High-Throughput Human Complement C3 N-Glycoprofiling Identifies Markers of Early Onset Type 1 Diabetes Mellitus in Children

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Standard

High-Throughput Human Complement C3 N-Glycoprofiling Identifies Markers of Early Onset Type 1 Diabetes Mellitus in Children. / Šoić, Dinko; Keser, Toma; Štambuk, Jerko; Kifer, Domagoj; Pociot, Flemming; Lauc, Gordan; Morahan, Grant; Novokmet, Mislav; Gornik, Olga.

I: Molecular and Cellular Proteomics, Bind 21, Nr. 10, 100407, 2022.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Šoić, D, Keser, T, Štambuk, J, Kifer, D, Pociot, F, Lauc, G, Morahan, G, Novokmet, M & Gornik, O 2022, 'High-Throughput Human Complement C3 N-Glycoprofiling Identifies Markers of Early Onset Type 1 Diabetes Mellitus in Children', Molecular and Cellular Proteomics, bind 21, nr. 10, 100407. https://doi.org/10.1016/j.mcpro.2022.100407

APA

Šoić, D., Keser, T., Štambuk, J., Kifer, D., Pociot, F., Lauc, G., Morahan, G., Novokmet, M., & Gornik, O. (2022). High-Throughput Human Complement C3 N-Glycoprofiling Identifies Markers of Early Onset Type 1 Diabetes Mellitus in Children. Molecular and Cellular Proteomics, 21(10), [100407]. https://doi.org/10.1016/j.mcpro.2022.100407

Vancouver

Šoić D, Keser T, Štambuk J, Kifer D, Pociot F, Lauc G o.a. High-Throughput Human Complement C3 N-Glycoprofiling Identifies Markers of Early Onset Type 1 Diabetes Mellitus in Children. Molecular and Cellular Proteomics. 2022;21(10). 100407. https://doi.org/10.1016/j.mcpro.2022.100407

Author

Šoić, Dinko ; Keser, Toma ; Štambuk, Jerko ; Kifer, Domagoj ; Pociot, Flemming ; Lauc, Gordan ; Morahan, Grant ; Novokmet, Mislav ; Gornik, Olga. / High-Throughput Human Complement C3 N-Glycoprofiling Identifies Markers of Early Onset Type 1 Diabetes Mellitus in Children. I: Molecular and Cellular Proteomics. 2022 ; Bind 21, Nr. 10.

Bibtex

@article{aa13e703d30c4a4a83e69bb20738ff4d,
title = "High-Throughput Human Complement C3 N-Glycoprofiling Identifies Markers of Early Onset Type 1 Diabetes Mellitus in Children",
abstract = "Recently, it was shown that children at the onset of type 1 diabetes (T1D) have a higher proportion of oligomannose glycans in their total plasma protein N-glycome compared to their healthy siblings. The most abundant complement component, glycoprotein C3, contains two N-glycosylation sites occupied exclusively by this type of glycans. Furthermore, complement system, as well as C3, was previously associated with T1D. It is also known that changes in glycosylation can modulate inflammatory responses, so our aim was to characterize the glycosylation profile of C3 in T1D. For this purpose, we developed a novel high-throughput workflow for human C3 concanavalin A lectin affinity enrichment and subsequent LC-MS glycopeptide analysis which enables protein-specific N-glycosylation profiling. From the Danish Childhood Diabetes Register, plasma samples of 61 children/adolescents newly diagnosed with T1D and 84 of their unaffected siblings were C3 N-glycoprofiled. Significant changes of C3 N-glycan profiles were found. T1D was associated with an increase in the proportion of unprocessed glycan structures with more mannose units. A regression model including C3 N-glycans showed notable discriminative power between children with early onset T1D and their healthy siblings with area under curve of 0.879. This study confirmed our previous findings of plasma high-mannose glycan changes in a cohort of recent onset T1D cases, suggesting the involvement of C3 N-glycome in T1D development. Our C3 glycan-based discriminative model could be valuable in assessment of T1D risk in children.",
author = "Dinko {\v S}oi{\'c} and Toma Keser and Jerko {\v S}tambuk and Domagoj Kifer and Flemming Pociot and Gordan Lauc and Grant Morahan and Mislav Novokmet and Olga Gornik",
note = "Publisher Copyright: {\textcopyright} 2022 THE AUTHORS. Published by Elsevier Inc on behalf of American Society for Biochemistry and Molecular Biology.",
year = "2022",
doi = "10.1016/j.mcpro.2022.100407",
language = "English",
volume = "21",
journal = "Molecular and Cellular Proteomics",
issn = "1535-9476",
publisher = "American Society for Biochemistry and Molecular Biology",
number = "10",

