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Excitotoxic glutamate levels cause the secretion of resident endoplasmic reticulum proteins.
Dossat, Amanda M; Trychta, Kathleen A; Glotfelty, Elliot J; Hinkle, Joshua J; Fortuno, Lowella V; Gore, Lana N; Richie, Christopher T; Harvey, Brandon K.
Afiliación
  • Dossat AM; Intramural Research Program, National Institute on Drug Abuse, Baltimore, Maryland, USA.
  • Trychta KA; Intramural Research Program, National Institute on Drug Abuse, Baltimore, Maryland, USA.
  • Glotfelty EJ; Intramural Research Program, National Institute on Drug Abuse, Baltimore, Maryland, USA.
  • Hinkle JJ; Intramural Research Program, National Institute on Drug Abuse, Baltimore, Maryland, USA.
  • Fortuno LV; Intramural Research Program, National Institute on Drug Abuse, Baltimore, Maryland, USA.
  • Gore LN; Intramural Research Program, National Institute on Drug Abuse, Baltimore, Maryland, USA.
  • Richie CT; Intramural Research Program, National Institute on Drug Abuse, Baltimore, Maryland, USA.
  • Harvey BK; Intramural Research Program, National Institute on Drug Abuse, Baltimore, Maryland, USA.
J Neurochem ; 2024 Mar 15.
Article en En | MEDLINE | ID: mdl-38491746
ABSTRACT
Dysregulation of synaptic glutamate levels can lead to excitotoxicity such as that observed in stroke, traumatic brain injury, and epilepsy. The role of increased intracellular calcium (Ca2+ ) in the development of excitotoxicity is well established. However, less is known regarding the impact of glutamate on endoplasmic reticulum (ER)-Ca2+ -mediated processes such as proteostasis. To investigate this, we expressed a secreted ER Ca2+ modulated protein (SERCaMP) in primary cortical neurons to monitor exodosis, a phenomenon whereby ER calcium depletion causes the secretion of ER-resident proteins that perform essential functions to the ER and the cell. Activation of glutamatergic receptors (GluRs) led to an increase in SERCaMP secretion indicating that normally ER-resident proteins are being secreted in a manner consistent with ER Ca2+ depletion. Antagonism of ER Ca2+ channels attenuated the effects of glutamate and GluR agonists on SERCaMP release. We also demonstrate that endogenous proteins containing an ER retention/retrieval sequence (ERS) are secreted in response to GluR activation supporting that neuronal activation by glutamate promotes ER exodosis. Ectopic expression of KDEL receptors attenuated the secretion of ERS-containing proteins caused by GluR agonists. Taken together, our data indicate that excessive GluR activation causes disruption of neuronal proteostasis by triggering the secretion of ER-resident proteins through ER Ca2+ depletion and describes a new facet of excitotoxicity.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: J Neurochem Año: 2024 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: J Neurochem Año: 2024 Tipo del documento: Article País de afiliación: Estados Unidos