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A functional mechanism for a non-coding variant near AGTR2 associated with risk for preterm birth
by
Wang, Li
, Lynch, Arthur
, Weirauch, Matthew T.
, Zhang, Ge
, Rossi, Robert M.
, Forney, Carmy
, Muglia, Louis J.
, Chen, Xiaoting
, Jacobsson, Bo
, Zhang, Xuzhe
, Kottyan, Leah C.
, Chawla, Mehak
, Miller, Daniel
, Kong, Fansheng
, Chen, Jing
, Runyon, Jilian
in
AGTR2
/ Alleles
/ Analysis
/ Angiotensin
/ Angiotensin II
/ Bioinformatics
/ Biomedicine
/ CCAAT/enhancer-binding protein
/ Computational biology
/ Datasets
/ Endometrium
/ Female
/ Fibroblasts
/ Functional studies
/ Gene expression
/ Gene loci
/ Genetic diversity
/ Genetic Predisposition to Disease
/ Genetic Predisposition to Disease - genetics
/ Genetic variance
/ Genetic variation
/ genetics
/ Genome-wide association studies
/ Genome-Wide Association Study
/ Genomes
/ Gynaecology, Obstetrics and Reproductive Medicine
/ Gynekologi, obstetrik och reproduktionsmedicin
/ Homeobox
/ Humans
/ Infant
/ Infant, Newborn
/ Medicine
/ Medicine & Public Health
/ Newborn
/ Non-coding variant
/ Nucleotides
/ Phosphatase
/ Polymorphism
/ Polymorphism, Single Nucleotide - genetics
/ Premature Birth
/ Premature Birth - genetics
/ Preterm birth
/ Prevention
/ Proteins
/ Public health
/ Research Article
/ Risk
/ Risk factors
/ Single Nucleotide
/ Single nucleotide polymorphisms
/ Single-nucleotide polymorphism
/ Transcription Factors
/ Transcription Factors - genetics
/ Uterus
2023
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A functional mechanism for a non-coding variant near AGTR2 associated with risk for preterm birth
by
Wang, Li
, Lynch, Arthur
, Weirauch, Matthew T.
, Zhang, Ge
, Rossi, Robert M.
, Forney, Carmy
, Muglia, Louis J.
, Chen, Xiaoting
, Jacobsson, Bo
, Zhang, Xuzhe
, Kottyan, Leah C.
, Chawla, Mehak
, Miller, Daniel
, Kong, Fansheng
, Chen, Jing
, Runyon, Jilian
in
AGTR2
/ Alleles
/ Analysis
/ Angiotensin
/ Angiotensin II
/ Bioinformatics
/ Biomedicine
/ CCAAT/enhancer-binding protein
/ Computational biology
/ Datasets
/ Endometrium
/ Female
/ Fibroblasts
/ Functional studies
/ Gene expression
/ Gene loci
/ Genetic diversity
/ Genetic Predisposition to Disease
/ Genetic Predisposition to Disease - genetics
/ Genetic variance
/ Genetic variation
/ genetics
/ Genome-wide association studies
/ Genome-Wide Association Study
/ Genomes
/ Gynaecology, Obstetrics and Reproductive Medicine
/ Gynekologi, obstetrik och reproduktionsmedicin
/ Homeobox
/ Humans
/ Infant
/ Infant, Newborn
/ Medicine
/ Medicine & Public Health
/ Newborn
/ Non-coding variant
/ Nucleotides
/ Phosphatase
/ Polymorphism
/ Polymorphism, Single Nucleotide - genetics
/ Premature Birth
/ Premature Birth - genetics
/ Preterm birth
/ Prevention
/ Proteins
/ Public health
/ Research Article
/ Risk
/ Risk factors
/ Single Nucleotide
/ Single nucleotide polymorphisms
/ Single-nucleotide polymorphism
/ Transcription Factors
/ Transcription Factors - genetics
/ Uterus
2023
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A functional mechanism for a non-coding variant near AGTR2 associated with risk for preterm birth
by
Wang, Li
, Lynch, Arthur
, Weirauch, Matthew T.
, Zhang, Ge
, Rossi, Robert M.
