Selection, characterization, and application of DNA aptamers for detection of Mycobacterium tuberculosis secreted protein MPT64

dc.contributor.authorSypabekova, Marzhan
dc.contributor.authorBekmurzayeva, Aliya
dc.contributor.authorWang, Ronghui
dc.contributor.authorLi, Yanbin
dc.contributor.authorNogues, Claude
dc.contributor.authorKanayeva, Damira
dc.creatorMarzhan, Sypabekova
dc.date.accessioned2017-12-15T05:57:45Z
dc.date.available2017-12-15T05:57:45Z
dc.date.issued2017-05-01
dc.description.abstractAbstract Rapid detection of Mycobacterium tuberculosis (Mtb), an etiological agent of tuberculosis (TB), is important for global control of this disease. Aptamers have emerged as a potential rival for antibodies in therapeutics, diagnostics and biosensing due to their inherent characteristics. The aim of the current study was to select and characterize single-stranded DNA aptamers against MPT64 protein, one of the predominant secreted proteins of Mtb pathogen. Aptamers specific to MPT64 protein were selected in vitro using systematic evolution of ligands through exponential enrichment (SELEX) method. The selection was started with a pool of ssDNA library with randomized 40-nucleotide region. A total of 10 cycles were performed and seventeen aptamers with unique sequences were identified by sequencing. Dot Blot analysis was performed to monitor the SELEX process and to conduct the preliminary tests on the affinity and specificity of aptamers. Enzyme linked oligonucleotide assay (ELONA) showed that most of the aptamers were specific to the MPT64 protein with a linear correlation of R2 = 0.94 for the most selective. Using Surface Plasmon Resonance (SPR), dissociation equilibrium constant KD of 8.92 nM was obtained. Bioinformatics analysis of the most specific aptamers revealed the existence of a conserved as well as distinct sequences and possible binding site on MPT64. The specificity was determined by testing non-target ESAT-6 and CFP-10. Negligible cross-reactivity confirmed the high specificity of the selected aptamer. The selected aptamer was further tested on clinical sputum samples using ELONA and had sensitivity and specificity of 91.3% and 90%, respectively. Microscopy, culture positivity and nucleotide amplification methods were used as reference standards. The aptamers studied could be further used for the development of medical diagnostic tools and detection assays for Mtb.en_US
dc.identifierDOI:10.1016/j.tube.2017.03.004
dc.identifier.citationMarzhan Sypabekova, Aliya Bekmurzayeva, Ronghui Wang, Yanbin Li, Claude Nogues, Damira Kanayeva, Selection, characterization, and application of DNA aptamers for detection of Mycobacterium tuberculosis secreted protein MPT64, In Tuberculosis, Volume 104, 2017, Pages 70-78en_US
dc.identifier.issn14729792
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S1472979216304498
dc.identifier.urihttp://nur.nu.edu.kz/handle/123456789/2937
dc.language.isoenen_US
dc.publisherTuberculosisen_US
dc.relation.ispartofTuberculosis
dc.rights.license© 2017 The Authors. Published by Elsevier Ltd.
dc.subjectMycobacterium tuberculosisen_US
dc.subjectDiagnosticsen_US
dc.subjectMPT64en_US
dc.subjectAptameren_US
dc.subjectSELEXen_US
dc.titleSelection, characterization, and application of DNA aptamers for detection of Mycobacterium tuberculosis secreted protein MPT64en_US
dc.typeArticleen_US
elsevier.aggregationtypeJournal
elsevier.coverdate2017-05-01
elsevier.coverdisplaydateMay 2017
elsevier.endingpage78
elsevier.identifier.doi10.1016/j.tube.2017.03.004
elsevier.identifier.eid1-s2.0-S1472979216304498
elsevier.identifier.piiS1472-9792(16)30449-8
elsevier.identifier.scopusid85015754737
elsevier.openaccess1
elsevier.openaccessarticletrue
elsevier.openaccessuserlicensehttp://creativecommons.org/licenses/by-nc-nd/4.0/
elsevier.openarchivearticlefalse
elsevier.startingpage70
elsevier.teaserRapid detection of Mycobacterium tuberculosis (Mtb), an etiological agent of tuberculosis (TB), is important for global control of this disease. Aptamers have emerged as a potential rival for antibodies...
elsevier.volume104
workflow.import.sourcescience

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