The TGF-β inhibitory activity of antibody 37E1B5 depends on its H-CDR2 glycan

抗体37E1B5的TGF-β抑制活性取决于其H-CDR2糖基化结构域。

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作者:Ping Tsui ,Daniel R Higazi ,Yanli Wu ,Rebecca Dunmore ,Emilie Solier ,Toyin Kasali ,Nicholas J Bond ,Catherine Huntington ,Alan Carruthers ,John Hood ,M Jack Borrok ,Arnita Barnes ,Keith Rickert ,Sandrina Phipps ,Lena Shirinian ,Jie Zhu ,Michael A Bowen ,William Dall'Acqua ,Lynne A Murray

Abstract

Excessive transforming growth factor (TGF)-β is associated with pro-fibrotic responses in lung disease, yet it also plays essential roles in tissue homeostasis and autoimmunity. Therefore, selective inhibition of excessive and aberrant integrin-mediated TGF-β activation via targeting the α-v family of integrins is being pursued as a therapeutic strategy for chronic lung diseases, to mitigate any potential safety concerns with global TGF-β inhibition. In this work, we reveal a novel mechanism of inhibiting TGF-β activation utilized by an αvβ8 targeting antibody, 37E1B5. This antibody blocks TGF-β activation while not inhibiting cell adhesion. We show that an N-linked complex-type Fab glycan in H-CDR2 of 37E1B5 is directly involved in the inhibition of latent TGF-β activation. Removal of the Fab N-glycosylation site by single amino acid substitution, or removal of N-linked glycans by enzymatic digestion, drastically reduced the antibody's ability to inhibit latency-associated peptide (LAP) and αvβ8 association, and TGF-β activation in an αvβ8-mediated TGF-β signaling reporter assay. Our results indicate a non-competitive, allosteric inhibition of 37E1B5 on αvβ8-mediated TGF-β activation. This unique, H-CDR2 glycan-mediated mechanism may account for the potent but tolerable TGF-b activation inhibition and lack of an effect on cellular adhesion by the antibody.

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