1.Gadd45b Acts as Neuroprotective Effector in Global Ischemia-Induced Neuronal Death
Chang Hoon CHO ; Hyae Ran BYUN ; Teresa JOVER-MENGUAL ; Fabrizio PONTARELLI ; Christopher DEJESUS ; Ah Rhang CHO ; R Suzanne ZUKIN ; Jee Yeon HWANG
International Neurourology Journal 2019;23(Suppl 1):S11-S21
PURPOSE:
Transient global ischemia arising in human due to cardiac arrest causes selective, delayed neuronal death in hippocampal CA1 and cognitive impairment. Growth arrest and DNA-damage-inducible protein 45 beta (Gadd45b) is a wellknown molecule in both DNA damage-related pathogenesis and therapies. Emerging evidence suggests that Gadd45b is an anti-apoptotic factor in nonneuronal cells and is an intrinsic neuroprotective molecule in neurons. However, the mechanism of Gadd45b pathway is not fully examined in neurodegeneration associated with global ischemia.
METHODS:
Rats were subjected to transient global ischemia by the 4-vessel occlusion or sham operation. The animals were sacrificed at 24 hours, 48 hours, and 7 days after ischemia. The hippocampal CA1 was microdissected and processed to examine mRNA and protein level. To assess neuronal death, tissue sections were cut and processed for Fluoro-Jade and Nissl staining.
RESULTS:
Here we show that ischemic insults increase abundance of Gadd45b and brain-derived neurotrophic factor, a known target of Gadd45 mediated demethylation, in selectively-vulnerable hippocampal CA1 neurons. We further show that knockdown of Gadd45b increases abundance of a pro-apoptotic Bcl-2 family member Bax while decreasing the antiapoptotic protein Bcl-2, which together promote neuronal death.
CONCLUSIONS
These findings document a protective role of Gadd45b against neuronal insults associated with global ischemia and identify Gadd45b as a potential therapeutic target for the amelioration of hippocampal neurodegeneration.
2.Effects of Protopanaxatriol-Ginsenoside Metabolites on Rat N-Methyl-D-Aspartic Acid Receptor-Mediated Ion Currents.
Tae Joon SHIN ; Sung Hee HWANG ; Sun Hye CHOI ; Byung Hwan LEE ; Jiyeon KANG ; Hyeon Joong KIM ; R Suzanne ZUKIN ; Hyewhon RHIM ; Seung Yeol NAH
The Korean Journal of Physiology and Pharmacology 2012;16(2):113-118
Ginsenosides are low molecular weight glycosides found in ginseng that exhibit neuroprotective effects through inhibition of N-methyl-D-aspartic acid (NMDA) receptor channel activity. Ginsenosides, like other natural compounds, are metabolized by gastric juices and intestinal microorganisms to produce ginsenoside metabolites. However, little is known about how ginsenoside metabolites regulate NMDA receptor channel activity. In the present study, we investigated the effects of ginsenoside metabolites, such as compound K (CK), protopanaxadiol (PPD), and protopanaxatriol (PPT), on oocytes that heterologously express the rat NMDA receptor. NMDA receptor-mediated ion current (INMDA) was measured using the 2-electrode voltage clamp technique. In oocytes injected with cRNAs encoding NMDA receptor subunits, PPT, but not CK or PPD, reversibly inhibited INMDA in a concentration-dependent manner. The IC50 for PPT on INMDA was 48.1+/-4.6 microM, was non-competitive with NMDA, and was independent of the membrane holding potential. These results demonstrate the possibility that PPT interacts with the NMDA receptor, although not at the NMDA binding site, and that the inhibitory effects of PPT on INMDA could be related to ginseng-mediated neuroprotection.
Animals
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Binding Sites
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Gastric Juice
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Ginsenosides
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Glycosides
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Inhibitory Concentration 50
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Membranes
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Molecular Weight
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N-Methylaspartate
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Neuroprotective Agents
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Oocytes
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Panax
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Rats
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RNA, Complementary
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Sapogenins
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Tuberculin