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#4475 : Transcriptional response of ancestral and modern M. tuberculosis strains after exposure to oxidative stress or hypoxia
Topics: Transcriptomics (Illumina)
Origin: IP
Project type: Service

Name of Applicant: Roland Brosch
Date of application: 23-09-2020
Unit: Integrated Mycobacterial Pathogenomics
Location: Guerin-03-04
Phone: 0140613754
@ Mail: roland.brosch@pasteur.fr

Project context and summary:

Mycobacterium tuberculosis strains are classified into different phylogenetic lineages (L), three of which (L2/L3/L4) emerged from a common progenitor after the loss of the MmpS6/MmpL6-encoding Mtb-specific deletion 1 region (TbD1). These TbD1-deleted “modern” lineages are responsible for globally-spread tuberculosis epidemics, whereas TbD1-intact “ancestral” lineages tend to be restricted to specific geographical areas, such as South India and South East Asia (L1) or East Africa (L7). By constructing and characterizing a panel of recombinant TbD1-knock-in and knock-out strains and comparison with clinical isolates, here we have demonstrated that deletion of TbD1 confers to M. tuberculosis a significant increase in resistance to oxidative stress and hypoxia, which correlates with enhanced virulence in selected cellular, guinea pig and C3HeB/FeJ mouse infection models, the latter two mirroring in part the development of hypoxic granulomas in human disease progression.


Related team publications:
Bottai D., Frigui W., Sayes F., Di Luca M., Spadoni D., Pawlik A., Zoppo M., Orgeur M., Khanna V., Hardy D., Mangenot S., Barbe V., Medigue, Ma L., Bouchier C., Tavanti A., Larrouy-Maumus G., TbD1 deletion as a driver of the evolutionary success of modern epidemic Mycobacterium tuberculosis lineages Brosch R. Nat Commun. 2020 Feb 4;11(1):684. doi: 10.1038/s41467-020-14508-5.
Service Delivery
Manager: marc.monot@pasteur.fr
Status: Closed


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