Functionally Overlapping Variants Control Tuberculosis Susceptibility in Collaborative Cross Mice
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T. A. Bell | Martin T. Ferris | R. Baker | F. Pardo-Manuel de Villena | C. Sassetti | P. Hock | Clare M. Smith | S. Behar | Michael C. Kiritsy | Megan K. Proulx | R. Lai | M. Ferris
[1] J. Jaubert,et al. A loss-of-function mutation in Itgal contributes to the high susceptibility of Collaborative Cross strain CC042 to Salmonella infections , 2019, bioRxiv.
[2] D. Lauffenburger,et al. IFN-γ-independent immune markers of Mycobacterium tuberculosis exposure , 2019, Nature Medicine.
[3] T. Ndung’u,et al. Group 3 innate lymphoid cells mediate early protective immunity against tuberculosis , 2019, Nature.
[4] Leonard McMillan,et al. Whole Genome Sequencing and Progress Toward Full Inbreeding of the Mouse Collaborative Cross Population , 2019, G3: Genes, Genomes, Genetics.
[5] C. Sassetti,et al. Modeling Diversity: Do Homogeneous Laboratory Strains Limit Discovery? , 2018, Trends in microbiology.
[6] T. Myers,et al. Host resistance to pulmonary Mycobacterium tuberculosis infection requires CD153 expression , 2018, Nature Microbiology.
[7] Mark M. Davis,et al. A multi-cohort study of the immune factors associated with M. tuberculosis infection outcomes , 2018, Nature.
[8] Minsoo Kim,et al. LFA-1 in T Cell Migration and Differentiation , 2018, Front. Immunol..
[9] P. Earl,et al. Insufficient Innate Immunity Contributes to the Susceptibility of the Castaneous Mouse to Orthopoxvirus Infection , 2017, Journal of Virology.
[10] T. A. Bell,et al. Genomes of the Mouse Collaborative Cross , 2017, Genetics.
[11] B. Javid,et al. Latently and uninfected healthcare workers exposed to TB make protective antibodies against Mycobacterium tuberculosis , 2017, Proceedings of the National Academy of Sciences.
[12] Xinchun Chen,et al. Nitric oxide prevents a pathogen permissive granulocytic inflammation during tuberculosis , 2017, Nature Microbiology.
[13] J. Alcorn,et al. Novel role for IL-22 in protection during chronic Mycobacterium tuberculosis HN878 infection , 2017, Mucosal Immunology.
[14] Peter J Dodd,et al. The Global Burden of Latent Tuberculosis Infection: A Re-estimation Using Mathematical Modelling , 2016, PLoS medicine.
[15] D. Lauffenburger,et al. A Functional Role for Antibodies in Tuberculosis , 2016, Cell.
[16] R. Baker,et al. Tuberculosis Susceptibility and Vaccine Protection Are Independently Controlled by Host Genotype , 2016, mBio.
[17] A. Sharpe,et al. CD4 T Cell-Derived IFN-γ Plays a Minimal Role in Control of Pulmonary Mycobacterium tuberculosis Infection and Must Be Actively Repressed by PD-1 to Prevent Lethal Disease , 2016, PLoS pathogens.
[18] A. Apt,et al. The QTL within the H2 Complex Involved in the Control of Tuberculosis Infection in Mice Is the Classical Class II H2-Ab1 Gene , 2015, PLoS genetics.
[19] M. Gurcan,et al. Lung necrosis and neutrophils reflect common pathways of susceptibility to Mycobacterium tuberculosis in genetically diverse, immune-competent mice , 2015, Disease Models & Mechanisms.
[20] J. Barrett,et al. Susceptibility to tuberculosis is associated with variants in the ASAP1 gene encoding a regulator of dendritic cell migration , 2015, Nature Genetics.
[21] S. Khader,et al. Chemokines shape the immune responses to tuberculosis. , 2013, Cytokine & growth factor reviews.
[22] J. Casanova,et al. Mycobacterial Disease and Impaired IFN-γ Immunity in Humans with Inherited ISG15 Deficiency , 2012, Science.
[23] Leonard McMillan,et al. Status and access to the Collaborative Cross population , 2012, Mammalian Genome.
[24] P. Earl,et al. Lethal Monkeypox Virus Infection of CAST/EiJ Mice Is Associated with a Deficient Gamma Interferon Response , 2012, Journal of Virology.
[25] M. Newport,et al. Common variants at 11p13 are associated with susceptibility to tuberculosis , 2012, Nature Genetics.
[26] Lisa E. Gralinski,et al. The Genome Architecture of the Collaborative Cross Mouse Genetic Reference Population , 2012, Genetics.
[27] Leonard McMillan,et al. High-Resolution Genetic Mapping Using the Mouse Diversity Outbred Population , 2012, Genetics.
