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Published on: September 28, 2015
Regulation of angiotensin II-induced neuromodulation by MARCKS in brain neurons
1Department of Physiology, University of Florida College of Medicine, Gainesville, FL 32610, USA.
Abstract:
Angiotensin II (Ang II) exerts chronic stimulatory actions on tyrosine hydroxylase (TH), dopamine beta-hydroxylase (DbetaH), and the norepinephrine transporter (NET), in part, by influencing the transcription of their genes. These neuromodulatory actions of Ang II involve Ras-Raf-MAP kinase signal transduction pathways (Lu, D., H. Yang, and M.K. Raizada. 1997. J. Cell Biol. 135:1609-1617). In this study, we present evidence to demonstrate participation of another signaling pathway in these neuronal actions of Ang II. It involves activation of protein kinase C (PKC)beta subtype and phosphorylation and redistribution of myristoylated alanine-rich C kinase substrate (MARCKS) in neurites. Ang II caused a dramatic redistribution of MARCKS from neuronal varicosities to neurites. This was accompanied by a time-dependent stimulation of its phosphorylation, that was mediated by the angiotensin type 1 receptor subtype (AT1). Incubation of neurons with PKCbeta subtype specific antisense oligonucleotide (AON) significantly attenuated both redistribution and phosphorylation of MARCKS. Furthermore, depletion of MARCKS by MARCKS-AON treatment of neurons resulted in a significant decrease in Ang II-stimulated accumulation of TH and DbetaH immunoreactivities and [3H]NE uptake activity in synaptosomes. In contrast, mRNA levels of TH, DbetaH, and NET were not influenced by MARKS-AON treatment. MARCKS pep148-165, which contains PKC phosphorylation sites, inhibited Ang II stimulation of MARCKS phosphorylation and reduced the amount of TH, DbetaH, and [3H]NE uptake in neuronal synaptosomes. These observations demonstrate that phosphorylation of MARCKS by PKCbeta and its redistribution from varicosities to neurites is important in Ang II-induced synaptic accumulation of TH, DbetaH, and NE. They suggest that a coordinated stimulation of transcription of TH, DbetaH, and NET, mediated by Ras-Raf-MAP kinase followed by their transport mediated by PKCbeta-MARCKS pathway are key in persistent stimulation of Ang II's neuromodulatory actions.
Insights
Angiotensin II (Ang II) stimulates key enzymes and transporters in neurons. A novel pathway involving protein kinase C beta (PKCβ) and MARCKS phosphorylation is crucial for Ang II
Area of Science:
- Neuroscience
- Cell Signaling
- Molecular Biology
Background:
- Angiotensin II (Ang II) influences neuronal gene transcription via Ras-Raf-MAP kinase pathways.
- Ang II chronically stimulates tyrosine hydroxylase (TH), dopamine beta-hydroxylase (DbetaH), and norepinephrine transporter (NET).
Purpose of the Study:
- To investigate the role of protein kinase C beta (PKCβ) and myristoylated alanine-rich C kinase substrate (MARCKS) in Ang II's neuronal actions.
- To elucidate the signaling pathway downstream of the angiotensin type 1 receptor (AT1).
Main Methods:
- Neuronal cell cultures treated with Ang II.
- Western blotting and immunofluorescence for MARCKS phosphorylation and redistribution.
- Antisense oligonucleotide (AON) treatment to inhibit PKCβ and MARCKS.
- Measurement of TH and DbetaH immunoreactivity and [3H]NE uptake in synaptosomes.
- Analysis of mRNA levels for TH, DbetaH, and NET.
Main Results:
- Ang II induced MARCKS phosphorylation and redistribution from varicosities to neurites, mediated by AT1 receptors.
- PKCβ activation and MARCKS phosphorylation were essential for Ang II's effects on MARCKS.
- Depletion of MARCKS reduced Ang II-stimulated accumulation of TH, DbetaH, and norepinephrine uptake.
- MARCKS depletion did not affect mRNA levels of TH, DbetaH, or NET.
- A PKCβ-MARCKS pathway is involved in the synaptic transport of TH, DbetaH, and norepinephrine.
Conclusions:
- The PKCβ-MARCKS pathway plays a critical role in the synaptic accumulation of TH, DbetaH, and norepinephrine induced by Ang II.
- This pathway complements the Ras-Raf-MAP kinase pathway involved in transcriptional regulation.
- These coordinated mechanisms underlie Ang II's persistent neuromodulatory actions.
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