Neurotrophic factors profoundly affect neuronal differentiation, but whether they influence neuronal phenotype in instructive ways remains unclear: do different neurotrophic factors always trigger identical programs of differentiation or can each impose distinct functional properties even when acting upon the same population of target neurons? We addressed this issue by examining the regulatory effects of the four neurotrophins on the molecular components of electrical excitability, voltage-gated ion channels, within a single cellular context. Using patch clamp methods, we studied neurotrophin regulation of voltage-gated sodium, calcium, and potassium currents in SK-N-sH neuroblastoma cells. We found that each neurotrophin induced a unique pattern of expression of ionic currents despite similar activation of initial signal transduction events. Thus, each neurotrophin imposed a different excitable phenotype even when acting upon the same target cells.
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Loyola Univ Chicago, Dept Mol Pharmacol & Therapeut, 2160 S 1st Ave, Maywood, IL 60153 USALoyola Univ Chicago, Dept Mol Pharmacol & Therapeut, 2160 S 1st Ave, Maywood, IL 60153 USA
Rao, Vidhya R.
Perez-Neut, Mathew
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Loyola Univ Chicago, Dept Mol Pharmacol & Therapeut, 2160 S 1st Ave, Maywood, IL 60153 USALoyola Univ Chicago, Dept Mol Pharmacol & Therapeut, 2160 S 1st Ave, Maywood, IL 60153 USA
Perez-Neut, Mathew
Kaja, Simon
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Univ Missouri Kansas City, Sch Med, Dept Ophthalmol, Kansas City, MO 64108 USA
Univ Missouri Kansas City, Vis Res Ctr, Sch Med, Kansas City, MO 64108 USALoyola Univ Chicago, Dept Mol Pharmacol & Therapeut, 2160 S 1st Ave, Maywood, IL 60153 USA
Kaja, Simon
Gentile, Saverio
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Loyola Univ Chicago, Dept Mol Pharmacol & Therapeut, 2160 S 1st Ave, Maywood, IL 60153 USALoyola Univ Chicago, Dept Mol Pharmacol & Therapeut, 2160 S 1st Ave, Maywood, IL 60153 USA