Unlike mammals, fish are able to regenerate axons in their central nervous system. This difference has been partly attributed to the loss/acquisition of inhibitory proteins during evolution. Nogo-A-the longest isoform of the reticulon4 (rtn4) gene product-is commonly found in mammalian myelin where it acts as a potent inhibitor of axonal regeneration. Interestingly, fish RTN4 isofonns were previously reported to lack the most inhibitory Nogo-A-specific region (NSR). Nevertheless, fish axons collapse on contact with mammalian NSR, suggesting that fish possess a functional Nogo-A receptor but not its ligand. To reconcile these findings, we revisited the early evolution of rtn4. Mining of current genome databases established the unequivocal pr...
Nogo-A is a potent inhibitor of axon regeneration that is expressed by myelin forming oligodendrocyt...
Nitric oxide (NO) is an ancestral key signalling molecule essential for life and has enormous versat...
Fish have colonized nearly all aquatic niches, making them an invaluable resource to understand vert...
Unlike mammals, fish are able to regenerate axons in their central nervous system. This difference h...
In contrast to fish, mammals are unable to regenerate lesioned fiber tracts in the central nervous s...
Myelin-associated axon growth inhibitors such as Nogo-A/RTN4-A impair axon regeneration in the adult...
The Nogo-66 receptor NgR has been implicated in the mediation of inhibitory effects of central nervo...
The mammalian central nervous system (CNS) lacks the regenerative capacity to regrow axons upon inju...
In contrast to mammals, lesioned axons in the zebrafish (ZF) optic nerve regenerate and restore visi...
Reticulon (RTN) genes code for a family of proteins relatively recently described in higher vertebra...
BackgroundIn contrast to mammals, zebrafish successfully regenerate retinal ganglion cell (RGC) axon...
BACKGROUNDAs a consequence of gene/genome duplication, the RTN4/Nogo gene has two counterparts in ze...
This study explored why lesioned retinal ganglion cell (RGC) axons regenerate successfully in the ze...
International audienceThe dorsoventral polarity of the vertebrate embryo is established through inte...
The fish lateral line (LL) is a mechanosensory system closely related to the hearing system of highe...
Nogo-A is a potent inhibitor of axon regeneration that is expressed by myelin forming oligodendrocyt...
Nitric oxide (NO) is an ancestral key signalling molecule essential for life and has enormous versat...
Fish have colonized nearly all aquatic niches, making them an invaluable resource to understand vert...
Unlike mammals, fish are able to regenerate axons in their central nervous system. This difference h...
In contrast to fish, mammals are unable to regenerate lesioned fiber tracts in the central nervous s...
Myelin-associated axon growth inhibitors such as Nogo-A/RTN4-A impair axon regeneration in the adult...
The Nogo-66 receptor NgR has been implicated in the mediation of inhibitory effects of central nervo...
The mammalian central nervous system (CNS) lacks the regenerative capacity to regrow axons upon inju...
In contrast to mammals, lesioned axons in the zebrafish (ZF) optic nerve regenerate and restore visi...
Reticulon (RTN) genes code for a family of proteins relatively recently described in higher vertebra...
BackgroundIn contrast to mammals, zebrafish successfully regenerate retinal ganglion cell (RGC) axon...
BACKGROUNDAs a consequence of gene/genome duplication, the RTN4/Nogo gene has two counterparts in ze...
This study explored why lesioned retinal ganglion cell (RGC) axons regenerate successfully in the ze...
International audienceThe dorsoventral polarity of the vertebrate embryo is established through inte...
The fish lateral line (LL) is a mechanosensory system closely related to the hearing system of highe...
Nogo-A is a potent inhibitor of axon regeneration that is expressed by myelin forming oligodendrocyt...
Nitric oxide (NO) is an ancestral key signalling molecule essential for life and has enormous versat...
Fish have colonized nearly all aquatic niches, making them an invaluable resource to understand vert...