Through their ability to modulate synaptic transmission, glial cells are key regulators of neuronal circuit formation and activity. Kidins220/ARMS (kinase-D interacting substrate of 220 kDa/ankyrin repeat-rich membrane spanning) is one of the key effectors of the neurotrophin pathways in neurons where it is required for differentiation, survival, and plasticity. However, its role in glial cells remains largely unknown. Here, we show that ablation of Kidins220 in primary cultured astrocytes induced defects in calcium (Ca2+) signaling that were linked to altered store-operated Ca2+ entry and strong overexpression of the transient receptor potential channel TRPV4. Moreover, Kidins220−/− astrocytes were more sensitive to genotoxic stress. We al...
Abstract: Following brain injury astrocytes change into a reactive state, proliferate and grow into ...
In the central nervous system, astrocytes form an intimately connected network with neurons, and the...
KEY WORDS glia; synaptogenesis; development; primary neuronal culture ABSTRACT Astrocytes influence ...
6Through their ability to modulate synaptic transmission, glial cells are key regulators of neuronal...
Astroglial cells are key to maintain nervous system homeostasis. Neurotrophins are known for their p...
2The correct functioning of the nervous system depends on the exquisitely fine control of neuronal e...
5noAstroglial cells are key to maintain nervous system homeostasis. Neurotrophins are known for thei...
Signaling downstream of receptor tyrosine kinases controls cell differentiation and survival. How si...
An increasing body of evidence suggests that several membrane receptors – in addition to activating ...
Astrocytes are found throughout the brain where they make extensive contacts with neurons and synaps...
11Kinase D interacting substrate of 220 kDa (Kidins220), also known as ankyrin repeat-rich membrane ...
In this work, I studied the in vivo functions of Kidins220 (Kinase D-interacting substrate of 220kD...
Kidins220 (Kinase D interacting substrate of 220 kDa)/ARMS (Ankyrin Repeat-rich Membrane Spanning) i...
Dendrites are the primary sites on neurons for receiving and integrating inputs from their presynapt...
The mechanistic complexes of kinase D-interacting substrate of 220 kDa/ankyrin repeat-rich membrane ...
Abstract: Following brain injury astrocytes change into a reactive state, proliferate and grow into ...
In the central nervous system, astrocytes form an intimately connected network with neurons, and the...
KEY WORDS glia; synaptogenesis; development; primary neuronal culture ABSTRACT Astrocytes influence ...
6Through their ability to modulate synaptic transmission, glial cells are key regulators of neuronal...
Astroglial cells are key to maintain nervous system homeostasis. Neurotrophins are known for their p...
2The correct functioning of the nervous system depends on the exquisitely fine control of neuronal e...
5noAstroglial cells are key to maintain nervous system homeostasis. Neurotrophins are known for thei...
Signaling downstream of receptor tyrosine kinases controls cell differentiation and survival. How si...
An increasing body of evidence suggests that several membrane receptors – in addition to activating ...
Astrocytes are found throughout the brain where they make extensive contacts with neurons and synaps...
11Kinase D interacting substrate of 220 kDa (Kidins220), also known as ankyrin repeat-rich membrane ...
In this work, I studied the in vivo functions of Kidins220 (Kinase D-interacting substrate of 220kD...
Kidins220 (Kinase D interacting substrate of 220 kDa)/ARMS (Ankyrin Repeat-rich Membrane Spanning) i...
Dendrites are the primary sites on neurons for receiving and integrating inputs from their presynapt...
The mechanistic complexes of kinase D-interacting substrate of 220 kDa/ankyrin repeat-rich membrane ...
Abstract: Following brain injury astrocytes change into a reactive state, proliferate and grow into ...
In the central nervous system, astrocytes form an intimately connected network with neurons, and the...
KEY WORDS glia; synaptogenesis; development; primary neuronal culture ABSTRACT Astrocytes influence ...