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Targeted disruption of PSD-93 gene reduces platelet-activating factor-induced neurotoxicity in cultured cortical neurons

Authors :
Roger A. Johns
David S. Bredt
Bosheng Zhang
Zichun Hua
Yuan Xiang Tao
Yun Xu
Source :
Experimental neurology. 189(1)
Publication Year :
2004

Abstract

PSD-93, a molecular adaptive protein, binds to and clusters the N -methyl- d -aspartate (NMDA) receptor and assembles a specific set of signaling proteins (for example neuronal nitric oxide synthase, nNOS) around the NMDA receptor at synapses in the central nervous system. This suggests that PSD-93 might mediate many NMDA receptor-dependent physiological and pathophysiological functions. We report here that PSD-93 colocalizes and interacts with the NMDA receptor and neuronal nitric oxide synthase in cultured cortical neurons. Targeted disruption of PSD-93 gene significantly prevented NMDA receptor–nitric oxide signaling-dependent neurotoxicity triggered via platelet-activating factor (PAF) receptor activation. In addition, the deficiency of PSD-93 markedly attenuated platelet-activating factor-induced increase in cyclic guanosine 3′,5′-monophosphate (cGMP) and prevented platelet-activating factor-promoted formation of NMDA receptor–neuronal nitric oxide synthase complex. These findings indicate that PSD-93 is involved in the NMDA receptor–nitric oxide-mediated pathological processing of neuronal damage triggered via platelet-activating factor receptor activation. Since platelet-activating factor is a potent neuronal injury mediator during the development of brain trauma, seizures, and ischemia, the present work suggests that PSD-93 might contribute to molecular mechanisms of neuronal damage in these brain disorders.

Details

ISSN :
00144886
Volume :
189
Issue :
1
Database :
OpenAIRE
Journal :
Experimental neurology
Accession number :
edsair.doi.dedup.....c028c38449237253f880342357682f68