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The effects of immune protein CD3? development and degeneration of retinal neurons after optic nerve injury.


ABSTRACT: Major histocompatibility complex (MHC) class I molecules and their receptors play fundamental roles in neuronal death during diseases. T-cell receptors (TCR) function as MHCI receptor on T-cells and both MHCI and a key component of TCR, CD3?, are expressed by mouse retinal ganglion cells (RGCs) and displaced amacrine cells. Mutation of these molecules compromises the development of RGCs. We investigated whether CD3? regulates the development and degeneration of amacrine cells after RGC death. Surprisingly, mutation of CD3? not only impairs the proper development of amacrine cells expressing CD3? but also those not expressing CD3?. In contrast to effects of MHCI and its receptor, PirB, on other neurons, mutation of CD3? has no effect on RGC death and starburst amacrine cells degeneration after optic nerve crush. Thus, unlike MHCI and PirB, CD3? regulates the development of RGCs and amacrine cells but not their degeneration after optic nerve crush.

SUBMITTER: He T 

PROVIDER: S-EPMC5404868 | biostudies-literature | 2017

REPOSITORIES: biostudies-literature

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The effects of immune protein CD3ζ development and degeneration of retinal neurons after optic nerve injury.

He Tao T   Mortensen Xavier X   Wang Ping P   Tian Ning N  

PloS one 20170425 4


Major histocompatibility complex (MHC) class I molecules and their receptors play fundamental roles in neuronal death during diseases. T-cell receptors (TCR) function as MHCI receptor on T-cells and both MHCI and a key component of TCR, CD3ζ, are expressed by mouse retinal ganglion cells (RGCs) and displaced amacrine cells. Mutation of these molecules compromises the development of RGCs. We investigated whether CD3ζ regulates the development and degeneration of amacrine cells after RGC death. Su  ...[more]

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