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Unraveling the Effect of a Potentiating Anti–Factor H Antibody on Atypical Hemolytic Uremic Syndrome–Associated Factor H Variants
Author(s) -
Gillian Dekkers,
Mieke C. Brouwer,
Jorn Jeremiasse,
A Kamp,
Robyn M. Biggs,
Gerard van Mierlo,
Scott Lauder,
Suresh Katti,
Taco W. Kuijpers,
Theo Rispens,
Ilse Jongerius
Publication year - 2020
Publication title -
the journal of immunology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.737
H-Index - 372
eISSN - 1550-6606
pISSN - 0022-1767
DOI - 10.4049/jimmunol.2000368
Subject(s) - atypical hemolytic uremic syndrome , eculizumab , alternative complement pathway , complement system , factor h , mutant , complement factor b , antibody , classical complement pathway , complement factor i , immune system , context (archaeology) , biology , complement control protein , immunology , chemistry , genetics , gene , paleontology
The complement system plays an important role in our innate immune system. Complement activation results in clearance of pathogens, immune complex, and apoptotic cells. The host is protected from complement-mediated damage by several complement regulators. Factor H (FH) is the most important fluid-phase regulator of the alternative pathway of the complement system. Heterozygous mutations in FH are associated with complement-related diseases such as atypical hemolytic uremic syndrome (aHUS) and age-related macular degeneration. We recently described an agonistic anti-FH mAb that can potentiate the regulatory function of FH. This Ab could serve as a potential new drug for aHUS patients and alternative to C5 blockade by eculizumab. However, it is unclear whether this Ab can potentiate FH mutant variants in addition to wild-type (WT) FH. In this study, the functionality and potential of the agonistic Ab in the context of pathogenic aHUS-related FH mutant proteins was investigated. The binding affinity of recombinant WT FH and the FH variants, W1183L, V1197A, R1210C, and G1194D to C3b was increased upon addition of the potentiating Ab and similarly, the decay-accelerating activity of all mutants is increased. The potentiating anti-FH Ab is able to restore the surface regulatory function of most of the tested FH mutants to WT FH levels on a human HAP-1 cell line and on sheep erythrocytes. In conclusion, our potentiating anti-FH is broadly active and able to enhance both WT FH function as well as most aHUS-associated FH variants tested in this study.

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