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Endogenous anti-Ebola virus GP1,2 antibodies interfere with detection of secreted glycoprotein in the blood of EVD patients.

Created on 06 Oct 2026

Authors

Patrick T Tshita, Aurélie Ploquin, John Misasi, Bobo N Bazola, Samuel M Shamamba, Hadar Marcus, Ange Y Mubiala, Francis M Ntumba, Saidou Milua, Courtney Tucker, Eddy Kinganda-Lusamaki, Emmanuel Lokilo, Raphael Lumbembe, Aziza Amuri, Naomie Bayoka, Anthony Suangi, Christian M Kahusu, Ilombe Myriam Mbilizi, Olivier Tshiani-Mbaya, Denis K Kandolo, Placide Mbala-Kingebeni, Sabue Mulangu, Jean-Jacques Muyembe-Tamfum, Nancy J Sullivan, Dacquin M Kasumba

Published in

Journal of virology. Pages e0141426. Oct 06, 2026. Epub Oct 06, 2026.

Abstract

Ebola disease (EBOD) is a highly infectious disease with severe hemorrhagic symptoms. It is caused by orthoebolaviruses, which include the Ebola virus (Orthoebolavirus zairense) (EBOV) causing Ebola virus disease (EVD), the most lethal EBOD to humans. Through co-transcriptional polymerase stuttering and subsequent proteolytic processing, its GP gene produces multiple protein products, including secreted glycoprotein (sGP) and structural membrane-associated trimeric GP1,2. Although sGP is known to circulate in the blood, its physiological significance in disease pathology remains speculative. We quantified sGP using enzyme-linked immunosorbent assay (ELISA) in 36 acute human EVD cases from the 10th and 11th EVD outbreaks in the Democratic Republic of the Congo (DRC) using single-time-point biobanked samples. We detected and quantified sGP in four patients with strong GP gene transcription (GP Ct < 25), as evidence of viral replication, but with no endogenous anti-EBOV GP1,2 IgG. However, sGP was not quantified in patients with lower GP transcription (Ct > 25), regardless of their anti-EBOV GP1,2 IgG results. While two patients, MAM179 and MAM271, had notably strong GP transcription (Ct < 25), their high amounts of endogenous anti-EBOV GP1,2 IgG might have interfered with detection by the assay detection antibody, a human anti-EBOV GP1,2/sGP IgG. Furthermore, the addition of sera containing anti-EBOV GP1,2 IgG reduced the binding between sGP and anti-EBOV GP1,2/sGP used as detection antibodies. This suggested that the level of sGP in circulation is strongly linked to the intensity of GP transcription. Additionally, circulating sGP in this context would form complexes with anti-GP1,2 antibodies, hence hindering additional antibody binding for detection.IMPORTANCEInsight into the mechanism of immune function by the Ebola virus secreted glycoprotein (sGP) in humans is essential for better understanding viral pathogenesis, immune protection, and immune evasion strategies. Research utilizing samples from patients who are infected with or have survived infection with the Ebola virus offers an unparalleled opportunity to determine the immunological significance of sGP. This research evaluates, in acutely infected patients from Ebola virus disease outbreaks, the role of EBOV sGP in modulating antibody responses directed against viral entry glycoprotein. By elucidating how sGP influences antibody-mediated immunity, the study advances our understanding of a conserved immune-evasion mechanism shared across all orthoebolaviruses. These investigations are valuable resources for designing more efficacious vaccines, therapies, and biomarkers for monitoring Ebola virus diseases.

PMID:
42836625
Bibliographic data and abstract were imported from PubMed on 06 Oct 2026.

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