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Neonatal Fc receptor expression in macrophages is indispensable for IgG homeostasis

Neonatal Fc receptor expression in macrophages is indispensable for IgG homeostasis
Neonatal Fc receptor expression in macrophages is indispensable for IgG homeostasis
The maintenance of the homeostasis of immunoglobulin G (IgG) represents a fundamental aspect of humoral immunity that has direct relevance to the successful delivery of antibody-based therapeutics. The ubiquitously expressed neonatal Fc receptor (FcRn) salvages IgG from cellular degradation following pinocytic uptake into cells, conferring prolonged in vivo persistence on IgG. However, the cellular sites of FcRn function are poorly defined. Pinocytic uptake is a prerequisite for FcRn-mediated IgG salvage, prompting us to investigate the consequences of IgG uptake and catabolism by macrophages, which represent both abundant and highly pinocytic cells in the body. Site-specific deletion of FcRn to generate mice harboring FcRn-deficient macrophages results in IgG hypercatabolism and ~threefold reductions in serum IgG levels, whereas these effects were not observed in mice that lack functional FcRn in B cells and dendritic cells. Consistent with the degradative activity of FcRn-deficient macrophages, depletion of these cells in FcRn-deficient mice leads to increased persistence and serum levels of IgG. These studies demonstrate a pivotal role for FcRn-mediated salvage in compensating for the high pinocytic and degradative activities of macrophages to maintain IgG homeostasis.
1942-0862
Challa, Dilip K.
433af413-17a0-4c55-b86f-21e4e5cedd6f
Wang, Xiaoli
b4716dc4-ee38-4e74-8690-1f027ccf080b
Montoyo, Hector Pérez
a5e38131-2c10-4922-b196-693e6effa1b3
Velmurugan, Ramraj
4f2d41cd-90eb-4f61-b5e0-df6308726d28
Ober, R.J.
31f4d47f-fb49-44f5-8ff6-87fc4aff3d36
Ward, E. Sally
b31c0877-8abe-485f-b800-244a9d3cd6cc
Challa, Dilip K.
433af413-17a0-4c55-b86f-21e4e5cedd6f
Wang, Xiaoli
b4716dc4-ee38-4e74-8690-1f027ccf080b
Montoyo, Hector Pérez
a5e38131-2c10-4922-b196-693e6effa1b3
Velmurugan, Ramraj
4f2d41cd-90eb-4f61-b5e0-df6308726d28
Ober, R.J.
31f4d47f-fb49-44f5-8ff6-87fc4aff3d36
Ward, E. Sally
b31c0877-8abe-485f-b800-244a9d3cd6cc

Challa, Dilip K., Wang, Xiaoli, Montoyo, Hector Pérez, Velmurugan, Ramraj, Ober, R.J. and Ward, E. Sally (2019) Neonatal Fc receptor expression in macrophages is indispensable for IgG homeostasis. mAbs. (doi:10.1080/19420862.2019.1602459).

Record type: Article

Abstract

The maintenance of the homeostasis of immunoglobulin G (IgG) represents a fundamental aspect of humoral immunity that has direct relevance to the successful delivery of antibody-based therapeutics. The ubiquitously expressed neonatal Fc receptor (FcRn) salvages IgG from cellular degradation following pinocytic uptake into cells, conferring prolonged in vivo persistence on IgG. However, the cellular sites of FcRn function are poorly defined. Pinocytic uptake is a prerequisite for FcRn-mediated IgG salvage, prompting us to investigate the consequences of IgG uptake and catabolism by macrophages, which represent both abundant and highly pinocytic cells in the body. Site-specific deletion of FcRn to generate mice harboring FcRn-deficient macrophages results in IgG hypercatabolism and ~threefold reductions in serum IgG levels, whereas these effects were not observed in mice that lack functional FcRn in B cells and dendritic cells. Consistent with the degradative activity of FcRn-deficient macrophages, depletion of these cells in FcRn-deficient mice leads to increased persistence and serum levels of IgG. These studies demonstrate a pivotal role for FcRn-mediated salvage in compensating for the high pinocytic and degradative activities of macrophages to maintain IgG homeostasis.

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Accepted/In Press date: 25 March 2019
e-pub ahead of print date: 9 April 2019

Identifiers

Local EPrints ID: 430780
URI: http://eprints.soton.ac.uk/id/eprint/430780
ISSN: 1942-0862
PURE UUID: db4bdd48-49bc-434e-b4c0-4e72903e9b42
ORCID for R.J. Ober: ORCID iD orcid.org/0000-0002-1290-7430
ORCID for E. Sally Ward: ORCID iD orcid.org/0000-0003-3232-7238

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Date deposited: 10 May 2019 16:30
Last modified: 16 Mar 2024 07:44

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Contributors

Author: Dilip K. Challa
Author: Xiaoli Wang
Author: Hector Pérez Montoyo
Author: Ramraj Velmurugan
Author: R.J. Ober ORCID iD
Author: E. Sally Ward ORCID iD

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