, Forney, Carmy
, Muglia, Louis J.
, Chen, Xiaoting
, Jacobsson, Bo
, Zhang, Xuzhe
, Kottyan, Leah C.
, Chawla, Mehak
, Miller, Daniel
, Kong, Fansheng
, Chen, Jing
, Runyon, Jilian
in
AGTR2
/ Alleles
/ Analysis
/ Angiotensin
/ Angiotensin II
/ Bioinformatics
/ Biomedicine
/ CCAAT/enhancer-binding protein
/ Computational biology
/ Datasets
/ Endometrium
/ Female
/ Fibroblasts
/ Functional studies
/ Gene expression
/ Gene loci
/ Genetic diversity
/ Genetic Predisposition to Disease
/ Genetic Predisposition to Disease - genetics
/ Genetic variance
/ Genetic variation
/ genetics
/ Genome-wide association studies
/ Genome-Wide Association Study
/ Genomes
/ Gynaecology, Obstetrics and Reproductive Medicine
/ Gynekologi, obstetrik och reproduktionsmedicin
/ Homeobox
/ Humans
/ Infant
/ Infant, Newborn
/ Medicine
/ Medicine & Public Health
/ Newborn
/ Non-coding variant
/ Nucleotides
/ Phosphatase
/ Polymorphism
/ Polymorphism, Single Nucleotide - genetics
/ Premature Birth
/ Premature Birth - genetics
/ Preterm birth
/ Prevention
/ Proteins
/ Public health
/ Research Article
/ Risk
/ Risk factors
/ Single Nucleotide
/ Single nucleotide polymorphisms
/ Single-nucleotide polymorphism
/ Transcription Factors
/ Transcription Factors - genetics
/ Uterus
2023
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A functional mechanism for a non-coding variant near AGTR2 associated with risk for preterm birth
Journal Article
A functional mechanism for a non-coding variant near AGTR2 associated with risk for preterm birth
2023
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Overview
Background
Preterm birth (PTB), defined as delivery before 37 gestational weeks, imposes significant public health burdens. A recent maternal genome-wide association study of spontaneous PTB identified a noncoding locus near the angiotensin II receptor type 2 (
AGTR2
) gene. Genotype-Tissue Expression data revealed that alleles associated with decreased
AGTR2
expression in the uterus were linked to an increased risk of PTB and shortened gestational duration. We hypothesized that a causative variant in this locus modifies
AGTR2
expression by altering transcription factor (TF) binding.
Methods
To investigate this hypothesis, we performed bioinformatics analyses and functional characterizations at the implicated locus. Potential causal single nucleotide polymorphisms (SNPs) were prioritized, and allele-dependent binding of TFs was predicted. Reporter assays were employed to assess the enhancer activity of the top PTB-associated non-coding variant, rs7889204, and its impact on TF binding.
Results
Our analyses revealed that rs7889204, a top PTB-associated non-coding genetic variant is one of the strongest eQTLs for the
AGTR2
gene in uterine tissue samples. We observed differential binding of CEBPB (CCAAT enhancer binding protein beta) and HOXA10 (homeobox A10) to the alleles of rs7889204. Reporter assays demonstrated decreased enhancer activity for the rs7889204 risk “C” allele.
Conclusion
Collectively, these results demonstrate that decreased
AGTR2
expression caused by reduced transcription factor binding increases the risk for PTB and suggest that enhancing
AGTR2
activity may be a preventative measure in reducing PTB risk.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
/ Alleles
/ Analysis
/ CCAAT/enhancer-binding protein
/ Datasets
/ Female
/ Genetic Predisposition to Disease
/ Genetic Predisposition to Disease - genetics
/ genetics
/ Genome-wide association studies
/ Genome-Wide Association Study
/ Genomes
/ Gynaecology, Obstetrics and Reproductive Medicine
/ Gynekologi, obstetrik och reproduktionsmedicin
/ Homeobox
/ Humans
/ Infant
/ Medicine
/ Newborn
/ Polymorphism, Single Nucleotide - genetics
/ Proteins
/ Risk
/ Single nucleotide polymorphisms
/ Single-nucleotide polymorphism
/ Transcription Factors - genetics
/ Uterus
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