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  • Microbiology Society  (2)
  • Fujita, Yukiko  (2)
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  • Microbiology Society  (2)
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  • 1
    In: Microbiology, Microbiology Society, Vol. 151, No. 10 ( 2005-10-01), p. 3403-3416
    Abstract: Cord factor (trehalose 6,6′-dimycolate, TDM) is an unique glycolipid with a trehalose and two molecules of mycolic acids in the mycobacterial cell envelope. Since TDM consists of two molecules of very long branched-chain 3-hydroxy fatty acids, the molecular mass ranges widely and in a complex manner. To characterize the molecular structure of TDM precisely and simply, an attempt was made to determine the mycolic acid subclasses of TDM and the molecular species composition of intact TDM by matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) mass spectrometry for the first time. The results showed that less than 1 μg mycolic acid methyl ester of TDM from nine representative species of mycobacteria and TDM from the same species was sufficient to obtain well-resolved mass spectra composed of pseudomolecular ions [ M +Na] + . Although the mass ion distribution was extremely diverse, the molecular species of each TDM was identified clearly by constructing a molecular ion matrix consisting of the combination of two molecules of mycolic acids. The results showed a marked difference in the molecular structure of TDM among mycobacterial species and subspecies. TDM from Mycobacterium tuberculosis (H 37 Rv and Aoyama B) showed a distinctive mass pattern and consisted of over 60 molecular ions with α -, methoxy- and ketomycolate. TDM from Mycobacterium bovis BCG Tokyo 172 similarly showed over 35 molecular ions, but that from M. bovis BCG Connaught showed simpler molecular ion clusters consisting of less than 35 molecular species due to a complete lack of methoxymycolate. Mass ions due to TDM from M. bovis BCG Connaught and Mycobacterium kansasii showed a biphasic distribution, but the two major peaks of TDM from M. kansasii were shifted up two or three carbon units higher compared with M. bovis BCG Connaught. Within the rapid grower group, in TDM consisting of α -, keto- and wax ester mycolate from Mycobacterium phlei and Mycobacterium flavescens , the mass ion distribution due to polar mycolates was shifted lower than that from the Mycobacterium avium–intracellulare group. Since the physico-chemical properties and antigenic structure of mycolic acid of TDM affect the host immune responses profoundly, the molecular characterization of TDM by MALDI-TOF mass analysis may give very useful information on the relationship of glycolipid structure to its biological activity.
    Type of Medium: Online Resource
    ISSN: 1350-0872 , 1465-2080
    Language: English
    Publisher: Microbiology Society
    Publication Date: 2005
    detail.hit.zdb_id: 2008736-6
    SSG: 12
    Location Call Number Limitation Availability
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  • 2
    Online Resource
    Online Resource
    Microbiology Society ; 2005
    In:  Microbiology Vol. 151, No. 5 ( 2005-05-01), p. 1443-1452
    In: Microbiology, Microbiology Society, Vol. 151, No. 5 ( 2005-05-01), p. 1443-1452
    Abstract: Direct estimation of the molecular mass of single molecular species of trehalose 6-monomycolate (TMM), a ubiquitous cell-wall component of mycobacteria, was performed by matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) mass spectrometry. When less than 1 μg TMM was analysed by MALDI-TOF mass spectrometry, quasimolecular ions [M+Na] + of each molecular species were demonstrated and the numbers of carbons and double bonds (or cyclopropane rings) were determined. Since the introduction of oxygen atoms such as carbonyl, methoxy and ester groups yielded the appropriate shift of mass ions, the major subclasses of mycolic acid ( α , methoxy, keto and wax ester) were identified without resorting to hydrolytic procedures. The results showed a marked difference in the molecular species composition of TMM among mycobacterial species. Unexpectedly, differing from other mycoloyl glycolipids, TMM from Mycobacterium tuberculosis showed a distinctive mass pattern, with abundant odd-carbon-numbered monocyclopropanoic (or monoenoic) α -mycolates besides dicyclopropanoic mycolate, ranging from C 75 to C 85 , odd- and even-carbon-numbered methoxymycolates ranging from C 83 to C 94 and even- and odd-carbon-numbered ketomycolates ranging from C 83 to C 90 . In contrast, TMM from Mycobacterium bovis (wild strain and BCG substrains) possessed even-carbon-numbered dicyclopropanoic α -mycolates. BCG Connaught strain lacked methoxymycolates almost completely. These results were confirmed by MALDI-TOF mass analysis of mycolic acid methyl esters liberated by alkaline hydrolysis and methylation of the original TMM. Wax ester-mycoloyl TMM molecular species were demonstrated for the first time as an intact form in the Mycobacterium avium – intracellulare group, M. phlei and M. flavescens . The M. avium – intracellulare group possessed predominantly C 85 and C 87 wax ester-mycoloyl TMM, while M. phlei and the rapid growers tested contained C 80 , C 81 , C 82 and C 83 wax ester-mycoloyl TMM. This technique has marked advantages in the rapid analysis of not only intact glycolipid TMM, but also the mycolic acid composition of each mycobacterial species, since it does not require any degradation process.
    Type of Medium: Online Resource
    ISSN: 1350-0872 , 1465-2080
    Language: English
    Publisher: Microbiology Society
    Publication Date: 2005
    detail.hit.zdb_id: 2008736-6
    SSG: 12
    Location Call Number Limitation Availability
    BibTip Others were also interested in ...
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