TY - JOUR
T1 - Connexin30.2 containing gap junction channels decelerate impulse propagation through the atrioventricular node
AU - Kreuzberg, Maria M.
AU - Schrickel, Jah W.
AU - Ghanem, Alexander
AU - Kim, Jung Sun
AU - Degen, Joachim
AU - Janssen-Bienhold, Ulrike
AU - Lewalter, Thorsten
AU - Tiemann, Klaus
AU - Willecke, Klaus
PY - 2006/4/11
Y1 - 2006/4/11
N2 - In the mammalian heart, gap junction channels between electrically coupled cardiomyocytes are necessary for impulse propagation and coordinated contraction of atria and ventricles. Recently, mouse connexin 30.2 (Cx30.2) was shown to be expressed in the cardiac conduction system, predominantly in sinoatrial and atrioventricular (AV) nodes. The corresponding gap junctional channels expressed in HeLa cells exhibit the lowest unitary conductance (9 pS) of all connexin channels. Here we report that Cx30.2 slows down the propagation of excitation through the AV node. Mice expressing a LacZ reporter gene instead of the CxBO.2 coding region (Cx30.2LacZ/LacZ) exhibit a PQ interval that is ≈25% shorter than in WT littermates. By recording atrial, His, and ventricular signals with intracardiac electrodes, we show that this decrease is attributed to significantly accelerated conduction above the His bundle (atrial-His interval: 27.9 ± 5.1 ms in Cx30.2LacZ/LacZ versus 37.1 ± 4.1 ms in Cx30.2+/+ mice), whereas HV conduction is unaltered. Atrial stimulation revealed an elevated AV-nodal conduction capacity and faster ventricular response rates during induced episodes of atrial fibrillation in Cx30.2LacZ/LacZ mice. Our results show that CxBO.2 contributes to the slowdown of impulse propagation in the AV node and additionally limits the maximum number of beats conducted from atria to ventricles. Thus, it is likely to be involved in coordination of atrial and ventricular contraction and to fulfill a protective role toward pathophysiological states such as atrial tachyarrhythmias (e.g., atrial fibrillation) by preventing rapid conduction to the ventricles potentially associated with hemodynamic deterioration.
AB - In the mammalian heart, gap junction channels between electrically coupled cardiomyocytes are necessary for impulse propagation and coordinated contraction of atria and ventricles. Recently, mouse connexin 30.2 (Cx30.2) was shown to be expressed in the cardiac conduction system, predominantly in sinoatrial and atrioventricular (AV) nodes. The corresponding gap junctional channels expressed in HeLa cells exhibit the lowest unitary conductance (9 pS) of all connexin channels. Here we report that Cx30.2 slows down the propagation of excitation through the AV node. Mice expressing a LacZ reporter gene instead of the CxBO.2 coding region (Cx30.2LacZ/LacZ) exhibit a PQ interval that is ≈25% shorter than in WT littermates. By recording atrial, His, and ventricular signals with intracardiac electrodes, we show that this decrease is attributed to significantly accelerated conduction above the His bundle (atrial-His interval: 27.9 ± 5.1 ms in Cx30.2LacZ/LacZ versus 37.1 ± 4.1 ms in Cx30.2+/+ mice), whereas HV conduction is unaltered. Atrial stimulation revealed an elevated AV-nodal conduction capacity and faster ventricular response rates during induced episodes of atrial fibrillation in Cx30.2LacZ/LacZ mice. Our results show that CxBO.2 contributes to the slowdown of impulse propagation in the AV node and additionally limits the maximum number of beats conducted from atria to ventricles. Thus, it is likely to be involved in coordination of atrial and ventricular contraction and to fulfill a protective role toward pathophysiological states such as atrial tachyarrhythmias (e.g., atrial fibrillation) by preventing rapid conduction to the ventricles potentially associated with hemodynamic deterioration.
KW - Atrial fibrillation
KW - Cardiac connexins
KW - Conductive myocardium
KW - Coordinated cardiac contraction
UR - https://www.scopus.com/pages/publications/33645806085
U2 - 10.1073/pnas.0508512103
DO - 10.1073/pnas.0508512103
M3 - Article
C2 - 16571663
AN - SCOPUS:33645806085
SN - 0027-8424
VL - 103
SP - 5959
EP - 5964
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 15
ER -