Literature DB >> 29800275

From lipid locus to drug target through human genomics.

Sander W van der Laan1, Eric L Harshfield2,3, Daiane Hemerich4,5, David Stacey2, Angela M Wood2, Folkert W Asselbergs4,6,7,8.   

Abstract

In the last decade, over 175 genetic loci have robustly been associated to levels of major circulating blood lipids. Most loci are specific to one or two lipids, whereas some (SUGP1, ZPR1, TRIB1, HERPUD1, and FADS1) are associated to all. While exposing the polygenic architecture of circulating lipids and the underpinnings of dyslipidaemia, these genome-wide association studies (GWAS) have provided further evidence of the critical role that lipids play in coronary heart disease (CHD) risk, as indicated by the 2.7-fold enrichment for macrophage gene expression in atherosclerotic plaques and the association of 25 loci (such as PCSK9, APOB, ABCG5-G8, KCNK5, LPL, HMGCR, NPC1L1, CETP, TRIB1, ABO, PMAIP1-MC4R, and LDLR) with CHD. These GWAS also confirmed known and commonly used therapeutic targets, including HMGCR (statins), PCSK9 (antibodies), and NPC1L1 (ezetimibe). As we head into the post-GWAS era, we offer suggestions for how to move forward beyond genetic risk loci, towards refining the biology behind the associations and identifying causal genes and therapeutic targets. Deep phenotyping through lipidomics and metabolomics will refine and increase the resolution to find causal and druggable targets, and studies aimed at demonstrating gene transcriptional and regulatory effects of lipid associated loci will further aid in identifying these targets. Thus, we argue the need for deeply phenotyped, large genetic association studies to reduce costs and failures and increase the efficiency of the drug discovery pipeline. We conjecture that in the next decade a paradigm shift will tip the balance towards a data-driven approach to therapeutic target development and the application of precision medicine where human genomics takes centre stage.

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Year:  2018        PMID: 29800275     DOI: 10.1093/cvr/cvy120

Source DB:  PubMed          Journal:  Cardiovasc Res        ISSN: 0008-6363            Impact factor:   10.787


  7 in total

1.  Bivariate Genome-Wide Association Scan Identifies 6 Novel Loci Associated With Lipid Levels and Coronary Artery Disease.

Authors:  Katherine M Siewert; Benjamin F Voight
Journal:  Circ Genom Precis Med       Date:  2018-12

2.  Differential regulation of mRNAs and lncRNAs related to lipid metabolism in Duolang and Small Tail Han sheep.

Authors:  Tianyi Liu; Hui Feng; Salsabeel Yousuf; Lingli Xie; Xiangyang Miao
Journal:  Sci Rep       Date:  2022-07-01       Impact factor: 4.996

Review 3.  Translating genetic association of lipid levels for biological and clinical application.

Authors:  Bradley Crone; Amelia M Krause; Whitney E Hornsby; Cristen J Willer; Ida Surakka
Journal:  Cardiovasc Drugs Ther       Date:  2021-02-19       Impact factor: 3.947

4.  Systematic review of the evidence on the cost-effectiveness of pharmacogenomics-guided treatment for cardiovascular diseases.

Authors:  Ye Zhu; Kristi M Swanson; Ricardo L Rojas; Zhen Wang; Jennifer L St Sauver; Sue L Visscher; Larry J Prokop; Suzette J Bielinski; Liewei Wang; Richard Weinshilboum; Bijan J Borah
Journal:  Genet Med       Date:  2019-10-08       Impact factor: 8.822

5.  An integrative multiomic network model links lipid metabolism to glucose regulation in coronary artery disease.

Authors:  Ariella T Cohain; William T Barrington; Daniel M Jordan; Johan L M Bjorkegren; Eric E Schadt; Noam D Beckmann; Carmen A Argmann; Sander M Houten; Alexander W Charney; Raili Ermel; Katyayani Sukhavasi; Oscar Franzen; Simon Koplev; Carl Whatling; Gillian M Belbin; Jialiang Yang; Ke Hao; Eimear E Kenny; Zhidong Tu; Jun Zhu; Li-Ming Gan; Ron Do; Chiara Giannarelli; Jason C Kovacic; Arno Ruusalepp; Aldons J Lusis
Journal:  Nat Commun       Date:  2021-01-22       Impact factor: 14.919

6.  Negative Modulation of Macroautophagy by Stabilized HERPUD1 is Counteracted by an Increased ER-Lysosomal Network With Impact in Drug-Induced Stress Cell Survival.

Authors:  Gabriela Vargas; Omar Cortés; Eloisa Arias-Muñoz; Sergio Hernández; Cristobal Cerda-Troncoso; Laura Hernández; Alexis E González; Michael H Tatham; Hianara A Bustamante; Claudio Retamal; Jorge Cancino; Manuel Varas-Godoy; Ronald T Hay; Alejandro Rojas-Fernández; Viviana A Cavieres; Patricia V Burgos
Journal:  Front Cell Dev Biol       Date:  2022-03-02

7.  Functional Crosstalk between PCSK9 Internalization and Pro-Inflammatory Activation in Human Macrophages: Role of Reactive Oxygen Species Release.

Authors:  Rafael I Jaén; Adrián Povo-Retana; César Rosales-Mendoza; Patricia Capillas-Herrero; Sergio Sánchez-García; Paloma Martín-Sanz; Marina Mojena; Patricia Prieto; Lisardo Boscá
Journal:  Int J Mol Sci       Date:  2022-08-14       Impact factor: 6.208

  7 in total

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