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Action of amyloid beta-protein on protein kinase C activity
A Chauhan1, V P Chauhan, H Brockerhoff
1New York State Institute for Basic Research in Developmental Disabilities, Staten Island 10314.
Abstract:
Amyloid beta-protein (A beta), the major protein of cerebrovascular and plaque amyloid in Alzheimer disease, is considered a primary factor in the pathology of this disease. The effect of synthetic A beta (1-40) on the activity of protein kinase C (PKC) was studied with histones for a substrate in a mixed micellar assay, and with calmodulin-depleted soluble brain proteins in a liposomal system. We report here that A beta affects PKC activity in a biphasic manner. An initial stimulation of PKC was noted at low concentrations of A beta (less than 2.5 microM); while PKC-inhibition was observed in a concentration-dependent manner at higher concentrations of A beta. The in vitro phosphorylation of 20, 47, and 87 kDa brain proteins (known PKC substrates) was significantly reduced by 60 microM A beta. The role of 20 kDa in memory storage, of 87 kDa in neurotransmission and neurosecretory processes, and of 47 kDa in long-term potentiation or memory is well recognized, and A beta is known to have both neurotrophic and neurotoxic effects. Since PKC plays an important role in neuronal function, it is suggested that dual modulation of PKC by A beta may be linked to its neurotrophic and neurotoxic effects. We propose that at low concentrations A beta, by stimulating PKC, may contribute to neurites generation; and at higher concentrations A beta, by inhibiting PKC activity, might lead first to memory impairment, and then to neuronal loss.
Insights
Amyloid beta-protein (A beta) has a dual effect on protein kinase C (PKC) activity. Low A beta concentrations stimulate PKC, potentially aiding neuron growth, while high concentrations inhibit PKC, possibly causing memory loss and neuronal damage in Alzheimer disease.
Area of Science:
- Neuroscience
- Biochemistry
- Alzheimer Disease Research
Background:
- Amyloid beta-protein (A beta) is a key factor in Alzheimer disease pathology.
- Protein kinase C (PKC) is crucial for neuronal function.
Purpose of the Study:
- To investigate the effect of synthetic A beta (1-40) on protein kinase C (PKC) activity.
- To explore the relationship between A beta's modulation of PKC and its neurotrophic/neurotoxic effects.
Main Methods:
- Utilized a mixed micellar assay with histones as substrate.
- Employed a liposomal system with calmodulin-depleted soluble brain proteins.
- Assessed in vitro phosphorylation of known PKC substrates (20, 47, 87 kDa proteins).
Main Results:
- A beta exhibited biphasic effects on PKC activity: stimulation at low concentrations (<2.5 microM) and inhibition at higher concentrations.
- High A beta concentration (60 microM) significantly reduced the phosphorylation of 20, 47, and 87 kDa brain proteins.
- PKC substrates are involved in memory storage, neurotransmission, and long-term potentiation.
Conclusions:
- Dual modulation of PKC by A beta may underlie its neurotrophic and neurotoxic actions.
- Low A beta concentrations stimulating PKC could promote neurite generation.
- High A beta concentrations inhibiting PKC may lead to memory impairment and neuronal loss in Alzheimer disease.