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ProNGF derived from rat sciatic nerves downregulates neurite elongation and axon specification in PC12 cells

Several reports have shown that a sciatic nerve conditioned media (CM) causes neuronal-like differentiation in PC12 cells. This differentiation is featured by neurite outgrowth, which are exclusively dendrites, without axon or sodium current induction. In previous studies, our group reported that th...

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Autores principales: Trigos, Anna Sofía, Longart, Marines, García, Lisbeth, Castillo, Cecilia, Forsyth, Patricia, Medina, Rafael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4569732/
https://www.ncbi.nlm.nih.gov/pubmed/26441535
http://dx.doi.org/10.3389/fncel.2015.00364
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author Trigos, Anna Sofía
Longart, Marines
García, Lisbeth
Castillo, Cecilia
Forsyth, Patricia
Medina, Rafael
author_facet Trigos, Anna Sofía
Longart, Marines
García, Lisbeth
Castillo, Cecilia
Forsyth, Patricia
Medina, Rafael
author_sort Trigos, Anna Sofía
collection PubMed
description Several reports have shown that a sciatic nerve conditioned media (CM) causes neuronal-like differentiation in PC12 cells. This differentiation is featured by neurite outgrowth, which are exclusively dendrites, without axon or sodium current induction. In previous studies, our group reported that the CM supplemented with a generic inhibitor for tyrosine kinase receptors (k252a) enhanced the CM-induced morphological differentiation upregulating neurite outgrowth, axonal formation and sodium current elicitation. Sodium currents were also induced by depletion of endogenous precursor of nerve growth factorr (proNGF) from the CM (pNGFd-CM). Given that sodium currents, neurite outgrowth and axon specification are important features of neuronal differentiation, in the current manuscript, first we investigated if proNGF was hindering the full PC12 cell neuronal-like differentiation. Second, we studied the effects of exogenous wild type (pNGFwt) and mutated (pNGFmut) proNGF isoforms over sodium currents and whether or not their addition to the pNGFd-CM would prevent sodium current elicitation. Third, we investigated if proNGF was exerting its negative regulation through the sortilin receptor, and for this, the proNGF action was blocked with neurotensin (NT), a factor known to compete with proNGF for sortilin. Thereby, here we show that pNGFd-CM enhanced cell differentiation, cell proportion with long neurites, total neurite length, induced axonal formation and sodium current elicitation. Interestingly, treatment of PC12 cells with wild type or mutated proNGF isoforms elicited sodium currents. Supplementing pNGFd-CM with pNGFmut reduced 35% the sodium currents. On the other hand, pNGFd-CM+pNGFwt induced larger sodium currents than pNGFd-CM. Finally, treatments with CM supplemented with NT showed that sortilin was mediating proNGF negative regulation, since its blocking induced similar effects than the pNGFd-CM treatment. Altogether, our results suggest that proNGF within the CM, is one of the main inhibitors of full neuronal differentiation, acting through sortilin receptor.
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spelling pubmed-45697322015-10-05 ProNGF derived from rat sciatic nerves downregulates neurite elongation and axon specification in PC12 cells Trigos, Anna Sofía Longart, Marines García, Lisbeth Castillo, Cecilia Forsyth, Patricia Medina, Rafael Front Cell Neurosci Neuroscience Several reports have shown that a sciatic nerve conditioned media (CM) causes neuronal-like differentiation in PC12 cells. This differentiation is featured by neurite outgrowth, which are exclusively dendrites, without axon or sodium current induction. In previous studies, our group reported that the CM supplemented with a generic inhibitor for tyrosine kinase receptors (k252a) enhanced the CM-induced morphological differentiation upregulating neurite outgrowth, axonal formation and sodium current elicitation. Sodium currents were also induced by depletion of endogenous precursor of nerve growth factorr (proNGF) from the CM (pNGFd-CM). Given that sodium currents, neurite outgrowth and axon specification are important features of neuronal differentiation, in the current manuscript, first we investigated if proNGF was hindering the full PC12 cell neuronal-like differentiation. Second, we studied the effects of exogenous wild type (pNGFwt) and mutated (pNGFmut) proNGF isoforms over sodium currents and whether or not their addition to the pNGFd-CM would prevent sodium current elicitation. Third, we investigated if proNGF was exerting its negative regulation through the sortilin receptor, and for this, the proNGF action was blocked with neurotensin (NT), a factor known to compete with proNGF for sortilin. Thereby, here we show that pNGFd-CM enhanced cell differentiation, cell proportion with long neurites, total neurite length, induced axonal formation and sodium current elicitation. Interestingly, treatment of PC12 cells with wild type or mutated proNGF isoforms elicited sodium currents. Supplementing pNGFd-CM with pNGFmut reduced 35% the sodium currents. On the other hand, pNGFd-CM+pNGFwt induced larger sodium currents than pNGFd-CM. Finally, treatments with CM supplemented with NT showed that sortilin was mediating proNGF negative regulation, since its blocking induced similar effects than the pNGFd-CM treatment. Altogether, our results suggest that proNGF within the CM, is one of the main inhibitors of full neuronal differentiation, acting through sortilin receptor. Frontiers Media S.A. 2015-09-15 /pmc/articles/PMC4569732/ /pubmed/26441535 http://dx.doi.org/10.3389/fncel.2015.00364 Text en Copyright © 2015 Trigos, Longart, García, Castillo, Forsyth and Medina. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution and reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Trigos, Anna Sofía
Longart, Marines
García, Lisbeth
Castillo, Cecilia
Forsyth, Patricia
Medina, Rafael
ProNGF derived from rat sciatic nerves downregulates neurite elongation and axon specification in PC12 cells
title ProNGF derived from rat sciatic nerves downregulates neurite elongation and axon specification in PC12 cells
title_full ProNGF derived from rat sciatic nerves downregulates neurite elongation and axon specification in PC12 cells
title_fullStr ProNGF derived from rat sciatic nerves downregulates neurite elongation and axon specification in PC12 cells
title_full_unstemmed ProNGF derived from rat sciatic nerves downregulates neurite elongation and axon specification in PC12 cells
title_short ProNGF derived from rat sciatic nerves downregulates neurite elongation and axon specification in PC12 cells
title_sort prongf derived from rat sciatic nerves downregulates neurite elongation and axon specification in pc12 cells
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4569732/
https://www.ncbi.nlm.nih.gov/pubmed/26441535
http://dx.doi.org/10.3389/fncel.2015.00364
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