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Chromosome Xq23 is associated with lower atherogenic lipid concentrations and favorable cardiometabolic indices

Authors :
Pradeep Natarajan
Akhil Pampana
Sarah E. Graham
Sanni E. Ruotsalainen
James A. Perry
Paul S. de Vries
Jai G. Broome
James P. Pirruccello
Michael C. Honigberg
Krishna Aragam
Brooke Wolford
Jennifer A. Brody
Lucinda Antonacci-Fulton
Moscati Arden
Stella Aslibekyan
Themistocles L. Assimes
Christie M. Ballantyne
Lawrence F. Bielak
Joshua C. Bis
Brian E. Cade
Ron Do
Harsha Doddapaneni
Leslie S. Emery
Yi-Jen Hung
Marguerite R. Irvin
Alyna T. Khan
Leslie Lange
Jiwon Lee
Rozenn N. Lemaitre
Lisa W. Martin
Ginger Metcalf
May E. Montasser
Jee-Young Moon
Donna Muzny
Jeffrey R. O’Connell
Nicholette D. Palmer
Juan M. Peralta
Patricia A. Peyser
Adrienne M. Stilp
Michael Tsai
Fei Fei Wang
Daniel E. Weeks
Lisa R. Yanek
James G. Wilson
Goncalo Abecasis
Donna K. Arnett
Lewis C. Becker
John Blangero
Eric Boerwinkle
Donald W. Bowden
Yi-Cheng Chang
Yii-Der I. Chen
Won Jung Choi
Adolfo Correa
Joanne E. Curran
Mark J. Daly
Susan K. Dutcher
Patrick T. Ellinor
Myriam Fornage
Barry I. Freedman
Stacey Gabriel
Soren Germer
Richard A. Gibbs
Jiang He
Kristian Hveem
Gail P. Jarvik
Robert C. Kaplan
Sharon L. R. Kardia
Eimear Kenny
Ryan W. Kim
Charles Kooperberg
Cathy C. Laurie
Seonwook Lee
Don M. Lloyd-Jones
Ruth J. F. Loos
Steven A. Lubitz
Rasika A. Mathias
Karine A. Viaud Martinez
Stephen T. McGarvey
Braxton D. Mitchell
Deborah A. Nickerson
Kari E. North
Aarno Palotie
Cheol Joo Park
Bruce M. Psaty
D. C. Rao
Susan Redline
Alexander P. Reiner
Daekwan Seo
Jeong-Sun Seo
Albert V. Smith
Russell P. Tracy
Ramachandran S. Vasan
Sekar Kathiresan
L. Adrienne Cupples
Jerome I. Rotter
Alanna C. Morrison
Stephen S. Rich
Samuli Ripatti
Cristen Willer
NHLBI Trans-Omics for Precision Medicine (TOPMed) Consortium
FinnGen
Gina M. Peloso
Institute for Molecular Medicine Finland
Samuli Olli Ripatti / Principal Investigator
Complex Disease Genetics
Centre of Excellence in Complex Disease Genetics
Research Programs Unit
Aarno Palotie / Principal Investigator
Genomics of Neurological and Neuropsychiatric Disorders
Department of Public Health
Biostatistics Helsinki
Department of Clinical Chemistry and Hematology
Doctoral Programme in Social Sciences
HYKS erva
Päijät-Häme Welfare Consortium
Department of Medicine
HUS Inflammation Center
Clinicum
HUS Heart and Lung Center
Marja-Riitta Taskinen Research Group
Tiinamaija Tuomi Research Group
HUS Abdominal Center
Department of Oncology
Heikki Joensuu / Principal Investigator
HUS Comprehensive Cancer Center
Department of Medical and Clinical Genetics
Lauri Antti Aaltonen / Principal Investigator
HUS Head and Neck Center
Silmäklinikka
Department of Dermatology, Allergology and Venereology
Department of Food and Nutrition
Medicum
Data Science Genetic Epidemiology Lab
HUSLAB
Department of Mathematics and Statistics
University Management
Biosciences
Pregnancy and Genes
HUS Gynecology and Obstetrics
Source :
Nature Communications, Nature Communications, Vol 12, Iss 1, Pp 1-14 (2021)
Publication Year :
2020

Abstract

Autosomal genetic analyses of blood lipids have yielded key insights for coronary heart disease (CHD). However, X chromosome genetic variation is understudied for blood lipids in large sample sizes. We now analyze genetic and blood lipid data in a high-coverage whole X chromosome sequencing study of 65,322 multi-ancestry participants and perform replication among 456,893 European participants. Common alleles on chromosome Xq23 are strongly associated with reduced total cholesterol, LDL cholesterol, and triglycerides (min P = 8.5 × 10−72), with similar effects for males and females. Chromosome Xq23 lipid-lowering alleles are associated with reduced odds for CHD among 42,545 cases and 591,247 controls (P = 1.7 × 10−4), and reduced odds for diabetes mellitus type 2 among 54,095 cases and 573,885 controls (P = 1.4 × 10−5). Although we observe an association with increased BMI, waist-to-hip ratio adjusted for BMI is reduced, bioimpedance analyses indicate increased gluteofemoral fat, and abdominal MRI analyses indicate reduced visceral adiposity. Co-localization analyses strongly correlate increased CHRDL1 gene expression, particularly in adipose tissue, with reduced concentrations of blood lipids.<br />The influence of X chromosome genetic variation on blood lipids and coronary heart disease (CHD) is not well understood. Here, the authors analyse X chromosome sequencing data across 65,322 multi-ancestry individuals, identifying associations of the Xq23 locus with lipid changes and reduced risk of CHD and diabetes mellitus.

Details

ISSN :
20411723
Volume :
12
Issue :
1
Database :
OpenAIRE
Journal :
Nature communications
Accession number :
edsair.doi.dedup.....c9f5d93ee105f4a0e18899e311053c6c