Axon growth inhibitory CNS matrix proteins, such as tenascin-R (TN-R), have been supposed to contribute to the poor regenerative capacity of adult mammalian CNS. With regard to TN-R function in low vertebrates capable of CNS regeneration, questions of particular interest concern the (co)evolution of ligand-receptor pairs and cellular response mechanisms associated with axon growth inhibition and oligodendrocyte differentiation. We address here these questions in a series of comparative in vivo and in vitro analyses using TN-R proteins purified from different vertebrates (from fish to human). Our studies provide strong evidence that unlike TN-R of higher vertebrates, fish TN-R proteins are not repellent for fish and less repellent for mammal...
In contrast to the situation in mammals and birds, neurons in the central nervous system (CNS) of fi...
<div><p>Tenascins are extracellular matrix glycoproteins that act both as integrin ligands and as mo...
International audienceFasciculation and defasciculation of axons are major morphogenetic events in t...
Axon growth inhibitory CNS matrix proteins, such as tenascin-R (TN-R), have been supposed to contrib...
In contrast to fish, mammals are unable to regenerate lesioned fiber tracts in the central nervous s...
The Nogo-66 receptor NgR has been implicated in the mediation of inhibitory effects of central nervo...
Tenascin-C plays important roles in immunity. Toll-like receptor 4, integrin α9β1 and chemokines hav...
The integrin family is involved in various biological functions, including cell proliferation, diffe...
In vitro and in vivo studies on the role of tenascins have shown that the two paradigmatic glycoprot...
The extracellular matrix molecule tenascin-R (TN-R) and the proteoglycans of the lectican family sho...
AbstractThis paper identifies a neuronal receptor for tenascin-C (tenascin/cytotactin), an extracell...
Unlike mammals, fish are able to regenerate axons in their central nervous system. This difference h...
The mammalian central nervous system (CNS) lacks the regenerative capacity to regrow axons upon inju...
Segments from adult fish and rat retinae were explanted on myelin-marker expressing oligodendrocytes...
Tenascins are extracellular matrix glycoproteins that act both as integrin ligands and as modifiers ...
In contrast to the situation in mammals and birds, neurons in the central nervous system (CNS) of fi...
<div><p>Tenascins are extracellular matrix glycoproteins that act both as integrin ligands and as mo...
International audienceFasciculation and defasciculation of axons are major morphogenetic events in t...
Axon growth inhibitory CNS matrix proteins, such as tenascin-R (TN-R), have been supposed to contrib...
In contrast to fish, mammals are unable to regenerate lesioned fiber tracts in the central nervous s...
The Nogo-66 receptor NgR has been implicated in the mediation of inhibitory effects of central nervo...
Tenascin-C plays important roles in immunity. Toll-like receptor 4, integrin α9β1 and chemokines hav...
The integrin family is involved in various biological functions, including cell proliferation, diffe...
In vitro and in vivo studies on the role of tenascins have shown that the two paradigmatic glycoprot...
The extracellular matrix molecule tenascin-R (TN-R) and the proteoglycans of the lectican family sho...
AbstractThis paper identifies a neuronal receptor for tenascin-C (tenascin/cytotactin), an extracell...
Unlike mammals, fish are able to regenerate axons in their central nervous system. This difference h...
The mammalian central nervous system (CNS) lacks the regenerative capacity to regrow axons upon inju...
Segments from adult fish and rat retinae were explanted on myelin-marker expressing oligodendrocytes...
Tenascins are extracellular matrix glycoproteins that act both as integrin ligands and as modifiers ...
In contrast to the situation in mammals and birds, neurons in the central nervous system (CNS) of fi...
<div><p>Tenascins are extracellular matrix glycoproteins that act both as integrin ligands and as mo...
International audienceFasciculation and defasciculation of axons are major morphogenetic events in t...