CDG and immune response: From bedside to bench and back
- 16 May 2019
- journal article
- conference paper
- Published by Wiley in Journal of Inherited Metabolic Disease
- Vol. 43 (1), 90-124
- https://doi.org/10.1002/jimd.12126
Abstract
Glycosylation is an essential biological process that adds structural and functional diversity to cells and molecules, participating in physiological processes such as immunity. The immune response is driven and modulated by protein‐attached glycans that mediate cell‐cell interactions, pathogen recognition and cell activation. Therefore, abnormal glycosylation can be associated with deranged immune responses. Within human diseases presenting immunological defects are Congenital Disorders of Glycosylation (CDG), a family of around 130 rare and complex genetic diseases. In this review, we have identified 23 CDG with immunological involvement, characterised by an increased propensity to – often life‐threatening – infection. Inflammatory and autoimmune complications were found in 7 CDG types. CDG natural history(ies) and the mechanisms behind the immunological anomalies are still poorly understood. However, in some cases, alterations in pathogen recognition and intracellular signalling (e.g. TGF‐β1, NFAT and NF‐κB) have been suggested. Targeted therapies to restore immune defects are only available for PGM3‐CDG and SLC35C1‐CDG. Fostering research on glycoimmunology may elucidate the involved pathophysiological mechanisms and open new therapeutic avenues, thus improving CDG patients' quality of life.Keywords
Funding Information
- Fundação para a Ciência e a Tecnologia (SFRH/BD/138647/2018, SFRH/BD/124326/2016, PD/BD/52472/2014)
This publication has 259 references indexed in Scilit:
- ZIP8 Regulates Host Defense through Zinc-Mediated Inhibition of NF-κBPublished by Elsevier ,2013
- Bone Dysplasia as a Key Feature in Three Patients with a Novel Congenital Disorder of Glycosylation (CDG) Type II Due to a Deep Intronic Splice Mutation in TMEM165Published by Springer Nature ,2012
- TMEM165 Deficiency Causes a Congenital Disorder of GlycosylationAmerican Journal of Human Genetics, 2012
- Homozygosity Mapping and Whole-Exome Sequencing to Detect SLC45A2 and G6PC3 Mutations in a Single Patient with Oculocutaneous Albinism and NeutropeniaJournal of Investigative Dermatology, 2011
- Scraping fibrosis: Expressway to the core of fibrosisNature Medicine, 2011
- Further delineation of the phenotype of severe congenital neutropenia type 4 due to mutations in G6PC3European Journal of Human Genetics, 2010
- High frequency of COH1 intragenic deletions and duplications detected by MLPA in patients with Cohen syndromeEuropean Journal of Human Genetics, 2010
- Determination of glycosylation sites and site-specific heterogeneity in glycoproteinsPublished by Elsevier ,2009
- A Syndrome with Congenital Neutropenia and Mutations inG6PC3New England Journal of Medicine, 2009
- Requirement for O-linked N-acetylglucosaminyltransferase in lymphocytes activationThe EMBO Journal, 2007