The neuroprotective effect of human uncoupling protein 2 (hUCP2) requires cAMP-dependent protein kinase in a toxin model of Parkinson's disease

التفاصيل البيبلوغرافية
العنوان: The neuroprotective effect of human uncoupling protein 2 (hUCP2) requires cAMP-dependent protein kinase in a toxin model of Parkinson's disease
المؤلفون: Ran Der Hwang, Lyle Wiemerslage, Christopher J. LaBreck, Yih Woei C Fridell, Kavitha Kannan, Xiongwei Zhu, Xinglong Wang, Munzareen Khan, Daewoo Lee
المصدر: Neurobiology of Disease, Vol 69, Iss, Pp 180-191 (2014)
بيانات النشر: Elsevier, 2014.
سنة النشر: 2014
مصطلحات موضوعية: Parkinson's disease, Cell Survival, Intracellular Space, Substantia nigra, Biology, Mitochondrion, Eye, Neuroprotection, Mitochondrial Dynamics, Ion Channels, lcsh:RC321-571, Animals, Genetically Modified, Mitochondrial Proteins, chemistry.chemical_compound, Parkinsonian Disorders, GTP-Binding Proteins, Rotenone, medicine, Cyclic AMP, Animals, Humans, Uncoupling Protein 2, Protein kinase A, lcsh:Neurosciences. Biological psychiatry. Neuropsychiatry, Cells, Cultured, Dopaminergic Neurons, medicine.disease, Cyclic AMP-Dependent Protein Kinases, Cell biology, Mitochondria, Cytoskeletal Proteins, Phenotype, Neurology, mitochondrial fusion, chemistry, Drosophila, Female, Neuroscience, Intracellular
الوصف: Parkinson's disease (PD), caused by selective loss of dopaminergic (DA) neurons in the substantia nigra, is the most common movement disorder with no cure or effective treatment. Exposure to the mitochondrial complex I inhibitor rotenone recapitulates pathological hallmarks of PD in rodents and selective loss of DA neurons in Drosophila. However, mechanisms underlying rotenone toxicity are not completely resolved. We previously reported a neuroprotective effect of human uncoupling protein 2 (hUCP2) against rotenone toxicity in adult fly DA neurons. In the current study, we show that increased mitochondrial fusion is protective from rotenone toxicity whereas increased fission sensitizes the neurons to rotenone-induced cell loss in vivo. In primary DA neurons, rotenone-induced mitochondrial fragmentation and lethality is attenuated as the result of hucp2 expression. To test the idea that the neuroprotective mechanism of hUCP2 involves modulation of mitochondrial dynamics, we detect preserved mitochondrial network, mobility and fusion events in hucp2 expressing DA neurons exposed to rotenone. hucp2 expression also increases intracellular cAMP levels. Thus, we hypothesize that cAMP-dependent protein kinase (PKA) might be an effector that mediates hUCP2-associated neuroprotection against rotenone. Indeed, PKA inhibitors block preserved mitochondrial integrity, movement and cell survival in hucp2 expressing DA neurons exposed to rotenone. Taken together, we present strong evidence identifying a hUCP2-PKA axis that controls mitochondrial dynamics and survival in DA neurons exposed to rotenone implicating a novel therapeutic strategy in modifying the progression of PD pathogenesis.
اللغة: English
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::64907851d526d4a5c80c7f256d22d041Test
http://www.sciencedirect.com/science/article/pii/S0969996114001508Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....64907851d526d4a5c80c7f256d22d041
قاعدة البيانات: OpenAIRE