Aim: Potassium channel accessory subunits (Kvβ) play a key role in cardiac electrical activity through ion channel modulation. In this study, we hypothesize that Kvβ2 regulates skeletal muscle growth and fibre phenotype via protein‐protein interactions. Methods: Kvβ2 knockout mouse model was used for morphometric, immunohistochemical and biochemical analysis to evaluate the role of Kvβ2 in skeletal muscle physiology. Results: Deletion of Kvβ2 gene in mice (Kvβ2 knockout, KO) leads to significant decrease in body weight along with skeletal muscle size. Key hindlimb muscles such as biceps, soleus and gastrocnemius were significantly smaller in size in KO mice compared to that of wild type. Morphometric measurements and histological analysis c...
The overall objective of this research was to investigate the role of mitogen-activated protein kina...
Nerve activity controls fiber size and fiber type in skeletal muscle, but the underlying molecular m...
AbstractVoltage-dependent K+ channels (Kv) are involved in the proliferation of many types of cells,...
Aim: Potassium channel accessory subunits (Kvβ) play a key role in cardiac electrical activity throu...
KCNE3 (MiRP2) forms heteromeric voltage-gated K+ channels with the skeletal muscle-expressed KCNC4 (...
Vullhorst D, Klocke R, Bartsch JW, Jockusch H. Expression of the potassium channel KV3.4 in mouse sk...
AbstractWe report the detailed expression pattern of the voltage-dependent potassium channel KV3.4 (...
The ATP-sensitive K-channels (KATP) are distributed in the tissues coupling metabolism with K ions e...
The transcription factor Nuclear Factor kappa enhancer Binding protein (NF-KB) regulates the express...
Voltage-dependent K+ channels (Kv) are involved in myocyte proliferation and differentiation by trig...
A highly conserved signaling pathway involving insulin-like growth factor 1 (IGF1), and a cascade of...
We investigated on the role of the genes encoding for the ATP-sensitive K+-channel(KATP) subunits(SU...
(1) Background: Cantu syndrome (CS) arises from gain-of-function (GOF) mutations in the ABCC9 and KC...
Cantù syndrome (CS) arises from mutations in ABCC9 and KCNJ8 genes that lead to gain of function (G...
CSNK2 tetrameric holoenzyme is composed of two subunits with catalytic activity (CSNK2A1 and/or CSNK...
The overall objective of this research was to investigate the role of mitogen-activated protein kina...
Nerve activity controls fiber size and fiber type in skeletal muscle, but the underlying molecular m...
AbstractVoltage-dependent K+ channels (Kv) are involved in the proliferation of many types of cells,...
Aim: Potassium channel accessory subunits (Kvβ) play a key role in cardiac electrical activity throu...
KCNE3 (MiRP2) forms heteromeric voltage-gated K+ channels with the skeletal muscle-expressed KCNC4 (...
Vullhorst D, Klocke R, Bartsch JW, Jockusch H. Expression of the potassium channel KV3.4 in mouse sk...
AbstractWe report the detailed expression pattern of the voltage-dependent potassium channel KV3.4 (...
The ATP-sensitive K-channels (KATP) are distributed in the tissues coupling metabolism with K ions e...
The transcription factor Nuclear Factor kappa enhancer Binding protein (NF-KB) regulates the express...
Voltage-dependent K+ channels (Kv) are involved in myocyte proliferation and differentiation by trig...
A highly conserved signaling pathway involving insulin-like growth factor 1 (IGF1), and a cascade of...
We investigated on the role of the genes encoding for the ATP-sensitive K+-channel(KATP) subunits(SU...
(1) Background: Cantu syndrome (CS) arises from gain-of-function (GOF) mutations in the ABCC9 and KC...
Cantù syndrome (CS) arises from mutations in ABCC9 and KCNJ8 genes that lead to gain of function (G...
CSNK2 tetrameric holoenzyme is composed of two subunits with catalytic activity (CSNK2A1 and/or CSNK...
The overall objective of this research was to investigate the role of mitogen-activated protein kina...
Nerve activity controls fiber size and fiber type in skeletal muscle, but the underlying molecular m...
AbstractVoltage-dependent K+ channels (Kv) are involved in the proliferation of many types of cells,...