Literature DB >> 25294127

Cellular origin and regulation of D- and L-serine in in vitro and in vivo models of cerebral ischemia.

Takato Abe1, Masataka Suzuki2, Jumpei Sasabe2, Shinichi Takahashi1, Miyuki Unekawa1, Kyoko Mashima1, Takuya Iizumi1, Kenji Hamase3, Ryuichi Konno4, Sadakazu Aiso2, Norihiro Suzuki1.   

Abstract

D-Serine is known to be essential for the activation of the N-methyl-D-aspartate (NMDA) receptor in the excitation of glutamatergic neurons, which have critical roles in long-term potentiation and memory formation. D-Serine is also thought to be involved in NMDA receptor-mediated neurotoxicity. The deletion of serine racemase (SRR), which synthesizes D-serine from L-serine, was recently reported to improve ischemic damage in mouse middle cerebral artery occlusion model. However, the cell type in which this phenomenon originates and the regulatory mechanism for D-/L-serine remain elusive. The D-/L-serine content in ischemic brain increased until 20 hours after recanalization and then leveled off gradually. The results of in vitro experiments using cultured cells suggested that D-serine is derived from neurons, while L-serine seems to be released from astroglia. Immunohistochemistry studies of brain tissue after cerebral ischemia showed that SRR is expressed in neurons, and 3-phosphoglycerate dehydrogenase (3-PGDH), which synthesizes L-serine from 3-phosphoglycerate, is located in astrocytes, supporting the results of the in vitro experiments. A western blot analysis showed that neither SRR nor 3-PGDH was upregulated after cerebral ischemia. Therefore, the increase in D-/L-serine was not related to an increase in SRR or 3-PGDH, but to an increase in the substrates of SRR and 3-PGDH.

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Year:  2014        PMID: 25294127      PMCID: PMC4269747          DOI: 10.1038/jcbfm.2014.164

Source DB:  PubMed          Journal:  J Cereb Blood Flow Metab        ISSN: 0271-678X            Impact factor:   6.200


  36 in total

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3.  D-serine in glia and neurons derives from 3-phosphoglycerate dehydrogenase.

Authors:  Jeffrey T Ehmsen; Ting Martin Ma; Hagit Sason; Dina Rosenberg; Tadashi Ogo; Shigeki Furuya; Solomon H Snyder; Herman Wolosker
Journal:  J Neurosci       Date:  2013-07-24       Impact factor: 6.167

4.  Neuronal release of D-serine: a physiological pathway controlling extracellular D-serine concentration.

Authors:  Dina Rosenberg; Elena Kartvelishvily; Maria Shleper; Chanda M C Klinker; Michael T Bowser; Herman Wolosker
Journal:  FASEB J       Date:  2010-04-06       Impact factor: 5.191

5.  Serine racemase modulates intracellular D-serine levels through an alpha,beta-elimination activity.

Authors:  Veronika N Foltyn; Inna Bendikov; Joari De Miranda; Rogerio Panizzutti; Elena Dumin; Maria Shleper; Pu Li; Michael D Toney; Elena Kartvelishvily; Herman Wolosker
Journal:  J Biol Chem       Date:  2004-11-09       Impact factor: 5.157

6.  L-serine and glycine serve as major astroglia-derived trophic factors for cerebellar Purkinje neurons.

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Journal:  Proc Natl Acad Sci U S A       Date:  2000-10-10       Impact factor: 11.205

7.  D-serine is the dominant endogenous coagonist for NMDA receptor neurotoxicity in organotypic hippocampal slices.

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8.  Safety and tolerability of the glutamate antagonist CGS 19755 (Selfotel) in patients with acute ischemic stroke. Results of a phase IIa randomized trial.

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9.  Glutamate uptake into astrocytes stimulates aerobic glycolysis: a mechanism coupling neuronal activity to glucose utilization.

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Review 10.  Energy substrates for neurons during neural activity: a critical review of the astrocyte-neuron lactate shuttle hypothesis.

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2.  Nuclear Compartmentalization of Serine Racemase Regulates D-Serine Production: IMPLICATIONS FOR N-METHYL-D-ASPARTATE (NMDA) RECEPTOR ACTIVATION.

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4.  Heterogeneity of D-Serine Distribution in the Human Central Nervous System.

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Review 5.  Neurovascular Unit as a Source of Ischemic Stroke Biomarkers-Limitations of Experimental Studies and Perspectives for Clinical Application.

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6.  Cellular Redox Imbalance and Neurochemical Effect in Cognitive-Deficient Old Rats.

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Review 7.  Metabolic compartmentalization between astroglia and neurons in physiological and pathophysiological conditions of the neurovascular unit.

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Journal:  Neuropathology       Date:  2020-02-09       Impact factor: 1.906

Review 8.  Metabolic Contribution and Cerebral Blood Flow Regulation by Astrocytes in the Neurovascular Unit.

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