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Rapid, high-throughput detection of rifampin resistance and heteroresistance in Mycobacterium tuberculosis by use of sloppy molecular beacon melting temperature coding

Authors
 Soumitesh Chakravorty  ;  Harsheel Kothari  ;  Bola Aladegbami  ;  Eun Jin Cho  ;  Jong Seok Lee  ;  Sandy S. Roh  ;  Hyunchul Kim  ;  Hyungkyung Kwak  ;  Eun Gae Lee  ;  Soo Hee Hwang  ;  Padmapriya P. Banada  ;  Hassan Safi  ;  Laura E. Via  ;  Sang-Nae Cho  ;  Clifton E. Barry III  ;  David Alland 
Citation
 JOURNAL OF CLINICAL MICROBIOLOGY, Vol.50(7) : 2194-2202, 2012 
Journal Title
JOURNAL OF CLINICAL MICROBIOLOGY
ISSN
 0095-1137 
Issue Date
2012
MeSH
Antitubercular Agents/pharmacology* ; Bacterial Proteins/genetics ; DNA-Directed RNA Polymerases ; Drug Resistance, Bacterial* ; Humans ; Microbial Sensitivity Tests/methods ; Molecular Diagnostic Techniques/methods* ; Mycobacterium tuberculosis/drug effects* ; Mycobacterium tuberculosis/genetics ; Mycobacterium tuberculosis/isolation & purification ; Oligonucleotide Probes/chemistry ; Oligonucleotide Probes/genetics ; Polymerase Chain Reaction/methods ; Rifampin/pharmacology* ; Sensitivity and Specificity ; Time Factors ; Transition Temperature ; Tuberculosis/microbiology
Keywords
Antitubercular Agents/pharmacology* ; Bacterial Proteins/genetics ; DNA-Directed RNA Polymerases ; Drug Resistance, Bacterial* ; Humans ; Microbial Sensitivity Tests/methods ; Molecular Diagnostic Techniques/methods* ; Mycobacterium tuberculosis/drug effects* ; Mycobacterium tuberculosis/genetics ; Mycobacterium tuberculosis/isolation & purification ; Oligonucleotide Probes/chemistry ; Oligonucleotide Probes/genetics ; Polymerase Chain Reaction/methods ; Rifampin/pharmacology* ; Sensitivity and Specificity ; Time Factors ; Transition Temperature ; Tuberculosis/microbiology
Abstract
Rifampin resistance in Mycobacterium tuberculosis is largely determined by mutations in an 80-bp rifampin resistance determining region (RRDR) of the rpoB gene. We developed a rapid single-well PCR assay to identify RRDR mutations. The assay uses sloppy molecular beacons to probe an asymmetric PCR of the M. tuberculosis RRDR by melting temperature (T(m)) analysis. A three-point T(m) code is generated which distinguishes wild-type from mutant RRDR DNA sequences in approximately 2 h. The assay was validated on synthetic oligonucleotide targets containing the 44 most common RRDR mutations. It was then tested on a panel of DNA extracted from 589 geographically diverse clinical M. tuberculosis cultures, including isolates with wild-type RRDR sequences and 25 different RRDR mutations. The assay detected 236/236 RRDR mutant sequences as mutant (sensitivity, 100%; 95% confidence interval [CI], 98 to 100%) and 353/353 RRDR wild-type sequences as wild type (specificity, 100%; 95% CI, 98.7 to 100%). The assay identified 222/225 rifampin-resistant isolates as rifampin resistant (sensitivity, 98.7%; 95% CI, 95.8 to 99.6%) and 335/336 rifampin-susceptible isolates as rifampin susceptible (specificity, 99.7%; 95% CI, 95.8 to 99.6%). All mutations were either individually identified or clustered into small mutation groups using the triple T(m) code. The assay accurately identified mixed (heteroresistant) samples and was shown analytically to detect RRDR mutations when present in at least 40% of the total M. tuberculosis DNA. This was at least as accurate as Sanger DNA sequencing. The assay was easy to use and well suited for high-throughput applications. This new sloppy molecular beacon assay should greatly simplify rifampin resistance testing in clinical laboratories.
Files in This Item:
T201203443.pdf Download
DOI
22535987
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Microbiology (미생물학교실) > 1. Journal Papers
Yonsei Authors
Cho, Sang Nae(조상래)
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/90695
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