Comparative Genomic Analysis of Two Clonally Related Multidrug Resistant Mycobacterium tuberculosis by Single Molecule Real Time Sequencing

Background: Multidrug-resistant tuberculosis (MDR-TB) is posing a major threat to global TB control. In this study, we focused on two consecutive MDR-TB isolated from the same patient before and after the initiation of anti-TB treatment. To better understand the genomic characteristics of MDR-TB, Si...

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Main Authors: Kenneth Siu-Sing Leung, Gilman Kit-Hang Siu, Kingsley King-Gee Tam, Sabrina Wai-Chi To, Rahim Rajwani, Pak-Leung Ho, Samson Sai-Yin Wong, Wei W. Zhao, Oliver Chiu-Kit Ma, Wing-Cheong Yam
Format: Article
Language:English
Published: Frontiers Media S.A. 2017-11-01
Series:Frontiers in Cellular and Infection Microbiology
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Online Access:http://journal.frontiersin.org/article/10.3389/fcimb.2017.00478/full
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spelling doaj-6ad7f07fc52c457f831ae561a09afcca2020-11-24T21:35:19ZengFrontiers Media S.A.Frontiers in Cellular and Infection Microbiology2235-29882017-11-01710.3389/fcimb.2017.00478309106Comparative Genomic Analysis of Two Clonally Related Multidrug Resistant Mycobacterium tuberculosis by Single Molecule Real Time SequencingKenneth Siu-Sing Leung0Gilman Kit-Hang Siu1Kingsley King-Gee Tam2Sabrina Wai-Chi To3Rahim Rajwani4Pak-Leung Ho5Samson Sai-Yin Wong6Wei W. Zhao7Oliver Chiu-Kit Ma8Wing-Cheong Yam9Department of Microbiology, Queen Mary Hospital, The University of Hong Kong, Hong Kong, Hong KongDepartment of Health Technology and Informatics, The Hong Kong Polytechnic University, Hong Kong, Hong KongDepartment of Microbiology, Queen Mary Hospital, The University of Hong Kong, Hong Kong, Hong KongDepartment of Microbiology, Queen Mary Hospital, The University of Hong Kong, Hong Kong, Hong KongDepartment of Health Technology and Informatics, The Hong Kong Polytechnic University, Hong Kong, Hong KongDepartment of Microbiology, Queen Mary Hospital, The University of Hong Kong, Hong Kong, Hong KongDepartment of Microbiology, Queen Mary Hospital, The University of Hong Kong, Hong Kong, Hong KongKingMed Diagnostics, Science Park, Hong Kong, Hong KongKingMed Diagnostics, Science Park, Hong Kong, Hong KongDepartment of Microbiology, Queen Mary Hospital, The University of Hong Kong, Hong Kong, Hong KongBackground: Multidrug-resistant tuberculosis (MDR-TB) is posing a major threat to global TB control. In this study, we focused on two consecutive MDR-TB isolated from the same patient before and after the initiation of anti-TB treatment. To better understand the genomic characteristics of MDR-TB, Single Molecule Real-Time (SMRT) Sequencing and comparative genomic analyses was performed to identify mutations that contributed to the stepwise development of drug resistance and growth fitness in MDR-TB under in vivo challenge of anti-TB drugs.Result: Both pre-treatment and post-treatment strain demonstrated concordant phenotypic and genotypic susceptibility profiles toward rifampicin, pyrazinamide, streptomycin, fluoroquinolones, aminoglycosides, cycloserine, ethionamide, and para-aminosalicylic acid. However, although both strains carried identical missense mutations at rpoB S531L, inhA C-15T, and embB M306V, MYCOTB Sensititre assay showed that the post-treatment strain had 16-, 8-, and 4-fold elevation in the minimum inhibitory concentrations (MICs) toward rifabutin, isoniazid, and ethambutol respectively. The results have indicated the presence of additional resistant-related mutations governing the stepwise development of MDR-TB. Further comparative genomic analyses have identified three additional polymorphisms between the clinical isolates. These include a single nucleotide deletion at nucleotide position 360 of rv0888 in pre-treatment strain, and a missense mutation at rv3303c (lpdA) V44I and a 6-bp inframe deletion at codon 67–68 in rv2071c (cobM) in the post-treatment strain. Multiple sequence alignment showed that these mutations were occurring at highly conserved regions among pathogenic mycobacteria. Using structural-based and sequence-based algorithms, we further predicted that the mutations potentially have deleterious effect on protein function.Conclusion: This is the first study that compared the full genomes of two clonally-related MDR-TB clinical isolates during the course of anti-TB treatment. Our work has demonstrated the robustness of SMRT Sequencing in identifying mutations among MDR-TB clinical isolates. Comparative genome analysis also suggested novel mutations at rv0888, lpdA, and cobM that might explain the difference in antibiotic resistance and growth pattern between the two MDR-TB strains.http://journal.frontiersin.org/article/10.3389/fcimb.2017.00478/fullmultidrug resistanceMycobacterium tuberculosisPacBio sequencinggrowth ratecomparative genomic analysis
