We have investigated the localization of Nogo, an inhibitory protein acting on regenerating axons in the adult central nervous system, in the embryonic mouse retinofugal pathway during the major period of axon growth into the optic chiasm. In the retina, Nogo protein was localized on the neuroepithelial cells at E12 and at later stages (E13-E17) on radial glial cells. Colocalization studies showed expression of Nogo on vimentin-positive glia in the retina and at the optic nerve head but not on most of the TuJ1- and islet-1-immunoreactive neurons. Only a few immature neurons in the ventricular and peripheral regions of the E13 retina were immunoreactive to Nogo. In the ventral diencephalon, Nogo was expressed on radial glia, most strongly on...
Nogo-A is an important axonal growth inhibitor in the adult and developing CNS. In vitro, Nogo-A has...
In contrast to mammals, lesioned axons in the zebrafish (ZF) optic nerve regenerate and restore visi...
Nogo-A was initially discovered as a myelin-associated growth inhibitory protein limiting axonal reg...
We have investigated the role of Nogo, a protein that inhibits regenerating axons in the adult centr...
Expression of Nogo protein was investigated in the optic pathway of embryonic mice by using isoform-...
Nogo is well established for its inhibitory action on axon regeneration in the adult central nervous...
Nogo-A is highly expressed in oligodendrocytes in the adult central nervous system (CNS). Recently i...
Includes bibliographical references (leaves 62-84).Axon regeneration failure in the adult mammalian ...
A variety of conditions ranging from glaucoma to blunt force trauma lead to optic nerve atrophy. Ide...
Using Nogo antibodies with defined binding specificity, Nogo‐B, but not Nogo‐A, was localized on rad...
Nogo-A, an axonal growth inhibitory protein known to be mostly present in CNS myelin, was upregulate...
Nogo-A is a transmembrane protein originally discovered in myelin, produced by postnatal central ner...
Nogo-A is a potent inhibitor of axon regeneration that is expressed by myelin forming oligodendrocyt...
CNS myelin contains axon outgrowth inhibitors, such as Nogo, that restrict regenerative growth after...
Nogo is a member of the reticulon family. Our understanding of the physiological functions of the No...
Nogo-A is an important axonal growth inhibitor in the adult and developing CNS. In vitro, Nogo-A has...
In contrast to mammals, lesioned axons in the zebrafish (ZF) optic nerve regenerate and restore visi...
Nogo-A was initially discovered as a myelin-associated growth inhibitory protein limiting axonal reg...
We have investigated the role of Nogo, a protein that inhibits regenerating axons in the adult centr...
Expression of Nogo protein was investigated in the optic pathway of embryonic mice by using isoform-...
Nogo is well established for its inhibitory action on axon regeneration in the adult central nervous...
Nogo-A is highly expressed in oligodendrocytes in the adult central nervous system (CNS). Recently i...
Includes bibliographical references (leaves 62-84).Axon regeneration failure in the adult mammalian ...
A variety of conditions ranging from glaucoma to blunt force trauma lead to optic nerve atrophy. Ide...
Using Nogo antibodies with defined binding specificity, Nogo‐B, but not Nogo‐A, was localized on rad...
Nogo-A, an axonal growth inhibitory protein known to be mostly present in CNS myelin, was upregulate...
Nogo-A is a transmembrane protein originally discovered in myelin, produced by postnatal central ner...
Nogo-A is a potent inhibitor of axon regeneration that is expressed by myelin forming oligodendrocyt...
CNS myelin contains axon outgrowth inhibitors, such as Nogo, that restrict regenerative growth after...
Nogo is a member of the reticulon family. Our understanding of the physiological functions of the No...
Nogo-A is an important axonal growth inhibitor in the adult and developing CNS. In vitro, Nogo-A has...
In contrast to mammals, lesioned axons in the zebrafish (ZF) optic nerve regenerate and restore visi...
Nogo-A was initially discovered as a myelin-associated growth inhibitory protein limiting axonal reg...