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Integrated computational and experimental analysis of the neuroendocrine transcriptome in genetic hypertension identifies novel control points for the cardiometabolic syndrome

Authors :
Georg Ehret
Ryan S. Friese
Geert W. Schmid-Schönbein
Chun Ye
Daniel T. O'Connor
Fangwen Rao
Patricia B. Munroe
Jill Waalen
Eleazar Eskin
Nitish R. Mahapatra
Philip S Napolitan
Andrew J. Schork
Caroline M. Nievergelt
Source :
Circulation. Cardiovascular genetics, vol 5, iss 4, Circulation: Cardiovascular Genetics, Vol. 5, No 4 (2012) pp. 430-40
Publication Year :
2012

Abstract

Background— Essential hypertension, a common complex disease, displays substantial genetic influence. Contemporary methods to dissect the genetic basis of complex diseases such as the genomewide association study are powerful, yet a large gap exists betweens the fraction of population trait variance explained by such associations and total disease heritability. Methods and Results— We developed a novel, integrative method (combining animal models, transcriptomics, bioinformatics, molecular biology, and trait-extreme phenotypes) to identify candidate genes for essential hypertension and the metabolic syndrome. We first undertook transcriptome profiling on adrenal glands from blood pressure extreme mouse strains: the hypertensive BPH (blood pressure high) and hypotensive BPL (blood pressure low). Microarray data clustering revealed a striking pattern of global underexpression of intermediary metabolism transcripts in BPH. The MITRA algorithm identified a conserved motif in the transcriptional regulatory regions of the underexpressed metabolic genes, and we then hypothesized that regulation through this motif contributed to the global underexpression. Luciferase reporter assays demonstrated transcriptional activity of the motif through transcription factors HOXA3, SRY, and YY1. We finally hypothesized that genetic variation at HOXA3 , SRY , and YY1 might predict blood pressure and other metabolic syndrome traits in humans. Tagging variants for each locus were associated with blood pressure in a human population blood pressure extreme sample with the most extensive associations for YY1 tagging single nucleotide polymorphism rs11625658 on systolic blood pressure, diastolic blood pressure, body mass index, and fasting glucose. Meta-analysis extended the YY1 results into 2 additional large population samples with significant effects preserved on diastolic blood pressure, body mass index, and fasting glucose. Conclusions— The results outline an innovative, systematic approach to the genetic pathogenesis of complex cardiovascular disease traits and point to transcription factor YY1 as a potential candidate gene involved in essential hypertension and the cardiometabolic syndrome.

Subjects

Subjects :
Male
systolic blood pressure
Transcription, Genetic
genotype
complementary DNA
Blood Pressure
Cardiovascular
Transcriptome
Mice
0302 clinical medicine
Adrenal Glands/metabolism
Transcriptional Activation/genetics
Aetiology
Oligonucleotide Array Sequence Analysis
ddc:616
transcription factor YY1
0303 health sciences
education.field_of_study
gene expression regulation
luciferase
Transcriptome/genetics
reporter gene
3. Good health
Myocardium/metabolism/pathology
priority journal
complex trait
mouse strain
transcription regulation
Cardiology and Cardiovascular Medicine
Transcriptional Activation
Blood Pressure/genetics
Enhancer Elements
RNA, Messenger/genetics/metabolism
Molecular Sequence Data
human genetics
Single-nucleotide polymorphism
Luciferases/metabolism
Article
Protein Binding/genetics
03 medical and health sciences
Genetic
Genetics
Humans
human
RNA, Messenger
education
mouse
adrenal gland
animal model
Myocardium
diastolic blood pressure
Computational Biology
DNA
Computational Biology/methods
medicine.disease
Promoter Regions, Genetic/genetics
BPH mouse strain
Neurosecretory Systems
Human genetics
glucose blood level
Blood pressure
microarray analysis
Metabolic syndrome
Transcription Factors
Candidate gene
Messenger
Medical Biotechnology
Metabolic Syndrome X/genetics
Cardiorespiratory Medicine and Haematology
030204 cardiovascular system & hematology
Essential hypertension
single nucleotide polymorphism
Adrenal Glands
2.1 Biological and endogenous factors
Luciferases
Promoter Regions, Genetic
Genetics (clinical)
2. Zero hunger
Metabolic Syndrome
screening and diagnosis
Metabolic Syndrome X
Nucleotide Motifs/genetics
Detection
Enhancer Elements, Genetic
essential (genetic) hypertension
Hypertension
Neurosecretory Systems/metabolism
computer analysis
Transcription
Biotechnology
Protein Binding
animal experiment
Population
Biology
metabolic syndrome
Promoter Regions
promoter region
Meta-Analysis as Topic
medicine
Animalia
Animals
controlled study
Transcription Factors/metabolism
Genetic Predisposition to Disease
Obesity
Nucleotide Motifs
protein motif
Metabolic and endocrine
Nutrition
030304 developmental biology
algorithm
nonhuman
Base Sequence
Enhancer Elements, Genetic/genetics
Human Genome
essential hypertension
population genetics
prediction
body mass
4.1 Discovery and preclinical testing of markers and technologies
Cardiovascular System & Hematology
RNA
Hypertension/genetics

Details

ISSN :
19423268 and 1942325X
Volume :
5
Issue :
4
Database :
OpenAIRE
Journal :
Circulation. Cardiovascular genetics
Accession number :
edsair.doi.dedup.....61a4b75057aae80b072762dfe6c86be3