}

RIS

TY - JOUR

T1 - High-Throughput Human Complement C3 N-Glycoprofiling Identifies Markers of Early Onset Type 1 Diabetes Mellitus in Children

AU - Šoić, Dinko

AU - Keser, Toma

AU - Štambuk, Jerko

AU - Kifer, Domagoj

AU - Pociot, Flemming

AU - Lauc, Gordan

AU - Morahan, Grant

AU - Novokmet, Mislav

AU - Gornik, Olga

N1 - Publisher Copyright: © 2022 THE AUTHORS. Published by Elsevier Inc on behalf of American Society for Biochemistry and Molecular Biology.

PY - 2022

Y1 - 2022

N2 - Recently, it was shown that children at the onset of type 1 diabetes (T1D) have a higher proportion of oligomannose glycans in their total plasma protein N-glycome compared to their healthy siblings. The most abundant complement component, glycoprotein C3, contains two N-glycosylation sites occupied exclusively by this type of glycans. Furthermore, complement system, as well as C3, was previously associated with T1D. It is also known that changes in glycosylation can modulate inflammatory responses, so our aim was to characterize the glycosylation profile of C3 in T1D. For this purpose, we developed a novel high-throughput workflow for human C3 concanavalin A lectin affinity enrichment and subsequent LC-MS glycopeptide analysis which enables protein-specific N-glycosylation profiling. From the Danish Childhood Diabetes Register, plasma samples of 61 children/adolescents newly diagnosed with T1D and 84 of their unaffected siblings were C3 N-glycoprofiled. Significant changes of C3 N-glycan profiles were found. T1D was associated with an increase in the proportion of unprocessed glycan structures with more mannose units. A regression model including C3 N-glycans showed notable discriminative power between children with early onset T1D and their healthy siblings with area under curve of 0.879. This study confirmed our previous findings of plasma high-mannose glycan changes in a cohort of recent onset T1D cases, suggesting the involvement of C3 N-glycome in T1D development. Our C3 glycan-based discriminative model could be valuable in assessment of T1D risk in children.

AB - Recently, it was shown that children at the onset of type 1 diabetes (T1D) have a higher proportion of oligomannose glycans in their total plasma protein N-glycome compared to their healthy siblings. The most abundant complement component, glycoprotein C3, contains two N-glycosylation sites occupied exclusively by this type of glycans. Furthermore, complement system, as well as C3, was previously associated with T1D. It is also known that changes in glycosylation can modulate inflammatory responses, so our aim was to characterize the glycosylation profile of C3 in T1D. For this purpose, we developed a novel high-throughput workflow for human C3 concanavalin A lectin affinity enrichment and subsequent LC-MS glycopeptide analysis which enables protein-specific N-glycosylation profiling. From the Danish Childhood Diabetes Register, plasma samples of 61 children/adolescents newly diagnosed with T1D and 84 of their unaffected siblings were C3 N-glycoprofiled. Significant changes of C3 N-glycan profiles were found. T1D was associated with an increase in the proportion of unprocessed glycan structures with more mannose units. A regression model including C3 N-glycans showed notable discriminative power between children with early onset T1D and their healthy siblings with area under curve of 0.879. This study confirmed our previous findings of plasma high-mannose glycan changes in a cohort of recent onset T1D cases, suggesting the involvement of C3 N-glycome in T1D development. Our C3 glycan-based discriminative model could be valuable in assessment of T1D risk in children.

U2 - 10.1016/j.mcpro.2022.100407

DO - 10.1016/j.mcpro.2022.100407

M3 - Journal article

C2 - 36031042

AN - SCOPUS:85140374775

VL - 21

JO - Molecular and Cellular Proteomics

JF - Molecular and Cellular Proteomics

SN - 1535-9476

IS - 10

M1 - 100407

ER -

ID: 342675852