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1.
Tuberculosis (Edinb) ; 147: 102516, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38735123

ABSTRACT

Although studies on non-tuberculous mycobacteria have increased in recent years because they cause a considerable proportion of infections, their cellulolytic system is still poorly studied. This study presents a characterization of the cellulolytic activities of environmental mycobacterial isolates derived from soil and water samples from the central region of Argentina, aimed to evaluate the conservation of the mechanism for the degradation of cellulose in this group of bacteria. The molecular and genomic identification revealed identity with Mycolicibacterium septicum. The endoglucanase and total cellulase activities were assessed both qualitatively and quantitatively and the optimal enzymatic conditions were characterized. A specific protein of around 56 kDa with cellulolytic activity was detected in a zymogram. Protein sequences possibly arising from a cellulase were identified by mass spectrometry-based shotgun proteomics. Results showed that M. septicum encodes for cellulose- and hemicellulose-related degrading enzymes, including at least an active ß-1,4 endoglucanase enzyme that could be useful to improve its survival in the environment. Given the important health issues related to mycobacteria, the results of the present study may contribute to the knowledge of their cellulolytic system, which could be important for their ability to survive in many different types of environments.


Subject(s)
Bacterial Proteins , Cellulase , Cellulose , Soil Microbiology , Cellulose/metabolism , Cellulase/metabolism , Bacterial Proteins/metabolism , Bacterial Proteins/genetics , Argentina , Water Microbiology , Proteomics/methods , Mycobacteriaceae/genetics , Mycobacteriaceae/enzymology
2.
Rev Argent Microbiol ; 51(3): 259-267, 2019.
Article in Spanish | MEDLINE | ID: mdl-30579706

ABSTRACT

Non-tuberculous mycobacteria (NTM) are studied not only for their importance as emerging opportunistic pathogens but also for their applications in biotechnology and bioremediation. Our aim was to determine the occurrence and diversity of mycobacteria in different aquatic habitats of General Pico city, Province of La Pampa. The percentage of samples with positive cultures for mycobacteria were the following: 37.5% recovered from the water supply distribution system; 32.6% from the aquifer that supplies water to the distribution system; 36.8% from rain water; 53.1% from the two wetlands in the area of influence; 80% from indoor swimming pools; and 33.3% from water fountains in downtown public squares. Of the 90 NTM isolates, 8.9% could not be identified at the species level with any of the used methods, phenotypic tests and molecular methods. Mycobacterium fortuitum and Mycobacterium gordonae were the most frequently isolated species. Some of the identified species such as, M. fortuitum, M. gordonae, M. intracellulare, M. vaccae, M. lentiflavum and M. nonchromogenicum, have been reported in cases of mycobacteriosis in Argentina. Mycobacteria with values higher than 0.8mg/ml of residual active chlorine were not recovered from the drinking water supply network, whereas in the swimming pools the presence of up to 1.5mg/l was not a constraint. Based on our results, the presence of mycobacteria in aquatic environments is close to 35% and their occurrence and diversity is affected both by contact with man and his activities as well as by the existence of animal life.


Subject(s)
Nontuberculous Mycobacteria/isolation & purification , Water Microbiology , Argentina , Biodiversity , Biofilms , Cities , Groundwater/microbiology , Halogenation , Nontuberculous Mycobacteria/classification , Rain/microbiology , Sanitary Engineering , Species Specificity , Swimming Pools , Urban Health , Water Supply , Wetlands
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