PITX2 missense coding variant expression in mice reveals direct function in atrial fibrillation

Atrial fibrillation (AF) is the most common sustained human cardiac arrhythmia and linked to a drastic increase in stroke and heart failure risk. While sequence variations in the PITX2 non-coding region are the strongest genetic signature of AF risk, the direct role of PITX2 in AF remains a topic of debate. Here, we generated a mouse model ( Pitx2 Pro41Ser ) of a human PITX2 coding variant linked to increased AF risk in the Finnish population. The Pitx2 Pro41Ser mice exhibit near-complete penetrance of pacing-induced AF, and transcriptional profiling indicates that Pitx2 Pro41Ser is a loss-of-function mutation. In vivo cleavage under targets and tagmentation (CUT&Tag) reveals that PITX2 acts as a transcriptional repressor in developing left atrial cardiomyocytes independent of DNA methylation. Ectopic Pitx2 expression in postnatal right atrial cardiomyocytes via adeno-associated virus (AAV) delivery or genetic overexpression represses right atrial genes and induces a left atrial transcriptome, revealing unexpected plasticity of postnatal atrial cardiomyocytes. Strikingly, delivery of Pitx2 AAV into Pitx2 Pro41Ser mice rescues AF inducibility uncovering a direct link between PITX2 activity and AF susceptibility.

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Publication Details

Journal
Journal of Clinical Investigation
Published
2026-09-29
DOI
https://doi.org/10.1172/jci207010
Primary Topic
Cancer-related gene regulation
Type
article
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article

PITX2 missense coding variant expression in mice reveals direct function in atrial fibrillation

Li Na, Jeffrey D. Steimle, Vaibhav Deshmukh, Taotao Tan et al.
Journal of Clinical Investigation
Cancer-related gene regulation
article

PITX2 missense coding variant expression in mice reveals direct function in atrial fibrillation

Li Na, Jeffrey D. Steimle, Vaibhav Deshmukh, Taotao Tan, Md. Abul Hassan Samee, James F. Martin, Yue Yuan, Fansen Meng, Shaohai Fang, Christine Rodriguez, Yun Huang
article en

Abstract

Atrial fibrillation (AF) is the most common sustained human cardiac arrhythmia and linked to a drastic increase in stroke and heart failure risk. While sequence variations in the PITX2 non-coding region are the strongest genetic signature of AF risk, the direct role of PITX2 in AF remains a topic of debate. Here, we generated a mouse model ( Pitx2 Pro41Ser ) of a human PITX2 coding variant linked to increased AF risk in the Finnish population. The Pitx2 Pro41Ser mice exhibit near-complete penetrance of pacing-induced AF, and transcriptional profiling indicates that Pitx2 Pro41Ser is a loss-of-function mutation. In vivo cleavage under targets and tagmentation (CUT&Tag) reveals that PITX2 acts as a transcriptional repressor in developing left atrial cardiomyocytes independent of DNA methylation. Ectopic Pitx2 expression in postnatal right atrial cardiomyocytes via adeno-associated virus (AAV) delivery or genetic overexpression represses right atrial genes and induces a left atrial transcriptome, revealing unexpected plasticity of postnatal atrial cardiomyocytes. Strikingly, delivery of Pitx2 AAV into Pitx2 Pro41Ser mice rescues AF inducibility uncovering a direct link between PITX2 activity and AF susceptibility.

Journal of Clinical Investigation
Cincinnati Children's Hospital Medical Center (US), Baylor College of Medicine (US)
Good health and well-being
Openalex Percentile: Top 19%
Cancer-related gene regulation
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PITX2 missense coding variant expression in mice reveals direct function in atrial fibrillation — Li Na, Jeffrey D. Steimle, et al. · Journal of Clinical Investigation (2026) | TGRS Research Map | TGRS