SummaryMyelin-associated inhibitory factors (MAIFs) are inhibitors of CNS axonal regeneration following injury. The Nogo receptor complex, composed of the Nogo-66 receptor 1 (NgR1), neurotrophin p75 receptor (p75), and LINGO-1, represses axon regeneration upon binding to these myelin components. The limited expression of p75 to certain types of neurons and its temporal expression during development prompted speculation that other receptors are involved in the NgR1 complex. Here, we show that an orphan receptor in the TNF family called TAJ, broadly expressed in postnatal and adult neurons, binds to NgR1 and can replace p75 in the p75/NgR1/LINGO-1 complex to activate RhoA in the presence of myelin inhibitors. In vitro exogenously added TAJ re...
AbstractMyelin inhibitors of axonal regeneration, like Nogo and MAG, block regrowth after injury to ...
Myelin is a major obstacle for regenerating nerve fibers of the adult mammalian central nervous syst...
AbstractThree different myelin proteins, Nogo, MAG, and OMgp, inhibit regenerating axons after CNS i...
SummaryMyelin-associated inhibitory factors (MAIFs) are inhibitors of CNS axonal regeneration follow...
SummaryA major obstacle for successful axon regeneration in the adult central nervous system (CNS) a...
Adult mammalian central nervous system (CNS) axons have a limited regrowth capacity following injury...
Axon regeneration in the injured adult CNS is reportedly inhibited by myelin-derived inhibitory mole...
Axon regeneration in the injured adult CNS is reportedly inhibited by myelin-derived inhibitory mole...
Adult mammalian central nervous system (CNS) axons have very limited capacity of regrowth after inju...
Background: Regeneration of injured axons in adult mammalian central nervous system (CNS) is not spo...
Myelin-associated inhibition of axonal regrowth after injury is considered one important factor that...
CNS myelin contains axon outgrowth inhibitors, such as Nogo, that restrict regenerative growth after...
Myelin-associated glycoprotein (MAG) is a minor constituent of nervous system myelin, selectively ex...
[eng] The adult central nervous system (CNS) has a very little capability to regrow its connections ...
As neuronal development enters its final stages, axon growth becomes restricted. This lack of regene...
AbstractMyelin inhibitors of axonal regeneration, like Nogo and MAG, block regrowth after injury to ...
Myelin is a major obstacle for regenerating nerve fibers of the adult mammalian central nervous syst...
AbstractThree different myelin proteins, Nogo, MAG, and OMgp, inhibit regenerating axons after CNS i...
SummaryMyelin-associated inhibitory factors (MAIFs) are inhibitors of CNS axonal regeneration follow...
SummaryA major obstacle for successful axon regeneration in the adult central nervous system (CNS) a...
Adult mammalian central nervous system (CNS) axons have a limited regrowth capacity following injury...
Axon regeneration in the injured adult CNS is reportedly inhibited by myelin-derived inhibitory mole...
Axon regeneration in the injured adult CNS is reportedly inhibited by myelin-derived inhibitory mole...
Adult mammalian central nervous system (CNS) axons have very limited capacity of regrowth after inju...
Background: Regeneration of injured axons in adult mammalian central nervous system (CNS) is not spo...
Myelin-associated inhibition of axonal regrowth after injury is considered one important factor that...
CNS myelin contains axon outgrowth inhibitors, such as Nogo, that restrict regenerative growth after...
Myelin-associated glycoprotein (MAG) is a minor constituent of nervous system myelin, selectively ex...
[eng] The adult central nervous system (CNS) has a very little capability to regrow its connections ...
As neuronal development enters its final stages, axon growth becomes restricted. This lack of regene...
AbstractMyelin inhibitors of axonal regeneration, like Nogo and MAG, block regrowth after injury to ...
Myelin is a major obstacle for regenerating nerve fibers of the adult mammalian central nervous syst...
AbstractThree different myelin proteins, Nogo, MAG, and OMgp, inhibit regenerating axons after CNS i...