NHE Isoform Switching and KChIP2 Upregulation in Aging Porcine Atria
Average rating
Cast your vote
You can rate an item by clicking the amount of stars they wish to award to this item.
When enough users have cast their vote on this item, the average rating will also be shown.
Star rating
Your vote was cast
Thank you for your feedback
Thank you for your feedback
Author
Kant, RituHu, Zhaoyang
Malhotra, Jaideep K.
Krogh-Madsen, Trine
Christini, David J.
Heerdt, Paul M.
Abbott, Geoffrey W.
Journal title
PLoS ONEDate Published
2013-12-23Publication Volume
8Publication Issue
12Publication Begin page
e82951
Metadata
Show full item recordAbstract
Aging increases the risk of cardiac pathologies including atrial fibrillation and can alter myocardial responsiveness to therapeutic agents. Here, seeking molecular correlates of myocardial aging processes, we performed global "whole transcript" analysis of 25,388 genes using 572,667 probes to compare the left atrial (LA) transcriptomes of young adult (9 months old) versus elderly (10 years old) female swine. NHE2 (>9-fold) and KChIP2 (3.8-fold) exhibited the highest aging-related expression increases. Real-time qPCR recapitulated these findings and indicated a 50% decrease in LA NHE1, a twofold increase in right atrial KChIP2, but no significant changes for these transcripts in either ventricle. Notably, even in young adult pigs, NHE2 transcript was detectable and enriched in the atria over the ventricles. NHE1, the recognized cardiac isoform of the sodium hydrogen exchanger, has proven a compelling but clinically disappointing therapeutic target with respect to reperfusion arrhythmias. Our data challenge the dogma that NHE1 is alone in the myocardium and suggest that NHE2 could negatively impact the pharmacological responsiveness of atrial tissue to NHE1-specific inhibitors. KChIP2 is a cytosolic β subunit essential for generation of I to. The increased KChIP2 expression we observed with aging substantially shortened in silico atrial myocyte action potential duration, a predisposing factor in atrial fibrillation. Consistent with this, 4/5 elderly swine sustained pacing-induced AF≥15 s after cessation of stimulation, compared to 0/3 young swine. Our findings uncover potential molecular bases for increased arrhythmogenicity and reduced pharmacologic efficacy in the aging atrium, in a large animal model of human cardiac physiology.Citation
Kant R, Hu Z, Malhotra JK, Krogh-Madsen T, Christini DJ, Heerdt PM, Abbott GW. NHE isoform switching and KChIP2 upregulation in aging porcine atria. PLoS One. 2013 Dec 23;8(12):e82951. doi: 10.1371/journal.pone.0082951. PMID: 24376615; PMCID: PMC3871617.DOI
10.1371/journal.pone.0082951ae974a485f413a2113503eed53cd6c53
10.1371/journal.pone.0082951
Scopus Count
Collections
Except where otherwise noted, this item's license is described as http://creativecommons.org/licenses/by/4.0/
Related articles
- Chamber-specific transcriptional responses in atrial fibrillation.
- Authors: Lipovsky CE, Jimenez J, Guo Q, Li G, Yin T, Hicks SC, Bhatnagar S, Takahashi K, Zhang DM, Brumback BD, Goldsztejn U, Nadadur RD, Perez-Cervantez C, Moskowitz IP, Liu S, Zhang B, Rentschler SL
- Issue date: 2020 Sep 17
- Functional genomic study on atrial fibrillation using cDNA microarray and two-dimensional protein electrophoresis techniques and identification of the myosin regulatory light chain isoform reprogramming in atrial fibrillation.
- Authors: Lai LP, Lin JL, Lin CS, Yeh HM, Tsay YG, Lee CF, Lee HH, Chang ZF, Hwang JJ, Su MJ, Tseng YZ, Huang SK
- Issue date: 2004 Feb
- [Atrial myocytes KChIP2 mRNA expression in rheumatic heart disease patients with atrial fibrillation].
- Authors: Tan XQ, Yang Y, Liu ZF, Bai ZR, Zhou W, Pei J, Chen GL, Zeng XR
- Issue date: 2009 Jun
- Effects of irbesartan on gene expression revealed by transcriptome analysis of left atrial tissue in a porcine model of acute rapid pacing in vivo.
- Authors: Chilukoti RK, Mostertz J, Bukowska A, Aderkast C, Felix SB, Busch M, Völker U, Goette A, Wolke C, Homuth G, Lendeckel U
- Issue date: 2013 Oct 3
- Genetic Ablation of TASK-1 (Tandem of P Domains in a Weak Inward Rectifying K(+) Channel-Related Acid-Sensitive K(+) Channel-1) (K(2P)3.1) K(+) Channels Suppresses Atrial Fibrillation and Prevents Electrical Remodeling.
- Authors: Schmidt C, Wiedmann F, Beyersdorf C, Zhao Z, El-Battrawy I, Lan H, Szabo G, Li X, Lang S, Korkmaz-Icöz S, Rapti K, Jungmann A, Ratte A, Müller OJ, Karck M, Seemann G, Akin I, Borggrefe M, Zhou XB, Katus HA, Thomas D
- Issue date: 2019 Sep