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GWAS Study

Genetic regulation of post-translational modification of two distinct proteins.

Landini A, Trbojević-Akmačić I, Navarro P et al.

35332118 PubMed ID
GWAS Study Type
2020 Participants
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Chapter I

Publication Details

Comprehensive information about this research publication

Authors

LA
Landini A
TI
Trbojević-Akmačić I
NP
Navarro P
TY
Tsepilov YA
SS
Sharapov SZ
VF
Vučković F
PO
Polašek O
HC
Hayward C
PT
Petrović T
VM
Vilaj M
AY
Aulchenko YS
LG
Lauc G
WJ
Wilson JF
KL
Klarić L
Chapter II

Abstract

Summary of the research findings

Post-translational modifications diversify protein functions and dynamically coordinate their signalling networks, influencing most aspects of cell physiology. Nevertheless, their genetic regulation or influence on complex traits is not fully understood. Here, we compare the genetic regulation of the same PTM of two proteins - glycosylation of transferrin and immunoglobulin G (IgG). By performing genome-wide association analysis of transferrin glycosylation, we identify 10 significantly associated loci, 9 of which were not reported previously. Comparing these with IgG glycosylation-associated genes, we note protein-specific associations with genes encoding glycosylation enzymes (transferrin - MGAT5, ST3GAL4, B3GAT1; IgG - MGAT3, ST6GAL1), as well as shared associations (FUT6, FUT8). Colocalisation analyses of the latter suggest that different causal variants in the FUT genes regulate fucosylation of the two proteins. Glycosylation of these proteins is thus genetically regulated by both shared and protein-specific mechanisms.

2,020 Korculan or Shetland Isles (founder/genetic isolate) individuals

Chapter III

Study Statistics

Key metrics and study information

2020
Total Participants
GWAS
Study Type
No
Replicated
European
Ancestry
U.K., Croatia
Recruitment Country
Chapter IV

Analysis

Comprehensive review of health and genetic findings

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