A polymorphic 3'UTR element in ATP1B1 regulates alternative polyadenylation and is associated with blood pressure.

Although variants in many genes have previously been shown to be associated with blood pressure (BP) levels, the molecular mechanism underlying these associations are mostly unknown. We identified a multi-allelic T-rich sequence (TRS) in the 3'UTR of ATP1B1 that varies in length and sequence co...

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Main Authors: Megana K Prasad, Kavita Bhalla, Zhen Hua Pan, Jeffrey R O'Connell, Alan B Weder, Aravinda Chakravarti, Bin Tian, Yen-Pei C Chang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3788127?pdf=render
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spelling doaj-23f488bd5fc548dc83d7870bcb9f8f262020-11-25T02:35:08ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01810e7629010.1371/journal.pone.0076290A polymorphic 3'UTR element in ATP1B1 regulates alternative polyadenylation and is associated with blood pressure.Megana K PrasadKavita BhallaZhen Hua PanJeffrey R O'ConnellAlan B WederAravinda ChakravartiBin TianYen-Pei C ChangAlthough variants in many genes have previously been shown to be associated with blood pressure (BP) levels, the molecular mechanism underlying these associations are mostly unknown. We identified a multi-allelic T-rich sequence (TRS) in the 3'UTR of ATP1B1 that varies in length and sequence composition (T22-27 and T12GT 3GT6). The 3'UTR of ATP1B1 contains 2 functional polyadenylation signals and the TRS is downstream of the proximal polyadenylation site (A2). Therefore, we hypothesized that alleles of this TRS might influence ATP1B1 expression by regulating alternative polyadenylation. In vitro, the T12GT 3GT6 allele increases polyadenylation at the A2 polyadenylation site as compared to the T23 allele. Consistent with our hypothesis, the relative abundance of the A2-polyadenylated ATP1B1 mRNA was higher in human kidneys with at least one copy of the T12GT 3GT6 allele than in those lacking this allele. The T12GT 3GT6 allele is also associated with higher systolic BP (beta = 3.3 mmHg, p = 0.014) and diastolic BP (beta = 2.4 mmHg, p = 0.003) in a European-American population. Therefore, we have identified a novel multi-allelic TRS in the 3'UTR of ATP1B1 that is associated with higher BP and may mediate its effect by regulating the polyadenylation of the ATP1B1 mRNA.http://europepmc.org/articles/PMC3788127?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Megana K Prasad
Kavita Bhalla
Zhen Hua Pan
Jeffrey R O'Connell
Alan B Weder
Aravinda Chakravarti
Bin Tian
Yen-Pei C Chang
spellingShingle Megana K Prasad
Kavita Bhalla
Zhen Hua Pan
Jeffrey R O'Connell
Alan B Weder
Aravinda Chakravarti
Bin Tian
Yen-Pei C Chang
A polymorphic 3'UTR element in ATP1B1 regulates alternative polyadenylation and is associated with blood pressure.
PLoS ONE
author_facet Megana K Prasad
Kavita Bhalla
Zhen Hua Pan
Jeffrey R O'Connell
Alan B Weder
Aravinda Chakravarti
Bin Tian
Yen-Pei C Chang
author_sort Megana K Prasad
title A polymorphic 3'UTR element in ATP1B1 regulates alternative polyadenylation and is associated with blood pressure.
title_short A polymorphic 3'UTR element in ATP1B1 regulates alternative polyadenylation and is associated with blood pressure.
title_full A polymorphic 3'UTR element in ATP1B1 regulates alternative polyadenylation and is associated with blood pressure.
title_fullStr A polymorphic 3'UTR element in ATP1B1 regulates alternative polyadenylation and is associated with blood pressure.
title_full_unstemmed A polymorphic 3'UTR element in ATP1B1 regulates alternative polyadenylation and is associated with blood pressure.
title_sort polymorphic 3'utr element in atp1b1 regulates alternative polyadenylation and is associated with blood pressure.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Although variants in many genes have previously been shown to be associated with blood pressure (BP) levels, the molecular mechanism underlying these associations are mostly unknown. We identified a multi-allelic T-rich sequence (TRS) in the 3'UTR of ATP1B1 that varies in length and sequence composition (T22-27 and T12GT 3GT6). The 3'UTR of ATP1B1 contains 2 functional polyadenylation signals and the TRS is downstream of the proximal polyadenylation site (A2). Therefore, we hypothesized that alleles of this TRS might influence ATP1B1 expression by regulating alternative polyadenylation. In vitro, the T12GT 3GT6 allele increases polyadenylation at the A2 polyadenylation site as compared to the T23 allele. Consistent with our hypothesis, the relative abundance of the A2-polyadenylated ATP1B1 mRNA was higher in human kidneys with at least one copy of the T12GT 3GT6 allele than in those lacking this allele. The T12GT 3GT6 allele is also associated with higher systolic BP (beta = 3.3 mmHg, p = 0.014) and diastolic BP (beta = 2.4 mmHg, p = 0.003) in a European-American population. Therefore, we have identified a novel multi-allelic TRS in the 3'UTR of ATP1B1 that is associated with higher BP and may mediate its effect by regulating the polyadenylation of the ATP1B1 mRNA.
url http://europepmc.org/articles/PMC3788127?pdf=render
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