Retinoic Acid‐Mediated Enhancement of the Cholinergic/Neuronal Nitric Oxide Synthase Phenotype of the Medial Septal SN56 Clone
- 6 June 2000
- journal article
- research article
- Published by Wiley in Journal of Neurochemistry
- Vol. 74 (6) , 2412-2424
- https://doi.org/10.1046/j.1471-4159.2000.0742412.x
Abstract
It is unclear what mechanisms lead to the degeneration of basal forebrain cholinergic neurons in Alzheimer’s or other human brain diseases. Some brain cholinergic neurons express neuronal nitric oxide (NO) synthase (nNOS), which produces a free radical that has been implicated in some forms of neurodegeneration. We investigated nNOS expression and NO toxicity in SN56 cells, a clonal cholinergic model derived from the medial septum of the mouse basal forebrain. We show here that, in addition to expressing choline acetyltransferase (ChAT), SN56 cells express nNOS. Treatment of SN56 cells with retinoic acid (RA; 1 μM) for 48 h increased ChAT mRNA (+126%), protein (+88%), and activity (+215%) and increased nNOS mRNA (+98%), protein (+400%), and activity (+15%). After RA treatment, SN56 cells became vulnerable to NO excess generated with S-nitro-N-acetyl-DL-penicillamine (SNAP) and exhibited increased nuclear DNA fragmentation that was blocked with a caspase-3 inhibitor. Treatment with dexamethasone, which largely blocked the RA-mediated increase in nNOS expression, or inhibition of nNOS activity with methylthiocitrulline strongly potentiated the apoptotic response to SNAP in RA-treated SN56 cells. Caspase-3 activity was reduced when SNAP was incubated with cells or cell lysates, suggesting that NO can directly inhibit the protease. Thus, whereas RA treatment converts SN56 cells to a proapoptotic state sensitive to NO excess, endogenously produced NO appears to be anti-apoptotic, possibly by tonically inhibiting caspase-3.Keywords
This publication has 68 references indexed in Scilit:
- Nitric Oxide Induction of Neuronal Endonuclease Activity in Programmed Cell DeathExperimental Cell Research, 1999
- Peroxynitrite: A Biologically Significant OxidantGeneral Pharmacology: The Vascular System, 1998
- Nitric Oxide Reversibly Inhibits Seven Members of the Caspase Family via S-NitrosylationBiochemical and Biophysical Research Communications, 1997
- Inhibition of Caspase-3 by S-Nitrosation and Oxidation Caused by Nitric OxideBiochemical and Biophysical Research Communications, 1997
- Use of capillary electrophoresis with laser‐induced fluorescence detection to assess messenger ribonucleic acid molecules amplified by the polymerase chain reaction: Applications in the cloning of cellsElectrophoresis, 1997
- Effects of ICE-like protease and calpain inhibitors on neuronal apoptosisNeuroReport, 1996
- Mitochondria and programmed cell death: back to the futureFEBS Letters, 1996
- Oxidative Stress in Neurodegenerative DiseasesAnnual Review of Pharmacology and Toxicology, 1996
- All‐trans‐ and 9‐cis‐Retinoic Acid Enhance the Cholinergic Properties of a Murine Septal Cell Line: Evidence that the Effects Are Mediated by Activation of Retinoic Acid Receptor‐αJournal of Neurochemistry, 1995
- The pontomesencephalotegmental cholinergic system does not degenerate in Alzheimer's diseaseNeuroscience Letters, 1989