Modulating protective and pathogenic CD4+ subsets via CD137 in type 1 diabetes
DIABETES
Authors: Irie, Junichiro; Wu, Yuehong; Kachapati, Kritika; Mittler, Robert S.; Ridgway, William M.
Abstract
CD137(TNFRSF9) is an activation-inducible T-cell costimulatory molecule and a member of the tumor necrosis factor (TNF) receptor superfamily. Cd137 is also a candidate gene (in the Idd9.3 interval) for autoimmune diabetes in NOD mice. Here, we demonstrate that anti-CD137 treatment protects NOD mice from diabetes. Anti-CD137-treated mice are not protected from insulitis and still harbor pathogenic T-cells, as demonstrated by transfer studies. Transfer of CD4(+), but not CD8(+), cells from antiCD137-treated pre-diabetic NOD mice into NOD-scid mice delayed diabetes onset. Anti-CD137 treatment significantly increased the number of CD4(+)CD25(+) cells, which demonstrated intracellular Foxp3 expression and in vitro suppressive activity. The CD4(+)CD25(+) cell subset from anti-CD137-treated mice transferred complete protection from diabetes, whereas the CD4(+)CD25(-) cell subset offered no significant protection. Anti-CD137 treatment of NOD-scid recipients of diabetic spleen cells, however, hastened the onset of disease, showing that the effect of anti-CD137 treatment depends on the balance of pathogenic and protective cells. These results support a critical role for CD137 acting in the early phase of autoimmune diabetes to enhance regulatory cell production. Disease-associated CD137 alleles are likely ineffectual at stimulating a regulatory T-cell population sufficient to prevent disease.
Epitope and Fc-Mediated Cross-linking, but Not High Affinity, Are Critical for Antitumor Activity of CD137 Agonist Antibody with Reduced Liver Toxicity
MOLECULAR CANCER THERAPEUTICS
Authors: Ho, Sun K.; Xu, Zhenghai; Thakur, Archana; Fox, Melvin; Tan, Siu Sze; DiGiammarino, Enrico; Zhou, Li; Sho, Mien; Cairns, Belinda; Zhao, Vivian; Xiong, Mengli; Samayoa, Josue; Forsyth, Charles M.; Powers, David B.; Chao, Debra T.; Hollenbaugh, Diane; Alvarez, Hamsell M.; Akamatsu, Yoshiko
Abstract
CD137 (TNFRSF9, 4-1BB) agonist antibodies ( mAb) have demonstrated potent antitumor activity with memory response while causing hepatotoxicity in mouse models. In clinical trials, the degrees of liver toxicity of anti-CD137 vary from grade 4 transaminitis (urelumab) to nonexistent (utomilumab). To exploit the antitumor potential of CD137 signaling, we identified a new class of CD137 agonist mAbs with strong antitumor potency without significant transaminitis in vivo compared with CD137 agonists previously reported. These mAbs are crossreactive to mouse and cynomolgus monkey and showed cross-linking-dependent T-cell costimulation activity in vitro. Antitu-mor efficacy was maintained in Fc gamma receptor (Fc gamma R) III-deficient mice but diminished in Fc gamma RIIB-deficient mice, suggesting the critical role for Fc gamma RIIB to provide cross-linking in vivo. Interestingly, a single dose of an affinity-reduced variant was sufficient to control tumor growth, but a higher affinity variant did not improve efficacy. These observations suggest that binding epitope and Fc gamma R interaction, but not necessarily high affinity, are important for antitumor efficacy and reduced liver toxicity of CD137 mAb. Our study suggests the possibility of CD137 agonist therapy with improved safety profile in humans.