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Basic FGF-induced down-regulation of IGF-I mRNA in cultured rat Müller cells
1Dean A. McGee Eye Institute, University of Oklahoma, Oklahoma City, USA.
Abstract:
Interactions among growth factors are important in a variety of physiological and pathological processes. The regulation of IGF-I mRNA expression by bFGF was investigated in cultured rat Müller cells and the mechanism of regulation studied. Müller cells from 1- to 3-day-old Sprague-Dawley rats were isolated and cultured with Eagle MEM+10% FCS. Cultured cells were identified by immunocytochemistry using antibodies against vimentin, carbonic anhydrase C, and glutamine synthetase. Cells of passage 1-4 were treated with bFGF, the PKC inhibitor H-7, calphostin C, the PKC activator PMA or the PKA inhibitor H-89, as well as the adenylate cyclase activator forskolin, or adenylate cyclase inhibitor SQ22536. IGF-I and bFGF expression levels were assessed by Northern blot analysis. The addition of bFGF to culture medium down-regulated IGF-I expression in a dose- and time-dependent manner. Decrease of IGF-I expression started at a bFGF concentration of 1 ng ml-1. IGF-I mRNA level declined to 44% of baseline level at 10 ng ml-1 of bFGF, and reached a trough of 40% at 50 ng ml-1. At 10 ng ml-1 of bFGF, down-regulation of IGF-I expression was observed as early as 4 hr (60%) after treatment, and reached a trough of 42% by 8 hr. The temporal and concentration dependence of IGF-I expression by addition of the PKC activator PMA, to culture medium was similar to that due to the addition of bFGF. The down-regulation of IGF-I expression by bFGF (10 ng ml-1) and PMA (0.1 microM) was blocked by the PKC inhibitors H-7 (30 microM) and calphostin C (1 microM). Forskolin (5 microM), an adenylate cyclase activator, had activator, had no effect on IGF-I expression. SQ22536 (100 microM), an adenylate cyclase inhibitor, and H-89, a PKA inhibitor, had no inhibitory effect on bFGF-induced down-regulation of IGF-I expression. These results indicate that bFGF down-regulates IGF-I expression in cultured rat M uller cells through PKC activation.
Insights
Basic fibroblast growth factor (bFGF) down-regulates insulin-like growth factor I (IGF-I) mRNA expression in rat Müller cells. This regulation occurs via protein kinase C (PKC) activation, not protein kinase A (PKA).
Area of Science:
- Cell biology
- Molecular endocrinology
- Neuroscience
Background:
- Growth factor interactions are crucial in physiological and pathological processes.
- Understanding the regulation of insulin-like growth factor I (IGF-I) is vital for cellular development and disease.
- Müller cells play significant roles in retinal function and homeostasis.
Purpose of the Study:
- To investigate the regulation of IGF-I mRNA expression by basic fibroblast growth factor (bFGF) in cultured rat Müller cells.
- To elucidate the underlying molecular mechanisms, particularly the involvement of protein kinase C (PKC) and protein kinase A (PKA) pathways.
- To determine the dose- and time-dependent effects of bFGF on IGF-I expression.
Main Methods:
- Isolation and culture of rat Müller cells.
- Treatment with bFGF, PKC activator (PMA), PKA inhibitor (H-89), PKC inhibitors (H-7, calphostin C), adenylate cyclase activator (forskolin), and adenylate cyclase inhibitor (SQ22536).
- Assessment of IGF-I and bFGF mRNA expression levels using Northern blot analysis.
Main Results:
- bFGF significantly down-regulated IGF-I mRNA expression in a dose- and time-dependent manner.
- The PKC activator PMA mimicked the effect of bFGF on IGF-I expression.
- PKC inhibitors (H-7, calphostin C) blocked the down-regulation of IGF-I induced by bFGF and PMA.
- Neither PKA nor adenylate cyclase pathways were involved in bFGF-mediated IGF-I down-regulation.
Conclusions:
- bFGF down-regulates IGF-I expression in rat Müller cells.
- The mechanism of this down-regulation involves the activation of the protein kinase C (PKC) pathway.
- These findings highlight a specific signaling pathway regulating IGF-I in Müller cells, relevant to retinal biology.

