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High Throughput Isolation and Glycosylation Analysis of IgG–Variability and Heritability of the IgG Glycome in Three Isolated Human Populations

All immunoglobulin G molecules carry N-glycans, which modulate their biological activity. Changes in N-glycosylation of IgG associate with various diseases and affect the activity of therapeutic antibodies and intravenous immunoglobulins. We have developed a novel 96-well protein G monolithic plate...

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Autores principales: Pučić, Maja, Knežević, Ana, Vidič, Jana, Adamczyk, Barbara, Novokmet, Mislav, Polašek, Ozren, Gornik, Olga, Šupraha-Goreta, Sandra, Wormald, Mark R., Redžić, Irma, Campbell, Harry, Wright, Alan, Hastie, Nicholas D., Wilson, James F., Rudan, Igor, Wuhrer, Manfred, Rudd, Pauline M., Josić, Djuro, Lauc, Gordan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3205872/
https://www.ncbi.nlm.nih.gov/pubmed/21653738
http://dx.doi.org/10.1074/mcp.M111.010090
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author Pučić, Maja
Knežević, Ana
Vidič, Jana
Adamczyk, Barbara
Novokmet, Mislav
Polašek, Ozren
Gornik, Olga
Šupraha-Goreta, Sandra
Wormald, Mark R.
Redžić, Irma
Campbell, Harry
Wright, Alan
Hastie, Nicholas D.
Wilson, James F.
Rudan, Igor
Wuhrer, Manfred
Rudd, Pauline M.
Josić, Djuro
Lauc, Gordan
author_facet Pučić, Maja
Knežević, Ana
Vidič, Jana
Adamczyk, Barbara
Novokmet, Mislav
Polašek, Ozren
Gornik, Olga
Šupraha-Goreta, Sandra
Wormald, Mark R.
Redžić, Irma
Campbell, Harry
Wright, Alan
Hastie, Nicholas D.
Wilson, James F.
Rudan, Igor
Wuhrer, Manfred
Rudd, Pauline M.
Josić, Djuro
Lauc, Gordan
author_sort Pučić, Maja
collection PubMed
description All immunoglobulin G molecules carry N-glycans, which modulate their biological activity. Changes in N-glycosylation of IgG associate with various diseases and affect the activity of therapeutic antibodies and intravenous immunoglobulins. We have developed a novel 96-well protein G monolithic plate and used it to rapidly isolate IgG from plasma of 2298 individuals from three isolated human populations. N-glycans were released by PNGase F, labeled with 2-aminobenzamide and analyzed by hydrophilic interaction chromatography with fluorescence detection. The majority of the structural features of the IgG glycome were consistent with previous studies, but sialylation was somewhat higher than reported previously. Sialylation was particularly prominent in core fucosylated glycans containing two galactose residues and bisecting GlcNAc where median sialylation level was nearly 80%. Very high variability between individuals was observed, approximately three times higher than in the total plasma glycome. For example, neutral IgG glycans without core fucose varied between 1.3 and 19%, a difference that significantly affects the effector functions of natural antibodies, predisposing or protecting individuals from particular diseases. Heritability of IgG glycans was generally between 30 and 50%. The individual's age was associated with a significant decrease in galactose and increase of bisecting GlcNAc, whereas other functional elements of IgG glycosylation did not change much with age. Gender was not an important predictor for any IgG glycan. An important observation is that competition between glycosyltransferases, which occurs in vitro, did not appear to be relevant in vivo, indicating that the final glycan structures are not a simple result of competing enzymatic activities, but a carefully regulated outcome designed to meet the prevailing physiological needs.
