International audienceThe terminal cisternae represent one of the functional domains of the skeletal muscle sarcoplasmic reticulum (SR). They are closely apposed to plasma membrane invaginations, the T-tubules, with which they form structures called triads. In triads, the physical interaction between the T-tubule-anchored voltage-sensing channel DHPR and the SR calcium channel RyR1 is essential because it allows the depolarization-induced calcium release that triggers muscle contraction. This interaction between DHPR and RyR1 is based on the peculiar membrane structures of both T-tubules and SR terminal cisternae. However, little is known about the molecular mechanisms governing the formation of SR terminal cisternae. We have previously sho...
Ca2+ release, which is necessary for muscle contraction, occurs at the j-SR (junctional domain of th...
International audienceDuring the last 20 years, the identification of triadin function in cardiac an...
International audienceTriadin is a multiple proteins family, some isoforms being involved in muscle ...
International audienceThe terminal cisternae represent one of the functional domains of the skeletal...
The terminal cisternae represent one of the functional domains of the skeletal muscle sarcoplasmic r...
Triadin is a protein of the skeletal muscle. Four isoforms have been cloned: Trisk 95, Trisk 51, Tri...
Muscle contraction is achieved when an efficient excitation signal at the plasma membrane triggers i...
Native triadin in skeletal muscle is a glycoprotein linked by disulfide bonds of variable subunit nu...
International audienceWe have cloned two new triadin isoforms from rat skeletal muscle, Trisk 49 and...
La contraction musculaire est provoquée par un relâchement massif de calcium à partir du reticulum s...
AbstractCalcium release during excitation-contraction coupling of skeletal muscle cells is initiated...
The membrane topology of skeletal triadin was investigated using partial constructs in which green f...
International audienceThe 95 kDa triadin (Trisk 95), an integral protein of the sarcoplasmic reticul...
Excitation-contraction coupling in skeletal muscle depends, in part, on a functional interaction bet...
Ca2+ release, which is necessary for muscle contraction, occurs at the j-SR (junctional domain of th...
International audienceDuring the last 20 years, the identification of triadin function in cardiac an...
International audienceTriadin is a multiple proteins family, some isoforms being involved in muscle ...
International audienceThe terminal cisternae represent one of the functional domains of the skeletal...
The terminal cisternae represent one of the functional domains of the skeletal muscle sarcoplasmic r...
Triadin is a protein of the skeletal muscle. Four isoforms have been cloned: Trisk 95, Trisk 51, Tri...
Muscle contraction is achieved when an efficient excitation signal at the plasma membrane triggers i...
Native triadin in skeletal muscle is a glycoprotein linked by disulfide bonds of variable subunit nu...
International audienceWe have cloned two new triadin isoforms from rat skeletal muscle, Trisk 49 and...
La contraction musculaire est provoquée par un relâchement massif de calcium à partir du reticulum s...
AbstractCalcium release during excitation-contraction coupling of skeletal muscle cells is initiated...
The membrane topology of skeletal triadin was investigated using partial constructs in which green f...
International audienceThe 95 kDa triadin (Trisk 95), an integral protein of the sarcoplasmic reticul...
Excitation-contraction coupling in skeletal muscle depends, in part, on a functional interaction bet...
Ca2+ release, which is necessary for muscle contraction, occurs at the j-SR (junctional domain of th...
International audienceDuring the last 20 years, the identification of triadin function in cardiac an...
International audienceTriadin is a multiple proteins family, some isoforms being involved in muscle ...