Bobba 2015 Apoptosis: Difference between revisions
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entire time frame of apoptosis, from the early to the late | entire time frame of apoptosis, from the early to the late | ||
phase, which mimics the development of AD. | phase, which mimics the development of AD. | ||
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{{Labeling | {{Labeling | ||
|area=Respiration, Patients | |area=Respiration, Patients | ||
|diseases=Alzheimer's, Cancer | |||
|injuries=Cell death | |||
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Latest revision as of 13:51, 27 March 2018
Bobba A, Amadoro G, La Piana G, Calissano P, Atlante A (2015) Glycolytic enzyme upregulation and numbness of mitochondrial activity characterize the early phase of apoptosis in cerebellar granule cells. Apoptosis 20:10-28. |
Bobba A, Amadoro G, La Piana G, Calissano P, Atlante A (2015) Apoptosis
Abstract: Alzheimerβs disease (AD) and cancer proceed via one or more common molecular mechanisms: a metabolic shift from oxidative phosphorylation to glycolysisβ corresponding to the activation of the Warburg effectβ occurs in both diseases. The findings reported in this paper demonstrate that, in the early phase of apoptosis, glucose metabolism is enhanced, i.e. key proteins which internalize and metabolize glucoseβglucose transporter, hexokinase and phosphofructokinaseβare up-regulated, in concomitance with a parallel decrease in oxygen consumption by mitochondria and increase of L-lactate accumulation. Reversal of the glycolytic phenotype occurs in the presence of dichloroacetate, inhibitor of the pyruvate dehydrogenase kinase enzyme, which speeds up apoptosis of cerebellar granule cells, reawakening mitochondria and then modulating glycolytic enzymes. Loss of the adaptive advantage afforded by aerobic glycolysis, which occurs in the late phase of apoptosis, exacerbates the pathological processes underlying neurodegeneration, leading inevitably the cell to death. In conclusion, the data propose that both aerobic, i.e. Warburg effect, essentially due to the protective numbness of mitochondria, and anaerobic glycolysis, rather due to the mitochondrial impairment, characterize the entire time frame of apoptosis, from the early to the late phase, which mimics the development of AD.
β’ O2k-Network Lab: IT Bari Atlante A
Labels: MiParea: Respiration, Patients
Pathology: Alzheimer's, Cancer
Stress:Cell death
Organism: Human