L.
Cohen, Keira A.
Abeel, Thomas
Desjardins, Christopher A.
Armstrong, Derek T.
Barry, Clifton E.
Brand, Jeannette
Chapman, Sinéad B.
Cho, Sang-Nae
Gabrielian, Andrei
Gomez, James
Jodals, Andreea M.
Joloba, Moses
Jureen, Pontus
Lee, Jong Seok
Malinga, Lesibana
Maiga, Mamoudou
Nordenberg, Dale
Noroc, Ecaterina
Romancenco, Elena
Salazar, Alex
Ssengooba, Willy
Velayati, A. A.
Winglee, Kathryn
Zalutskaya, Aksana
Via, Laura E.
Cassell, Gail H.
Dorman, Susan E.
Ellner, Jerrold
Farnia, Parissa
Galagan, James E.
Rosenthal, Alex
Crudu, Valeriu
Homorodean, Daniela
Hsueh, Po-Ren
Narayanan, Sujatha
Pym, Alexander S.
Skrahina, Alena
Swaminathan, Soumya
Van der Walt, Martie
Alland, David
Bishai, William R.
Cohen, Ted
Hoffner, Sven
Birren, Bruce W.
Earl, Ashlee M.
author_facet Manson, Abigail L.
Cohen, Keira A.
Abeel, Thomas
Desjardins, Christopher A.
Armstrong, Derek T.
Barry, Clifton E.
Brand, Jeannette
Chapman, Sinéad B.
Cho, Sang-Nae
Gabrielian, Andrei
Gomez, James
Jodals, Andreea M.
Joloba, Moses
Jureen, Pontus
Lee, Jong Seok
Malinga, Lesibana
Maiga, Mamoudou
Nordenberg, Dale
Noroc, Ecaterina
Romancenco, Elena
Salazar, Alex
Ssengooba, Willy
Velayati, A. A.
Winglee, Kathryn
Zalutskaya, Aksana
Via, Laura E.
Cassell, Gail H.
Dorman, Susan E.
Ellner, Jerrold
Farnia, Parissa
Galagan, James E.
Rosenthal, Alex
Crudu, Valeriu
Homorodean, Daniela
Hsueh, Po-Ren
Narayanan, Sujatha
Pym, Alexander S.
Skrahina, Alena
Swaminathan, Soumya
Van der Walt, Martie
Alland, David
Bishai, William R.
Cohen, Ted
Hoffner, Sven
Birren, Bruce W.
Earl, Ashlee M.
author_sort Manson, Abigail L.
collection PubMed
description Multidrug-resistant tuberculosis (MDR-TB), caused by drug resistant strains of Mycobacterium tuberculosis, is an increasingly serious problem worldwide. In this study, we examined a dataset of 5,310 M. tuberculosis whole genome sequences from five continents. Despite great diversity with respect to geographic point of isolation, genetic background and drug resistance, patterns of drug resistance emergence were conserved globally. We have identified harbinger mutations that often precede MDR. In particular, the katG S315T mutation, conferring resistance to isoniazid, overwhelmingly arose before rifampicin resistance across all lineages, geographic regions, and time periods. Molecular diagnostics that include markers for rifampicin resistance alone will be insufficient to identify pre-MDR strains. Incorporating knowledge of pre-MDR polymorphisms, particularly katG S315, into molecular diagnostics will enable targeted treatment of patients with pre-MDR-TB to prevent further development of MDR-TB.
