Literature DB >> 18843053

Neonatal Fc receptor mediates internalization of Fc in transfected human endothelial cells.

Nancy A Goebl1, Clifford M Babbey, Amita Datta-Mannan, Derrick R Witcher, Victor J Wroblewski, Kenneth W Dunn.   

Abstract

The neonatal Fc receptor, FcRn mediates an endocytic salvage pathway that prevents degradation of IgG, thus contributing to the homeostasis of circulating IgG. Based on the low affinity of IgG for FcRn at neutral pH, internalization of IgG by endothelial cells is generally believed to occur via fluid-phase endocytosis. To investigate the role of FcRn in IgG internalization, we used quantitative confocal microscopy to characterize internalization of fluorescent Fc molecules by HULEC-5A lung microvascular endothelia transfected with GFP fusion proteins of human or mouse FcRn. In these studies, cells transfected with FcRn accumulated significantly more intracellular Fc than untransfected cells. Internalization of FcRn-binding forms of Fc was proportional to FcRn expression level, was enriched relative to dextran internalization in proportion to FcRn expression level, and was blocked by incubation with excess unlabeled Fc. Because we were unable to detect either surface expression of FcRn or surface binding of Fc, these results suggest that FcRn-dependent internalization of Fc may occur through sequestration of Fc by FcRn in early endosomes. These studies indicate that FcRn-dependent internalization of IgG may be important not only in cells taking up IgG from an extracellular acidic space, but also in endothelial cells participating in homeostatic regulation of circulating IgG levels.

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Year:  2008        PMID: 18843053      PMCID: PMC2592658          DOI: 10.1091/mbc.e07-02-0101

Source DB:  PubMed          Journal:  Mol Biol Cell        ISSN: 1059-1524            Impact factor:   4.138


  56 in total

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Review 3.  Multiple roles for the major histocompatibility complex class I- related receptor FcRn.

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4.  Characterization of rapid membrane internalization and recycling.

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5.  pH heterogeneity at intracellular and extracellular plasma membrane sites in HT29-C1 cell monolayers.

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7.  Increasing the affinity of a human IgG1 for the neonatal Fc receptor: biological consequences.

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8.  Bidirectional transcytosis of IgG by the rat neonatal Fc receptor expressed in a rat kidney cell line: a system to study protein transport across epithelia.

Authors:  K M McCarthy; Y Yoong; N E Simister
Journal:  J Cell Sci       Date:  2000-04       Impact factor: 5.285

9.  Transport from late endosomes to lysosomes, but not sorting of integral membrane proteins in endosomes, depends on the vacuolar proton pump.

Authors:  A W van Weert; K W Dunn; H J Geuze; F R Maxfield; W Stoorvogel
Journal:  J Cell Biol       Date:  1995-08       Impact factor: 10.539

10.  A major histocompatibility complex class I-like Fc receptor cloned from human placenta: possible role in transfer of immunoglobulin G from mother to fetus.

Authors:  C M Story; J E Mikulska; N E Simister
Journal:  J Exp Med       Date:  1994-12-01       Impact factor: 14.307

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  36 in total

1.  Influence of improved FcRn binding on the subcutaneous bioavailability of monoclonal antibodies in cynomolgus monkeys.

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Review 4.  An Introduction to the Regulatory and Nonclinical Aspects of the Nonclinical Development of Antibody Drug Conjugates.

Authors:  Janice A Lansita; John M Burke; Joshua F Apgar; Barbara Mounho-Zamora
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Review 5.  The development of therapeutic monoclonal antibodies: overview of the nonclinical safety assessment.

Authors:  Janice A Lansita; Barbara Mounho-Zamora
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6.  Impact of SPR biosensor assay configuration on antibody: Neonatal Fc receptor binding data.

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7.  An In Vivo Blood-brain Barrier Permeability Assay in Mice Using Fluorescently Labeled Tracers.

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Review 8.  Mechanisms of action of therapeutic antibodies for cancer.

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9.  Nucleocapsid promotes localization of HIV-1 gag to uropods that participate in virological synapses between T cells.

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10.  The recycling and transcytotic pathways for IgG transport by FcRn are distinct and display an inherent polarity.

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