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Mouse transcriptome reveals potential signatures of protection and pathogenesis in human tuberculosis
by
Redford, Paul S.
, Saraiva, Margarida
, Singhania, Akul
, Sousa, Jeremy
, Mayer-Barber, Katrin D.
, Haldar, Pranabashis
, Verma, Raman
, Cá, Baltazar
, Tabone, Olivier
, Fonseca, Kaori L.
, Moreira-Teixeira, Lúcia
, Stavropoulos, Evangelos
, Chakravarty, Probir
, Herbert, Eleanor
, Priestnall, Simon L.
, Graham, Christine M.
, Suarez-Bonnet, Alejandro
, O’Garra, Anne
, Sher, Alan
in
631/250
/ 631/250/2502
/ 631/250/255
/ 631/250/255/1856
/ 692/699/255/1856
/ Animal models
/ Animals
/ B-Lymphocytes - immunology
/ B-Lymphocytes - microbiology
/ Biomedical and Life Sciences
/ Biomedicine
/ Blood
/ Cell activation
/ Development and progression
/ Disease resistance
/ Gene expression
/ Genetic aspects
/ Health aspects
/ Humans
/ Identification and classification
/ Immunology
/ Infections
/ Infectious Diseases
/ Interferon
/ Interferon Type I - immunology
/ Killer Cells, Natural - immunology
/ Killer Cells, Natural - microbiology
/ Lung - immunology
/ Lung - microbiology
/ Lymphocytes
/ Lymphocytes B
/ Lymphocytes T
/ Medical examination
/ Mice
/ Mice, Inbred C3H
/ Mice, Inbred C57BL
/ Mycobacterium tuberculosis - immunology
/ Natural killer cells
/ Pathogenesis
/ Resource
/ T-Lymphocytes - immunology
/ T-Lymphocytes - microbiology
/ Transcription
/ Transcription factors
/ Transcriptome - immunology
/ Transcriptomes
/ Tuberculosis
/ Tuberculosis - immunology
/ Tuberculosis - microbiology
2020
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Mouse transcriptome reveals potential signatures of protection and pathogenesis in human tuberculosis
by
Redford, Paul S.
, Saraiva, Margarida
, Singhania, Akul
, Sousa, Jeremy
, Mayer-Barber, Katrin D.
, Haldar, Pranabashis
, Verma, Raman
, Cá, Baltazar
, Tabone, Olivier
, Fonseca, Kaori L.
, Moreira-Teixeira, Lúcia
, Stavropoulos, Evangelos
, Chakravarty, Probir
, Herbert, Eleanor
, Priestnall, Simon L.
, Graham, Christine M.
, Suarez-Bonnet, Alejandro
, O’Garra, Anne
, Sher, Alan
in
631/250
/ 631/250/2502
/ 631/250/255
/ 631/250/255/1856
/ 692/699/255/1856
/ Animal models
/ Animals
/ B-Lymphocytes - immunology
/ B-Lymphocytes - microbiology
/ Biomedical and Life Sciences
/ Biomedicine
/ Blood
/ Cell activation
/ Development and progression
/ Disease resistance
/ Gene expression
/ Genetic aspects
/ Health aspects
/ Humans
/ Identification and classification
/ Immunology
/ Infections
/ Infectious Diseases
/ Interferon
/ Interferon Type I - immunology
/ Killer Cells, Natural - immunology
/ Killer Cells, Natural - microbiology
/ Lung - immunology
/ Lung - microbiology
/ Lymphocytes
/ Lymphocytes B
/ Lymphocytes T
/ Medical examination
/ Mice
/ Mice, Inbred C3H
/ Mice, Inbred C57BL
/ Mycobacterium tuberculosis - immunology
/ Natural killer cells
/ Pathogenesis
/ Resource
/ T-Lymphocytes - immunology
/ T-Lymphocytes - microbiology
/ Transcription
/ Transcription factors
/ Transcriptome - immunology
/ Transcriptomes
/ Tuberculosis
/ Tuberculosis - immunology
/ Tuberculosis - microbiology
2020
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Mouse transcriptome reveals potential signatures of protection and pathogenesis in human tuberculosis
by
Redford, Paul S.
, Saraiva, Margarida
, Singhania, Akul
, Sousa, Jeremy
, Mayer-Barber, Katrin D.
, Haldar, Pranabashis
, Verma, Raman
, Cá, Baltazar
, Tabone, Olivier
, Fonseca, Kaori L.
, Moreira-Teixeira, Lúcia
, Stavropoulos, Evangelos
, Chakravarty, Probir
, Herbert, Eleanor
, Priestnall, Simon L.
, Graham, Christine M.
, Suarez-Bonnet, Alejandro
, O’Garra, Anne
, Sher, Alan
in
631/250
/ 631/250/2502
/ 631/250/255
/ 631/250/255/1856
/ 692/699/255/1856
/ Animal models
/ Animals
/ B-Lymphocytes - immunology
/ B-Lymphocytes - microbiology
/ Biomedical and Life Sciences
/ Biomedicine
/ Blood
/ Cell activation
/ Development and progression
/ Disease resistance
/ Gene expression
/ Genetic aspects
/ Health aspects
/ Humans
/ Identification and classification
/ Immunology
/ Infections
/ Infectious Diseases
/ Interferon
/ Interferon Type I - immunology
/ Killer Cells, Natural - immunology
/ Killer Cells, Natural - microbiology
/ Lung - immunology
/ Lung - microbiology
/ Lymphocytes
/ Lymphocytes B
/ Lymphocytes T
/ Medical examination
/ Mice
/ Mice, Inbred C3H
/ Mice, Inbred C57BL
/ Mycobacterium tuberculosis - immunology
/ Natural killer cells
/ Pathogenesis
/ Resource
/ T-Lymphocytes - immunology
/ T-Lymphocytes - microbiology
/ Transcription
/ Transcription factors
/ Transcriptome - immunology
/ Transcriptomes
/ Tuberculosis
/ Tuberculosis - immunology
/ Tuberculosis - microbiology
2020
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Mouse transcriptome reveals potential signatures of protection and pathogenesis in human tuberculosis
Journal Article
Mouse transcriptome reveals potential signatures of protection and pathogenesis in human tuberculosis
2020
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Overview
Although mouse infection models have been extensively used to study the host response to
Mycobacterium tuberculosis
, their validity in revealing determinants of human tuberculosis (TB) resistance and disease progression has been heavily debated. Here, we show that the modular transcriptional signature in the blood of susceptible mice infected with a clinical isolate of
M. tuberculosis
resembles that of active human TB disease, with dominance of a type I interferon response and neutrophil activation and recruitment, together with a loss in B lymphocyte, natural killer and T cell effector responses. In addition, resistant but not susceptible strains of mice show increased lung B cell, natural killer and T cell effector responses in the lung upon infection. Notably, the blood signature of active disease shared by mice and humans is also evident in latent TB progressors before diagnosis, suggesting that these responses both predict and contribute to the pathogenesis of progressive
M. tuberculosis
infection.
The pathobiological validity of mouse models of mycobacteria infection is sometimes questioned. O’Garra and colleagues demonstrate that mice share transcriptomic modules with active human tuberculosis and a characteristic type I IFN signature.
Publisher
Nature Publishing Group US,Nature Publishing Group
Subject
/ Animals
/ B-Lymphocytes - microbiology
/ Biomedical and Life Sciences
/ Blood
/ Humans
/ Identification and classification
/ Interferon Type I - immunology
/ Killer Cells, Natural - immunology
/ Killer Cells, Natural - microbiology
/ Mice
/ Mycobacterium tuberculosis - immunology
/ Resource
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