Genetic and functional evidence links a missense variant in B4GALT1 to lower LDL and fibrinogen

Increased blood levels of low-density lipoprotein cholesterol (LDL-C) and fibrinogen are independent risk factors for cardiovascular disease. We identified associations between an Amish-enriched missense variant (p.Asn352Ser) in a functional domain of beta-1,4-galactosyltransferase 1 ( ) and 13.9 mi...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2021-12, Vol.374 (6572), p.1221-1227
Hauptverfasser: Montasser, May E, Van Hout, Cristopher V, Miloscio, Lawrence, Howard, Alicia D, Rosenberg, Avraham, Callaway, Myrasol, Shen, Biao, Li, Ning, Locke, Adam E, Verweij, Niek, De, Tanima, Ferreira, Manuel A, Lotta, Luca A, Baras, Aris, Daly, Thomas J, Hartford, Suzanne A, Lin, Wei, Mao, Yuan, Ye, Bin, White, Derek, Gong, Guochun, Perry, James A, Ryan, Kathleen A, Fang, Qing, Tzoneva, Gannie, Pefanis, Evangelos, Hunt, Charleen, Tang, Yajun, Lee, Lynn, Sztalryd-Woodle, Carole, Mitchell, Braxton D, Healy, Matthew, Streeten, Elizabeth A, Taylor, Simeon I, O'Connell, Jeffrey R, Economides, Aris N, Della Gatta, Giusy, Shuldiner, Alan R
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Sprache:eng
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Zusammenfassung:Increased blood levels of low-density lipoprotein cholesterol (LDL-C) and fibrinogen are independent risk factors for cardiovascular disease. We identified associations between an Amish-enriched missense variant (p.Asn352Ser) in a functional domain of beta-1,4-galactosyltransferase 1 ( ) and 13.9 milligrams per deciliter lower LDL-C ( = 4.1 × 10 ) and 29 milligrams per deciliter lower plasma fibrinogen ( = 1.3 × 10 ). gene–based analysis in 544,955 subjects showed an association with decreased coronary artery disease (odds ratio = 0.64, = 0.006). The mutant protein had 50% lower galactosyltransferase activity compared with the wild-type protein. N-linked glycan profiling of human serum found serine 352 allele to be associated with decreased galactosylation and sialylation of apolipoprotein B100, fibrinogen, immunoglobulin G, and transferrin. Ser knock-in mice showed decreases in LDL-C and fibrinogen. Our findings suggest that targeted modulation of protein galactosylation may represent a therapeutic approach to decreasing cardiovascular disease.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.abe0348