Endothelial cells sialylate IgG within the FcRn-mediated recycling pathway.

Glendenning, Leandre M; Long, Megan D; Carlson, Gracie C; Silva, Austin D; Wang, Siyu; Reynero, Kalob M; Kukan, Emily N; Bellis, Susan L et al. · Proc Natl Acad Sci U S A · 2025

basic_science · Level V

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Abstract

IgG is a key to adaptive immunity and a critical platform for drug design. Sialic acid on the conserved glycan within the Fc domain is believed to promote anti-inflammatory IgG function; however, regulation of sialylation remains poorly defined. We previously showed that IgG sialylation is primarily mediated by B cell-extrinsic processes in mice. Here, we found that IgG sialylation occurs in the subcellular compartments of the FcRn-mediated IgG recycling pathway of endothelial cells. This process is down-regulated by inflammatory signals and up-regulated during gestation, providing mechanistic insight into the epidemiology associating IgG glycosylation, pregnancy and inflammatory disease. These findings demonstrate that plasma-localized IgG glycosylation is dynamically altered by the endothelium, revealing a potential mechanism through which the function of all endogenous and administered IgG and Fc-containing pharmaceuticals could be altered.

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