During nerve development, Schwann cells (SCs) build multilayered myelin sheaths around axons to accelerate nerve conduction. The mechanistic target of rapamycin complex 1 (mTORC1) downstream of PI3K/AKT signaling lately emerged as a central anabolic regulator of myelination. Using mutant mice with sustained mTORC1 hyperactivity in developing SCs we recently uncovered that mTORC1 impedes developmental myelination by promoting proliferation of immature SCs while antagonizing SC differentiation. In contrast, mTORC1 stimulates myelin production, rather than SC proliferation, in already differentiated SCs. Importantly, these diametrical mTORC1 functions were unmasked under settings of greatly suppressed AKT signaling. Here we demonstrate, inter ...
Disruption of myelination during development has been implicated in a range of neurodevelopmental di...
Tomacula’ and myelin outfoldings are striking neuropathological features of a diverse group of inhe...
Myelinating cells surround axons to accelerate the propagation of action potentials, to support axon...
Proper peripheral myelination depends upon the balance between Schwann cell proliferation and differ...
Myelin formation during peripheral nervous system (PNS) development, and reformation after injury an...
Myelin abnormalities are increasingly being recognized as an important component of a number of neur...
SummaryMyelin formation during peripheral nervous system (PNS) development, and reformation after in...
Myelin formation during peripheral nervous system (PNS) development, and reformation after injury an...
Myelin formation during peripheral nervous system (PNS) development, and reformation after injury an...
The mammalian target of rapamycin (mTOR) pathway integrates multiple signals and regulates crucial c...
Myelin abnormalities are increasingly being recognized as an important component of a number of neur...
Mutations in human tuberous sclerosis complex (TSC) genes TSC1 and TSC2 are the leading causes of de...
Disruption of myelination during development has been implicated in a range of neurodevelopmental di...
Schwann cells (SCs) are endowed with a remarkable plasticity. When peripheral nerves are injured, SC...
The signaling pathways that regulate myelination in the PNS remain poorly understood. Phosphatidylin...
Disruption of myelination during development has been implicated in a range of neurodevelopmental di...
Tomacula’ and myelin outfoldings are striking neuropathological features of a diverse group of inhe...
Myelinating cells surround axons to accelerate the propagation of action potentials, to support axon...
Proper peripheral myelination depends upon the balance between Schwann cell proliferation and differ...
Myelin formation during peripheral nervous system (PNS) development, and reformation after injury an...
Myelin abnormalities are increasingly being recognized as an important component of a number of neur...
SummaryMyelin formation during peripheral nervous system (PNS) development, and reformation after in...
Myelin formation during peripheral nervous system (PNS) development, and reformation after injury an...
Myelin formation during peripheral nervous system (PNS) development, and reformation after injury an...
The mammalian target of rapamycin (mTOR) pathway integrates multiple signals and regulates crucial c...
Myelin abnormalities are increasingly being recognized as an important component of a number of neur...
Mutations in human tuberous sclerosis complex (TSC) genes TSC1 and TSC2 are the leading causes of de...
Disruption of myelination during development has been implicated in a range of neurodevelopmental di...
Schwann cells (SCs) are endowed with a remarkable plasticity. When peripheral nerves are injured, SC...
The signaling pathways that regulate myelination in the PNS remain poorly understood. Phosphatidylin...
Disruption of myelination during development has been implicated in a range of neurodevelopmental di...
Tomacula’ and myelin outfoldings are striking neuropathological features of a diverse group of inhe...
Myelinating cells surround axons to accelerate the propagation of action potentials, to support axon...