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spelling pubmed-54027622017-07-16 Genomic analysis of globally diverse Mycobacterium tuberculosis strains provides insights into emergence and spread of multidrug resistance Manson, Abigail L. Cohen, Keira A. Abeel, Thomas Desjardins, Christopher A. Armstrong, Derek T. Barry, Clifton E. Brand, Jeannette Chapman, Sinéad B. Cho, Sang-Nae Gabrielian, Andrei Gomez, James Jodals, Andreea M. Joloba, Moses Jureen, Pontus Lee, Jong Seok Malinga, Lesibana Maiga, Mamoudou Nordenberg, Dale Noroc, Ecaterina Romancenco, Elena Salazar, Alex Ssengooba, Willy Velayati, A. A. Winglee, Kathryn Zalutskaya, Aksana Via, Laura E. Cassell, Gail H. Dorman, Susan E. Ellner, Jerrold Farnia, Parissa Galagan, James E. Rosenthal, Alex Crudu, Valeriu Homorodean, Daniela Hsueh, Po-Ren Narayanan, Sujatha Pym, Alexander S. Skrahina, Alena Swaminathan, Soumya Van der Walt, Martie Alland, David Bishai, William R. Cohen, Ted Hoffner, Sven Birren, Bruce W. Earl, Ashlee M. Nat Genet Article Multidrug-resistant tuberculosis (MDR-TB), caused by drug resistant strains of Mycobacterium tuberculosis, is an increasingly serious problem worldwide. In this study, we examined a dataset of 5,310 M. tuberculosis whole genome sequences from five continents. Despite great diversity with respect to geographic point of isolation, genetic background and drug resistance, patterns of drug resistance emergence were conserved globally. We have identified harbinger mutations that often precede MDR. In particular, the katG S315T mutation, conferring resistance to isoniazid, overwhelmingly arose before rifampicin resistance across all lineages, geographic regions, and time periods. Molecular diagnostics that include markers for rifampicin resistance alone will be insufficient to identify pre-MDR strains. Incorporating knowledge of pre-MDR polymorphisms, particularly katG S315, into molecular diagnostics will enable targeted treatment of patients with pre-MDR-TB to prevent further development of MDR-TB. 2017-01-16 2017-03 /pmc/articles/PMC5402762/ /pubmed/28092681 http://dx.doi.org/10.1038/ng.3767 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Manson, Abigail L.
Cohen, Keira A.
Abeel, Thomas
Desjardins, Christopher A.
Armstrong, Derek T.
Barry, Clifton E.
Brand, Jeannette
Chapman, Sinéad B.
Cho, Sang-Nae
Gabrielian, Andrei
Gomez, James
Jodals, Andreea M.
Joloba, Moses
Jureen, Pontus
Lee, Jong Seok
Malinga, Lesibana
Maiga, Mamoudou
Nordenberg, Dale
Noroc, Ecaterina
Romancenco, Elena
Salazar, Alex
Ssengooba, Willy
Velayati, A. A.
Winglee, Kathryn
Zalutskaya, Aksana
Via, Laura E.
Cassell, Gail H.
Dorman, Susan E.
Ellner, Jerrold
Farnia, Parissa
Galagan, James E.
Rosenthal, Alex
Crudu, Valeriu
Homorodean, Daniela
Hsueh, Po-Ren
Narayanan, Sujatha
Pym, Alexander S.
Skrahina, Alena
Swaminathan, Soumya
Van der Walt, Martie
Alland, David
Bishai, William R.
Cohen, Ted
Hoffner, Sven
Birren, Bruce W.
Earl, Ashlee M.
Genomic analysis of globally diverse Mycobacterium tuberculosis strains provides insights into emergence and spread of multidrug resistance
title Genomic analysis of globally diverse Mycobacterium tuberculosis strains provides insights into emergence and spread of multidrug resistance
title_full Genomic analysis of globally diverse Mycobacterium tuberculosis strains provides insights into emergence and spread of multidrug resistance
title_fullStr Genomic analysis of globally diverse Mycobacterium tuberculosis strains provides insights into emergence and spread of multidrug resistance
title_full_unstemmed Genomic analysis of globally diverse Mycobacterium tuberculosis strains provides insights into emergence and spread of multidrug resistance
title_short Genomic analysis of globally diverse Mycobacterium tuberculosis strains provides insights into emergence and spread of multidrug resistance
title_sort genomic analysis of globally diverse mycobacterium tuberculosis strains provides insights into emergence and spread of multidrug resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5402762/
https://www.ncbi.nlm.nih.gov/pubmed/28092681
http://dx.doi.org/10.1038/ng.3767
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