[28] G. Churchill,et al. Ten Years of the Collaborative Cross , 2012, Genetics.
[29] B. Nandi,et al. Regulation of neutrophils by interferon-γ limits lung inflammation during tuberculosis infection , 2011, The Journal of experimental medicine.
[30] Damien Chaussabel,et al. IRF8 mutations and human dendritic-cell immunodeficiency. , 2011, The New England journal of medicine.
[31] Ivana V. Yang,et al. Genetic analysis of complex traits in the emerging Collaborative Cross. , 2011, Genome research.
[32] J. Casanova,et al. Germline CYBB mutations that selectively affect macrophages in kindreds with X-linked predisposition to tuberculous mycobacterial disease , 2011, Nature Immunology.
[33] A. Morris,et al. Genome-wide association analyses identifies a susceptibility locus for tuberculosis on chromosome 18q11.2 , 2010, Nature Genetics.
[34] B. Baaten,et al. CD44 regulates survival and memory development in Th1 cells. , 2010, Immunity.
[35] J. Ernst,et al. Interferon-gamma-responsive nonhematopoietic cells regulate the immune response to Mycobacterium tuberculosis. , 2009, Immunity.
[36] P. Gros,et al. Genetic and Functional Characterization of the Mouse Trl3 Locus in Defense against Tuberculosis1 , 2009, The Journal of Immunology.
[37] M. Roederer,et al. T-cell quality in memory and protection: implications for vaccine design , 2008, Nature Reviews Immunology.
[38] Rolf Backofen,et al. Violating the splicing rules: TG dinucleotides function as alternative 3' splice sites in U2-dependent introns , 2007, Genome Biology.
[39] J. Casanova,et al. Inborn errors of IL-12/23- and IFN-γ-mediated immunity: molecular, cellular, and clinical features , 2006 .
[40] C. Ballantyne,et al. The LFA-1 Adhesion Molecule Is Required for Protective Immunity during Pulmonary Mycobacterium tuberculosis Infection1 , 2006, The Journal of Immunology.
[41] M. Daly,et al. Ipr1 gene mediates innate immunity to tuberculosis , 2005, Nature.
[42] Nengjun Yi,et al. The Collaborative Cross, a community resource for the genetic analysis of complex traits , 2004, Nature Genetics.
[43] Gregory A. Taylor,et al. Immune Control of Tuberculosis by IFN-γ-Inducible LRG-47 , 2003, Science.
[44] S. Behar,et al. Susceptibility to Mycobacterium tuberculosis: lessons from inbred strains of mice. , 2003, Tuberculosis.
[45] L. Cardon,et al. Susceptibility to tuberculosis: A locus on mouse chromosome 19 (Trl-4) regulates Mycobacterium tuberculosis replication in the lungs , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[46] W. Dietrich,et al. Genetic control of resistance to experimental infection with virulent Mycobacterium tuberculosis. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[47] N. Hogg,et al. Lymphocyte Migration in Lymphocyte Function-associated Antigen (LFA)-1–deficient Mice , 1999, The Journal of experimental medicine.
[48] H. Whittle,et al. Variations in the NRAMP1 gene and susceptibility to tuberculosis in West Africans. , 1998, The New England journal of medicine.
[49] P. Schlesinger,et al. Cytokine activation leads to acidification and increases maturation of Mycobacterium avium-containing phagosomes in murine macrophages. , 1998, Journal of immunology.
[50] North,et al. Resistance ranking of some common inbred mouse strains to Mycobacterium tuberculosis and relationship to major histocompatibility complex haplotype and Nramp1 genotype , 1998, Immunology.
[51] J. Flynn,et al. An essential role for interferon gamma in resistance to Mycobacterium tuberculosis infection , 1993, The Journal of experimental medicine.
[52] Comstock Gw. Tuberculosis in twins: a re-analysis of the Prophit survey. , 1978, The American review of respiratory disease.
[53] F. J. Kallmann. Genetic mechanisms in resistance to tuberculosis , 1943 .
[54] P. Gros,et al. Genetic determinants of susceptibility to Mycobacterial infections: IRF8, a new kid on the block. , 2013, Advances in experimental medicine and biology.
[55] M. Daly,et al. Multigenic control of tuberculosis resistance: analysis of a QTL on mouse chromosome 7 and its synergism with sst1 , 2009, Genes and Immunity.
[56] J. Casanova,et al. Inborn errors of IL-12/23- and IFN-gamma-mediated immunity: molecular, cellular, and clinical features. , 2006, Seminars in immunology.
[57] J. Mckinney,et al. Immune control of tuberculosis by IFN-gamma-inducible LRG-47. , 2003, Science.
[58] I. Orme,et al. Materials and Methods Briefdefinitive Report Disseminated Tuberculosis in Interferon 7 Gene-disrupted Mice , 2022 .