A Functional Role for Antibodies in Tuberculosis
Author(s) -
Lenette L. Lu,
Amy W. Chung,
Tracy R. Rosebrock,
Musie Ghebremichael,
WenHan Yu,
Patricia S. Grace,
Matthew K. Schoen,
Fikadu Tafesse,
Constance J. Martin,
Vivian Leung,
Alison E. Mahan,
Magdalena Sips,
Manu P. Kumar,
Jacquelynne Tedesco,
Hannah R. Robinson,
Elizabeth Tkachenko,
Monia Draghi,
Katherine J. Freedberg,
Hendrik Streeck,
Todd J. Suscovich,
Douglas A. Lauffenburger,
Blanca I. Restrepo,
Cheryl L. Day,
Sarah M. Fortune,
Galit Alter
Publication year - 2016
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2016.08.072
Subject(s) - biology , immunology , tuberculosis , mycobacterium tuberculosis , antibody , immune system , inflammasome , humoral immunity , immunity , effector , glycosylation , latent tuberculosis , virology , inflammation , medicine , genetics , pathology
While a third of the world carries the burden of tuberculosis, disease control has been hindered by a lack of tools, including a rapid, point-of-care diagnostic and a protective vaccine. In many infectious diseases, antibodies (Abs) are powerful biomarkers and important immune mediators. However, in Mycobacterium tuberculosis (Mtb) infection, a discriminatory or protective role for humoral immunity remains unclear. Using an unbiased antibody profiling approach, we show that individuals with latent tuberculosis infection (Ltb) and active tuberculosis disease (Atb) have distinct Mtb-specific humoral responses, such that Ltb infection is associated with unique Ab Fc functional profiles, selective binding to FcγRIII, and distinct Ab glycosylation patterns. Moreover, compared to Abs from Atb, Abs from Ltb drove enhanced phagolysosomal maturation, inflammasome activation, and, most importantly, macrophage killing of intracellular Mtb. Combined, these data point to a potential role for Fc-mediated Ab effector functions, tuned via differential glycosylation, in Mtb control.
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