collection DOAJ
language English
format Article
sources DOAJ
author Kenneth Siu-Sing Leung
Gilman Kit-Hang Siu
Kingsley King-Gee Tam
Sabrina Wai-Chi To
Rahim Rajwani
Pak-Leung Ho
Samson Sai-Yin Wong
Wei W. Zhao
Oliver Chiu-Kit Ma
Wing-Cheong Yam
spellingShingle Kenneth Siu-Sing Leung
Gilman Kit-Hang Siu
Kingsley King-Gee Tam
Sabrina Wai-Chi To
Rahim Rajwani
Pak-Leung Ho
Samson Sai-Yin Wong
Wei W. Zhao
Oliver Chiu-Kit Ma
Wing-Cheong Yam
Comparative Genomic Analysis of Two Clonally Related Multidrug Resistant Mycobacterium tuberculosis by Single Molecule Real Time Sequencing
Frontiers in Cellular and Infection Microbiology
multidrug resistance
Mycobacterium tuberculosis
PacBio sequencing
growth rate
comparative genomic analysis
author_facet Kenneth Siu-Sing Leung
Gilman Kit-Hang Siu
Kingsley King-Gee Tam
Sabrina Wai-Chi To
Rahim Rajwani
Pak-Leung Ho
Samson Sai-Yin Wong
Wei W. Zhao
Oliver Chiu-Kit Ma
Wing-Cheong Yam
author_sort Kenneth Siu-Sing Leung
title Comparative Genomic Analysis of Two Clonally Related Multidrug Resistant Mycobacterium tuberculosis by Single Molecule Real Time Sequencing
title_short Comparative Genomic Analysis of Two Clonally Related Multidrug Resistant Mycobacterium tuberculosis by Single Molecule Real Time Sequencing
title_full Comparative Genomic Analysis of Two Clonally Related Multidrug Resistant Mycobacterium tuberculosis by Single Molecule Real Time Sequencing
title_fullStr Comparative Genomic Analysis of Two Clonally Related Multidrug Resistant Mycobacterium tuberculosis by Single Molecule Real Time Sequencing
title_full_unstemmed Comparative Genomic Analysis of Two Clonally Related Multidrug Resistant Mycobacterium tuberculosis by Single Molecule Real Time Sequencing
title_sort comparative genomic analysis of two clonally related multidrug resistant mycobacterium tuberculosis by single molecule real time sequencing
publisher Frontiers Media S.A.
series Frontiers in Cellular and Infection Microbiology
issn 2235-2988
publishDate 2017-11-01
description Background: Multidrug-resistant tuberculosis (MDR-TB) is posing a major threat to global TB control. In this study, we focused on two consecutive MDR-TB isolated from the same patient before and after the initiation of anti-TB treatment. To better understand the genomic characteristics of MDR-TB, Single Molecule Real-Time (SMRT) Sequencing and comparative genomic analyses was performed to identify mutations that contributed to the stepwise development of drug resistance and growth fitness in MDR-TB under in vivo challenge of anti-TB drugs.Result: Both pre-treatment and post-treatment strain demonstrated concordant phenotypic and genotypic susceptibility profiles toward rifampicin, pyrazinamide, streptomycin, fluoroquinolones, aminoglycosides, cycloserine, ethionamide, and para-aminosalicylic acid. However, although both strains carried identical missense mutations at rpoB S531L, inhA C-15T, and embB M306V, MYCOTB Sensititre assay showed that the post-treatment strain had 16-, 8-, and 4-fold elevation in the minimum inhibitory concentrations (MICs) toward rifabutin, isoniazid, and ethambutol respectively. The results have indicated the presence of additional resistant-related mutations governing the stepwise development of MDR-TB. Further comparative genomic analyses have identified three additional polymorphisms between the clinical isolates. These include a single nucleotide deletion at nucleotide position 360 of rv0888 in pre-treatment strain, and a missense mutation at rv3303c (lpdA) V44I and a 6-bp inframe deletion at codon 67–68 in rv2071c (cobM) in the post-treatment strain. Multiple sequence alignment showed that these mutations were occurring at highly conserved regions among pathogenic mycobacteria. Using structural-based and sequence-based algorithms, we further predicted that the mutations potentially have deleterious effect on protein function.Conclusion: This is the first study that compared the full genomes of two clonally-related MDR-TB clinical isolates during the course of anti-TB treatment. Our work has demonstrated the robustness of SMRT Sequencing in identifying mutations among MDR-TB clinical isolates. Comparative genome analysis also suggested novel mutations at rv0888, lpdA, and cobM that might explain the difference in antibiotic resistance and growth pattern between the two MDR-TB strains.
topic multidrug resistance
Mycobacterium tuberculosis
PacBio sequencing
growth rate
comparative genomic analysis
url http://journal.frontiersin.org/article/10.3389/fcimb.2017.00478/full
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