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spelling pubmed-32058722011-11-14 High Throughput Isolation and Glycosylation Analysis of IgG–Variability and Heritability of the IgG Glycome in Three Isolated Human Populations Pučić, Maja Knežević, Ana Vidič, Jana Adamczyk, Barbara Novokmet, Mislav Polašek, Ozren Gornik, Olga Šupraha-Goreta, Sandra Wormald, Mark R. Redžić, Irma Campbell, Harry Wright, Alan Hastie, Nicholas D. Wilson, James F. Rudan, Igor Wuhrer, Manfred Rudd, Pauline M. Josić, Djuro Lauc, Gordan Mol Cell Proteomics Technological Innovations and Resources All immunoglobulin G molecules carry N-glycans, which modulate their biological activity. Changes in N-glycosylation of IgG associate with various diseases and affect the activity of therapeutic antibodies and intravenous immunoglobulins. We have developed a novel 96-well protein G monolithic plate and used it to rapidly isolate IgG from plasma of 2298 individuals from three isolated human populations. N-glycans were released by PNGase F, labeled with 2-aminobenzamide and analyzed by hydrophilic interaction chromatography with fluorescence detection. The majority of the structural features of the IgG glycome were consistent with previous studies, but sialylation was somewhat higher than reported previously. Sialylation was particularly prominent in core fucosylated glycans containing two galactose residues and bisecting GlcNAc where median sialylation level was nearly 80%. Very high variability between individuals was observed, approximately three times higher than in the total plasma glycome. For example, neutral IgG glycans without core fucose varied between 1.3 and 19%, a difference that significantly affects the effector functions of natural antibodies, predisposing or protecting individuals from particular diseases. Heritability of IgG glycans was generally between 30 and 50%. The individual's age was associated with a significant decrease in galactose and increase of bisecting GlcNAc, whereas other functional elements of IgG glycosylation did not change much with age. Gender was not an important predictor for any IgG glycan. An important observation is that competition between glycosyltransferases, which occurs in vitro, did not appear to be relevant in vivo, indicating that the final glycan structures are not a simple result of competing enzymatic activities, but a carefully regulated outcome designed to meet the prevailing physiological needs. The American Society for Biochemistry and Molecular Biology 2011-10 2011-06-08 /pmc/articles/PMC3205872/ /pubmed/21653738 http://dx.doi.org/10.1074/mcp.M111.010090 Text en © 2011 by The American Society for Biochemistry and Molecular Biology, Inc. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Technological Innovations and Resources
Pučić, Maja
Knežević, Ana
Vidič, Jana
Adamczyk, Barbara
Novokmet, Mislav
Polašek, Ozren
Gornik, Olga
Šupraha-Goreta, Sandra
Wormald, Mark R.
Redžić, Irma
Campbell, Harry
Wright, Alan
Hastie, Nicholas D.
Wilson, James F.
Rudan, Igor
Wuhrer, Manfred
Rudd, Pauline M.
Josić, Djuro
Lauc, Gordan
High Throughput Isolation and Glycosylation Analysis of IgG–Variability and Heritability of the IgG Glycome in Three Isolated Human Populations
title High Throughput Isolation and Glycosylation Analysis of IgG–Variability and Heritability of the IgG Glycome in Three Isolated Human Populations
title_full High Throughput Isolation and Glycosylation Analysis of IgG–Variability and Heritability of the IgG Glycome in Three Isolated Human Populations
title_fullStr High Throughput Isolation and Glycosylation Analysis of IgG–Variability and Heritability of the IgG Glycome in Three Isolated Human Populations
title_full_unstemmed High Throughput Isolation and Glycosylation Analysis of IgG–Variability and Heritability of the IgG Glycome in Three Isolated Human Populations
title_short High Throughput Isolation and Glycosylation Analysis of IgG–Variability and Heritability of the IgG Glycome in Three Isolated Human Populations
title_sort high throughput isolation and glycosylation analysis of igg–variability and heritability of the igg glycome in three isolated human populations
topic Technological Innovations and Resources
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3205872/
https://www.ncbi.nlm.nih.gov/pubmed/21653738
http://dx.doi.org/10.1074/mcp.M111.010090
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