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Defining the genetic control of human blood plasma N-glycome using genome-wide association study

Hum Mol Genet. 2019-06-01; 
Sodbo Zh Sharapov, Yakov A Tsepilov, Lucija Klaric, Massimo Mangino, Gaurav Thareja, Alexandra S Shadrina, Mirna Simurina, Concetta Dagostino, Julia Dmitrieva, Marija Vilaj, Frano Vuckovic, Tamara Pavic, Jerko Stambuk, Irena Trbojevic-Akmacic, Jasminka Kristic, Jelena Simunovic, Ana Momcilovic, Harry Campbell, Margaret Doherty, Malcolm G Dunlop, Susan M Farrington, Maja Pucic-Bakovic, Christian Gieger, Massimo Allegri, Edouard Louis, Michel Georges, Karsten Suhre, Tim Spector, Frances M K Williams, Gordan Lauc, Yurii S Aulchenko
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摘要

Glycosylation is a common post-translational modification of proteins. Glycosylation is associated with a number of human diseases. Defining genetic factors altering glycosylation may provide a basis for novel approaches to diagnostic and pharmaceutical applications. Here we report a genome-wide association study of the human blood plasma N-glycome composition in up to 3811 people measured by Ultra Performance Liquid Chromatography (UPLC) technology. Starting with the 36 original traits measured by UPLC, we computed an additional 77 derived traits leading to a total of 113 glycan traits. We studied associations between these traits and genetic polymorphisms located on human autosomes. We discovered and replicat... More

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