Sortilin: an unusual suspect in cholesterol metabolism: from GWAS identification to in vivo biochemical analyses, sortilin has been identified as a novel mediator of …

JB Dubé, CT Johansen, RA Hegele - Bioessays, 2011 - Wiley Online Library
JB Dubé, CT Johansen, RA Hegele
Bioessays, 2011Wiley Online Library
The concentration of low‐density lipoprotein (LDL) cholesterol (C) in plasma is a key
determinant of cardiovascular disease risk and human genetic studies have long
endeavoured to elucidate the pathways that regulate LDL metabolism. Massive genome‐
wide association studies (GWASs) of common genetic variation associated with LDL‐C in
the population have implicated SORT1 in LDL metabolism. Using experimental paradigms
and standards appropriate for understanding the mechanisms by which common variants …
Abstract
The concentration of low‐density lipoprotein (LDL) cholesterol (C) in plasma is a key determinant of cardiovascular disease risk and human genetic studies have long endeavoured to elucidate the pathways that regulate LDL metabolism. Massive genome‐wide association studies (GWASs) of common genetic variation associated with LDL‐C in the population have implicated SORT1 in LDL metabolism. Using experimental paradigms and standards appropriate for understanding the mechanisms by which common variants alter phenotypic expression, three recent publications have presented divergent and even contradictory findings. Interestingly, although these reports each linked SORT1 to LDL metabolism, they did not agree on a mechanism to explain the association. Here, we review recent mechanistic studies of SORT1 – the first gene identified by GWAS as a determinant of plasma LDL‐C to be evaluated mechanistically.
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