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Four-Gene Pan-African Blood Signature Predicts Progression to Tuberculosis

Sara Suliman, Ethan Thompson, Jayne S. Sutherland, January Weiner, Martin O. C. Ota, Smitha Shankar, Adam Penn‐Nicholson, Bonnie Thiel, Mzwandile Erasmus, Jeroen Maertzdorf, Fergal J. Duffy, Philip C. Hill, E. Jane Hughes, Kim Stanley, Katrina Downing

American Journal of Respiratory and Critical Care Medicine · 2018 · ▲ 269 citations

Abstract

Abstract Rationale Contacts of patients with tuberculosis (TB) constitute an important target population for preventive measures because they are at high risk of infection with Mycobacterium tuberculosis and progression to disease. Objectives We investigated biosignatures with predictive ability for incident TB. Methods In a case–control study nested within the Grand Challenges 6-74 longitudinal HIV-negative African cohort of exposed household contacts, we employed RNA sequencing, PCR, and the pair ratio algorithm in a training/test set approach. Overall, 79 progressors who developed TB between 3 and 24 months after diagnosis of index case and 328 matched nonprogressors who remained healthy during 24 months of follow-up were investigated. Measurements and Main Results A four-transcript signature derived from samples in a South African and Gambian training set predicted progression up to two years before onset of disease in blinded test set samples from South Africa, the Gambia, and Ethiopia with little population-associated variability, and it was also validated in an external cohort of South African adolescents with latent M. tuberculosis infection. By contrast, published diagnostic or prognostic TB signatures were predicted in samples from some but not all three countries, indicating site-specific variability. Post hoc meta-analysis identified a single gene pair, C1QC/TRAV27 (complement C1q C-chain / T-cell receptor-α variable gene 27) that would consistently predict TB progression in household contacts from multiple African sites but not in infected adolescents without known recent exposure events. Conclusions Collectively, we developed a simple whole blood–based PCR test to predict TB in recently exposed household contacts from diverse African populations. This test has potential for implementation in national TB contact investigation programs.

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OpenAlex
DOI
10.1164/rccm.201711-2340oc
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2026-07-28 MST

Cite this

APA
Suliman, S., Thompson, E., Sutherland, J.S., Weiner, J., Ota, M.O.C., Shankar, S., Penn‐Nicholson, A., Thiel, B., Erasmus, M., Maertzdorf, J., Duffy, F.J., Hill, P.C., Hughes, E.J., Stanley, K., Downing, K., Fisher, M., Valvo, J., Parida, S.K., Spuy, G.V.D., &amp; Tromp, G. (2018). Four-Gene Pan-African Blood Signature Predicts Progression to Tuberculosis. <em>American Journal of Respiratory and Critical Care Medicine</em>. https://doi.org/10.1164/rccm.201711-2340oc
Vancouver
Suliman S, Thompson E, Sutherland JS, Weiner J, Ota MOC, Shankar S, et al. Four-Gene Pan-African Blood Signature Predicts Progression to Tuberculosis. American Journal of Respiratory and Critical Care Medicine. 2018. doi:10.1164/rccm.201711-2340oc.
BibTeX
@unpublished{sara2018FourGe, title = {Four-Gene Pan-African Blood Signature Predicts Progression to Tuberculosis}, author = {Sara Suliman and Ethan Thompson and Jayne S. Sutherland and January Weiner and Martin O. C. Ota and Smitha Shankar and Adam Penn‐Nicholson and Bonnie Thiel and Mzwandile Erasmus and Jeroen Maertzdorf and Fergal J. Duffy and Philip C. Hill and E. Jane Hughes and Kim Stanley and Katrina Downing and Michelle Fisher and Joe Valvo and Shreemanta K. Parida and Gian van der Spuy and Gerard Tromp and Ifedayo Adetifa and Simon Donkor and Rawleigh Howe and Harriet Mayanja‐Kizza and W. Henry Boom}, journal = {American Journal of Respiratory and Critical Care Medicine}, year = {2018}, doi = {10.1164/rccm.201711-2340oc}, }

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