rotenone

rotenone is a lipid of Polyketides (PK) class. Rotenone is associated with abnormalities such as Parkinson Disease, MYOPATHY, DISTAL, WITH ANTERIOR TIBIAL ONSET, Neurodegenerative Disorders, Septicemia and Respiratory Failure. The involved functions are known as Phosphorylation, Process, Cell Death, proteasome activity and Apoptosis. Rotenone often locates in Protoplasm, Presynaptic Terminals, Neurites, NADH dehydrogenase complex and Mitochondria. The associated genes with rotenone are DNAJB9 gene, EIF2S3 gene, Candidate Disease Gene, G-substrate and ERN1 gene. The related lipids are Lipopolysaccharides, Membrane Lipids, Phosphatidylserines, Fatty Acids and Cardiolipins. The related experimental models are Knock-out, Mouse Model, Disease model and Rodent Model.

References related to genes published in J. Neurosci.


PMIDJournalPublished DateAuthorTitle
9852565J. Neurosci.1998Castilho RF et al.Mitochondrial control of acute glutamate excitotoxicity in cultured cerebellar granule cells.
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11826108J. Neurosci.2002Gao HM et al.Distinct role for microglia in rotenone-induced degeneration of dopaminergic neurons.
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15574738J. Neurosci.2004Hongpaisan J et al.Strong calcium entry activates mitochondrial superoxide generation, upregulating kinase signaling in hippocampal neurons.
15673665J. Neurosci.2005Allen NJ et al.A preferential role for glycolysis in preventing the anoxic depolarization of rat hippocampal area CA1 pyramidal cells.
16641227J. Neurosci.2006Hsuan SL et al.Basic fibroblast growth factor protects against rotenone-induced dopaminergic cell death through activation of extracellular signal-regulated kinases 1/2 and phosphatidylinositol-3 kinase pathways.
16624952J. Neurosci.2006Jiang Q et al.Activation of group III metabotropic glutamate receptors attenuates rotenone toxicity on dopaminergic neurons through a microtubule-dependent mechanism.
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18685029J. Neurosci.2008Costa C et al.Electrophysiology and pharmacology of striatal neuronal dysfunction induced by mitochondrial complex I inhibition.
18716221J. Neurosci.2008Hayashi Y et al.Reverse of age-dependent memory impairment and mitochondrial DNA damage in microglia by an overexpression of human mitochondrial transcription factor a in mice.