The canonical atrial myocyte (AM) is characterized by sparse transverse tubule (TT) invaginations and slow intracellular Ca2+ propagation but exhibits rapid contractile activation that is susceptible to loss of function during hypertrophic remodeling. Here, we have identified a membrane structure and Ca2+-signaling complex that may enhance the speed of atrial contraction independently of phospholamban regulation. This axial couplon was observed in human and mouse atria and is composed of voluminous axial tubules (ATs) with extensive junctions to the sarcoplasmic reticulum (SR) that include ryanodine receptor 2 (RyR2) clusters. In mouse AM, AT structures triggered Ca2+ release from the SR approximately 2 times faster at the AM center than at...
Transverse and axial tubules (TATS) are an essential ingredient of the excitation-contraction machin...
Spontaneous Ca2+-release events (SCaEs) from the sarcoplasmic reticulum play crucial roles in the in...
We examined the regulation of calcium signalling in atrial cardiomyocytes during excitation-contract...
The canonical atrial myocyte (AM) is characterized by sparse transverse tubule (TT) invaginations an...
The canonical atrial myocyte (AM) is characterized by sparse transverse tubule (TT) invaginations an...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Transverse-axial tubules (TATs) are commonly assumed to be sparse or absent in atrial myocytes from ...
Transverse and axial tubules (TATS) are an essential ingredient of the excitation-contraction machin...
Transverse and axial tubules (TATS) are an essential ingredient of the excitation-contraction machin...
Spontaneous Ca2+-release events (SCaEs) from the sarcoplasmic reticulum play crucial roles in the in...
We examined the regulation of calcium signalling in atrial cardiomyocytes during excitation-contract...
The canonical atrial myocyte (AM) is characterized by sparse transverse tubule (TT) invaginations an...
The canonical atrial myocyte (AM) is characterized by sparse transverse tubule (TT) invaginations an...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Rationale: Recently, abundant axial tubule (AT) membrane structures were identified deep inside atri...
Transverse-axial tubules (TATs) are commonly assumed to be sparse or absent in atrial myocytes from ...
Transverse and axial tubules (TATS) are an essential ingredient of the excitation-contraction machin...
Transverse and axial tubules (TATS) are an essential ingredient of the excitation-contraction machin...
Spontaneous Ca2+-release events (SCaEs) from the sarcoplasmic reticulum play crucial roles in the in...
We examined the regulation of calcium signalling in atrial cardiomyocytes during excitation-contract...