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Low molecular weight, non-peptidic agonists of TrkA receptor with NGF-mimetic activity

Exploitation of the biologic activity of neurotrophins is desirable for medical purposes, but their protein nature intrinsically bears adverse pharmacokinetic properties. Here, we report synthesis and biologic characterization of a novel class of low molecular weight, non-peptidic compounds with NGF...

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Autores principales: Scarpi, D, Cirelli, D, Matrone, C, Castronovo, G, Rosini, P, Occhiato, E G, Romano, F, Bartali, L, Clemente, A M, Bottegoni, G, Cavalli, A, De Chiara, G, Bonini, P, Calissano, P, Palamara, A T, Garaci, E, Torcia, M G, Guarna, A, Cozzolino, F
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3406579/
https://www.ncbi.nlm.nih.gov/pubmed/22764098
http://dx.doi.org/10.1038/cddis.2012.80
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author Scarpi, D
Cirelli, D
Matrone, C
Castronovo, G
Rosini, P
Occhiato, E G
Romano, F
Bartali, L
Clemente, A M
Bottegoni, G
Cavalli, A
De Chiara, G
Bonini, P
Calissano, P
Palamara, A T
Garaci, E
Torcia, M G
Guarna, A
Cozzolino, F
author_facet Scarpi, D
Cirelli, D
Matrone, C
Castronovo, G
Rosini, P
Occhiato, E G
Romano, F
Bartali, L
Clemente, A M
Bottegoni, G
Cavalli, A
De Chiara, G
Bonini, P
Calissano, P
Palamara, A T
Garaci, E
Torcia, M G
Guarna, A
Cozzolino, F
author_sort Scarpi, D
collection PubMed
description Exploitation of the biologic activity of neurotrophins is desirable for medical purposes, but their protein nature intrinsically bears adverse pharmacokinetic properties. Here, we report synthesis and biologic characterization of a novel class of low molecular weight, non-peptidic compounds with NGF (nerve growth factor)-mimetic properties. MT2, a representative compound, bound to Trk (tropomyosin kinase receptor)A chain on NGF-sensitive cells, as well as in cell-free assays, at nanomolar concentrations and induced TrkA autophosphorylation and receptor-mediated internalization. MT2 binding involved at least two amino-acid residues within TrkA molecule. Like NGF, MT2 increased phosphorylation of extracellular signal-regulated kinase1/2 and Akt proteins and production of MKP-1 phosphatase (dual specificity phosphatase 1), modulated p38 mitogen-activated protein kinase activation, sustained survival of serum-starved PC12 or RDG cells, and promoted their differentiation. However, the intensity of such responses was heterogenous, as the ability of maintaining survival was equally possessed by NGF and MT2, whereas the induction of differentiation was expressed at definitely lower levels by the mimetic. Analysis of TrkA autophosphorylation patterns induced by MT2 revealed a strong tyrosine (Tyr)490 and a limited Tyr785 and Tyr674/675 activation, findings coherent with the observed functional divarication. Consistently, in an NGF-deprived rat hippocampal neuronal model of Alzheimer Disease, MT2 could correct the biochemical abnormalities and sustain cell survival. Thus, NGF mimetics may reveal interesting investigational tools in neurobiology, as well as promising drug candidates.
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spelling pubmed-34065792012-07-27 Low molecular weight, non-peptidic agonists of TrkA receptor with NGF-mimetic activity Scarpi, D Cirelli, D Matrone, C Castronovo, G Rosini, P Occhiato, E G Romano, F Bartali, L Clemente, A M Bottegoni, G Cavalli, A De Chiara, G Bonini, P Calissano, P Palamara, A T Garaci, E Torcia, M G Guarna, A Cozzolino, F Cell Death Dis Original Article Exploitation of the biologic activity of neurotrophins is desirable for medical purposes, but their protein nature intrinsically bears adverse pharmacokinetic properties. Here, we report synthesis and biologic characterization of a novel class of low molecular weight, non-peptidic compounds with NGF (nerve growth factor)-mimetic properties. MT2, a representative compound, bound to Trk (tropomyosin kinase receptor)A chain on NGF-sensitive cells, as well as in cell-free assays, at nanomolar concentrations and induced TrkA autophosphorylation and receptor-mediated internalization. MT2 binding involved at least two amino-acid residues within TrkA molecule. Like NGF, MT2 increased phosphorylation of extracellular signal-regulated kinase1/2 and Akt proteins and production of MKP-1 phosphatase (dual specificity phosphatase 1), modulated p38 mitogen-activated protein kinase activation, sustained survival of serum-starved PC12 or RDG cells, and promoted their differentiation. However, the intensity of such responses was heterogenous, as the ability of maintaining survival was equally possessed by NGF and MT2, whereas the induction of differentiation was expressed at definitely lower levels by the mimetic. Analysis of TrkA autophosphorylation patterns induced by MT2 revealed a strong tyrosine (Tyr)490 and a limited Tyr785 and Tyr674/675 activation, findings coherent with the observed functional divarication. Consistently, in an NGF-deprived rat hippocampal neuronal model of Alzheimer Disease, MT2 could correct the biochemical abnormalities and sustain cell survival. Thus, NGF mimetics may reveal interesting investigational tools in neurobiology, as well as promising drug candidates. Nature Publishing Group 2012-07 2012-07-05 /pmc/articles/PMC3406579/ /pubmed/22764098 http://dx.doi.org/10.1038/cddis.2012.80 Text en Copyright © 2012 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Original Article
Scarpi, D
Cirelli, D
Matrone, C
Castronovo, G
Rosini, P
Occhiato, E G
Romano, F
Bartali, L
Clemente, A M
Bottegoni, G
Cavalli, A
De Chiara, G
Bonini, P
Calissano, P
Palamara, A T
Garaci, E
Torcia, M G
Guarna, A
Cozzolino, F
Low molecular weight, non-peptidic agonists of TrkA receptor with NGF-mimetic activity
title Low molecular weight, non-peptidic agonists of TrkA receptor with NGF-mimetic activity
title_full Low molecular weight, non-peptidic agonists of TrkA receptor with NGF-mimetic activity
title_fullStr Low molecular weight, non-peptidic agonists of TrkA receptor with NGF-mimetic activity
title_full_unstemmed Low molecular weight, non-peptidic agonists of TrkA receptor with NGF-mimetic activity
title_short Low molecular weight, non-peptidic agonists of TrkA receptor with NGF-mimetic activity
title_sort low molecular weight, non-peptidic agonists of trka receptor with ngf-mimetic activity
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3406579/
https://www.ncbi.nlm.nih.gov/pubmed/22764098
http://dx.doi.org/10.1038/cddis.2012.80
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