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Hematopoietic factor erythropoietin fosters neuroprotection through novel signal; transduction cascades

Chong ZZ, Kang JQ, Maiese K2002Journal of Cerebral Blood Flow & MetabolismReview
10.1097/00004647-200205000-00001PubMedFree full text
HematologicalNeurological

Abstract

In addition to promoting the survival, proliferation, and differentiation of immature erythroid cells, erythropoietin and the erythropoietin receptor have recently been shown to modulate cellular signal transduction pathways that extend beyond the erythropoietic function of erythropoietin. In particular, erythropoietin has been linked to the prevention of programmed cell death in neuronal systems. Although this work is intriguing, the underlying molecular mechanisms that serve to mediate neuroprotection by erythropoietin are not well understood. Further analysis illustrates that erythropoietin modulates two distinct components of programmed cell death that involve the degradation of DNA and the externalization of cellular membrane phosphatidylserine residues. Initiation of the cascades that modulate protection by erythropoietin and its receptor may begin with the activation of the Janus tyrosine kinase 2 protein. Subsequent downstream mechanisms appear to lead to the activation of multiple signal transduction pathways that include transcription factor STAT5 (signal transducers and activators of transcription), Bcl-2, protein kinase B, cysteine proteases, mitogen-activated protein kinases, proteintyrosine phosphatases, and nuclear factor-κB. New knowledge of the cellular pathways regulated by erythropoietin in neuronal environments will potentially solidify the development and initiation of therapeutic strategies against nervous system disorders.

Key Biomarkers

Bcl-2ErythropoietinErythropoietin receptorJAK2MAPKNF-κBProtein kinase BSTAT5

Cited By (17)

  • Erythropoietin fosters both intrinsic and extrinsic neuronal protection through modulation of microglia, Akt1, Bad, and caspase‐mediated pathwaysBritish Journal of Pharmacology · 2003
  • Erythropoietin protects CA1 neurons against global cerebral ischemia in rat: potential signaling mechanismsJournal of Neuroscience Research · 2006
  • Akt phosphorylation is required for heat acclimation-induced neuroprotectionJournal of Neurochemistry · 2007
  • Erythropoietin as an antiapoptotic, tissue-protective cytokineCell Death and Differentiation · 2004
  • Hypoxia-induced stroke tolerance in the mouse is mediated by erythropoietinStroke · 2003
  • New avenues of exploration for erythropoietinJAMA · 2005
  • The role of erythropoietin in myocardial protection: potential mechanisms and applicationsExpert Review of Cardiovascular Therapy · 2006

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  • References (3)

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    • Erythropoietin and erythropoietin receptor in human ischemic/hypoxic brainActa Neuropathologica · 2001
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