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RTN3 Is a Novel Cold-Induced Protein and Mediates Neuroprotective Effects of RBM3.


ABSTRACT: Cooling and hypothermia are profoundly neuroprotective, mediated, at least in part, by the cold shock protein, RBM3. However, the neuroprotective effector proteins induced by RBM3 and the mechanisms by which mRNAs encoding cold shock proteins escape cooling-induced translational repression are unknown. Here, we show that cooling induces reprogramming of the translatome, including the upregulation of a new cold shock protein, RTN3, a reticulon protein implicated in synapse formation. We report that this has two mechanistic components. Thus, RTN3 both evades cooling-induced translational elongation repression and is also bound by RBM3, which drives the increased expression of RTN3. In mice, knockdown of RTN3 expression eliminated cooling-induced neuroprotection. However, lentivirally mediate

SUBMITTER: Bastide A 

PROVIDER: S-EPMC5344685 | biostudies-literature | 2017 Mar

REPOSITORIES: biostudies-literature

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