TY - JOUR
T1 - Genome-Wide Association Study and Identification of a Protective Missense Variant on Lipoprotein(a) Concentration
T2 - Protective Missense Variant on Lipoprotein(a) Concentration-Brief Report
AU - Said, M Abdullah
AU - Yeung, Ming Wai
AU - van de Vegte, Yordi J
AU - Benjamins, Jan Walter
AU - Dullaart, Robin P F
AU - Ruotsalainen, Sanni
AU - Ripatti, Samuli
AU - Natarajan, Pradeep
AU - Juarez-Orozco, Luis Eduardo
AU - Verweij, Niek
AU - van der Harst, P
N1 - Publisher Copyright:
© 2021 American Heart Association, Inc.
PY - 2021/5/5
Y1 - 2021/5/5
N2 - Objective: Lipoprotein(a) (Lp[a]) is associated with coronary artery disease (CAD) but also to LDL (low-density lipoprotein) cholesterol. The genetic architecture of Lp(a) remains incompletely understood, as well as its independence of LDL cholesterol in its association to CAD. We investigated the genetic determinants of Lp(a) concentrations in a large prospective multiethnic cohort. We tested the association for potential causality between genetically determined higher Lp(a) concentrations and CAD using a multivariable Mendelian randomization strategy. Approach and Results: We studied 371 212 participants of the UK Biobank with available Lp(a) and genome-wide genetic data. Genome-wide association analyses confirmed 2 known and identified 37 novel loci (P<5×10-8) associated with Lp(a). Testing these loci as instrumental variables in an independent cohort with 60 801 cases and 123 504 controls, each SD genetically elevated Lp(a) conferred a 1.30 ([95% CI, 1.20-1.41] P=5.53×10-11) higher odds of CAD. Importantly, this association was independent of LDL cholesterol. Genetic fine-mapping in the LPA gene region identified 15 potential causal variants. This included a rare missense variant (rs41267813[A]) associated with lower Lp(a) concentration. We observed a strong interaction between rs41267813 and rs10455872 on Lp(a) concentrations, indicating a protective effect of rs41267813(A). Conclusions: This study supports an LDL cholesterol-independent causal link between Lp(a) and CAD. A rare missense variant in the LPA gene locus appears to be protective in people with the Lp(a) increasing variant of rs10455872. In the search for therapeutic targets of Lp(a), future work should focus on understanding the functional consequences of this missense variant.
AB - Objective: Lipoprotein(a) (Lp[a]) is associated with coronary artery disease (CAD) but also to LDL (low-density lipoprotein) cholesterol. The genetic architecture of Lp(a) remains incompletely understood, as well as its independence of LDL cholesterol in its association to CAD. We investigated the genetic determinants of Lp(a) concentrations in a large prospective multiethnic cohort. We tested the association for potential causality between genetically determined higher Lp(a) concentrations and CAD using a multivariable Mendelian randomization strategy. Approach and Results: We studied 371 212 participants of the UK Biobank with available Lp(a) and genome-wide genetic data. Genome-wide association analyses confirmed 2 known and identified 37 novel loci (P<5×10-8) associated with Lp(a). Testing these loci as instrumental variables in an independent cohort with 60 801 cases and 123 504 controls, each SD genetically elevated Lp(a) conferred a 1.30 ([95% CI, 1.20-1.41] P=5.53×10-11) higher odds of CAD. Importantly, this association was independent of LDL cholesterol. Genetic fine-mapping in the LPA gene region identified 15 potential causal variants. This included a rare missense variant (rs41267813[A]) associated with lower Lp(a) concentration. We observed a strong interaction between rs41267813 and rs10455872 on Lp(a) concentrations, indicating a protective effect of rs41267813(A). Conclusions: This study supports an LDL cholesterol-independent causal link between Lp(a) and CAD. A rare missense variant in the LPA gene locus appears to be protective in people with the Lp(a) increasing variant of rs10455872. In the search for therapeutic targets of Lp(a), future work should focus on understanding the functional consequences of this missense variant.
KW - causality
KW - coronary artery disease
KW - genetics
KW - lipoproteins
KW - polymorphism, single nucleotide
UR - http://www.scopus.com/inward/record.url?scp=85104779322&partnerID=8YFLogxK
U2 - 10.1161/ATVBAHA.120.315300
DO - 10.1161/ATVBAHA.120.315300
M3 - Article
C2 - 33730874
SN - 1079-5642
VL - 41
SP - 1792
EP - 1800
JO - Arteriosclerosis, Thrombosis, and Vascular Biology
JF - Arteriosclerosis, Thrombosis, and Vascular Biology
IS - 5
ER -