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N-glycoproteomic and proteomic alterations in SRD5A3-deficient fibroblasts.
- Source :
-
Glycobiology [Glycobiology] 2024 Sep 30; Vol. 34 (11). - Publication Year :
- 2024
-
Abstract
- SRD5A3-CDG is a congenital disorder of glycosylation (CDG) resulting from pathogenic variants in SRD5A3 and follows an autosomal recessive inheritance pattern. The enzyme encoded by SRD5A3, polyprenal reductase, plays a crucial role in synthesizing lipid precursors essential for N-linked glycosylation. Despite insights from functional studies into its enzymatic function, there remains a gap in understanding global changes in patient cells. We sought to identify N-glycoproteomic and proteomic signatures specific to SRD5A3-CDG, potentially aiding in biomarker discovery and advancing our understanding of disease mechanisms. Using tandem mass tag (TMT)-based relative quantitation, we analyzed fibroblasts derived from five patients along with control fibroblasts. N-glycoproteomics analysis by liquid chromatography-tandem mass spectrometry (LC-MS/MS) identified 3,047 glycopeptides with 544 unique N-glycosylation sites from 276 glycoproteins. Of these, 418 glycopeptides showed statistically significant changes with 379 glycopeptides decreased (P < 0.05) in SRD5A3-CDG patient-derived samples. These included high mannose, complex and hybrid glycan-bearing glycopeptides. High mannose glycopeptides from protocadherin Fat 4 and integrin alpha-11 and complex glycopeptides from CD55 were among the most significantly decreased glycopeptides. Proteomics analysis led to the identification of 5,933 proteins, of which 873 proteins showed statistically significant changes. Decreased proteins included cell surface glycoproteins, various mitochondrial protein populations and proteins involved in the N-glycosylation pathway. Lysosomal proteins such as N-acetylglucosamine-6-sulfatase and procathepsin-L also showed reduced levels of phosphorylated mannose-containing glycopeptides. Our findings point to disruptions in glycosylation pathways as well as energy metabolism and lysosomal functions in SRD5A3-CDG, providing clues to improved understanding and management of patients with this disorder.<br /> (© The Author(s) 2024. Published by Oxford University Press. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.)
- Subjects :
- Humans
Glycosylation
Glycoproteins metabolism
Glycoproteins genetics
Tandem Mass Spectrometry
Fibroblasts metabolism
Membrane Proteins metabolism
Membrane Proteins genetics
Membrane Proteins deficiency
Proteomics
3-Oxo-5-alpha-Steroid 4-Dehydrogenase metabolism
3-Oxo-5-alpha-Steroid 4-Dehydrogenase genetics
3-Oxo-5-alpha-Steroid 4-Dehydrogenase deficiency
Congenital Disorders of Glycosylation metabolism
Congenital Disorders of Glycosylation genetics
Congenital Disorders of Glycosylation pathology
Subjects
Details
- Language :
- English
- ISSN :
- 1460-2423
- Volume :
- 34
- Issue :
- 11
- Database :
- MEDLINE
- Journal :
- Glycobiology
- Publication Type :
- Academic Journal
- Accession number :
- 39360848
- Full Text :
- https://doi.org/10.1093/glycob/cwae076