4.8 Article

GOSPEL: A Neuroprotective Protein that Binds to GAPDH upon S-Nitrosylation

期刊

NEURON
卷 63, 期 1, 页码 81-91

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CELL PRESS
DOI: 10.1016/j.neuron.2009.05.024

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  1. United States Public Health [MH-084018, MH-069853, DA-00266, DA-00074]
  2. Stanley, National Alliance for Research in Schizophrenia and Affective Disorders
  3. Core Huntington's Disease Initiative
  4. S-R Foundations

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We recently reported a cell death cascade whereby cellular stressors activate nitric oxide formation leading to S-nitrosylation of GAPDH that binds to Siah and translocates to the nucleus. The nuclear GAPDH/Siah complex augments p300/CBP-associated acetylation of nuclear proteins, including p53, which mediate cell death. We report a 52 kDa cytosolic protein, GOSPEL, which physiologically binds GAPDH, in competition with Siah, retaining GAPDH in the cytosol and preventing its nuclear translocation. GOSPEL is neuroprotective, as its overexpression prevents NMDA-glutamate excitotoxicity while its depletion enhances death in primary neuron cultures. S-nitrosylation of GOSPEL at cysteine 47 enhances GAPDH-GOSPEL binding and the neuroprotective actions of GOSPEL. In intact mice, virally delivered GOSPEL selectively diminishes NMDA neurotoxicity. Thus, GOSPEL may physiologically regulate the viability of neurons and other cells.

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