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Modulation of TGFbeta 2 levels by lamin A in U2-OS osteoblast-like cells: understanding the osteolytic process triggered by altered lamins

Transforming growth factor beta (TGFbeta) plays an essential role in bone homeostasis and deregulation of TGFbeta occurs in bone pathologies. Patients affected by Mandibuloacral Dysplasia (MADA), a progeroid disease linked to LMNA mutations, suffer from an osteolytic process. Our previous work showe...

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Autores principales: Evangelisti, Camilla, Bernasconi, Pia, Cavalcante, Paola, Cappelletti, Cristina, D'Apice, Maria Rosaria, Sbraccia, Paolo, Novelli, Giuseppe, Prencipe, Sabino, Lemma, Silvia, Baldini, Nicola, Avnet, Sofia, Squarzoni, Stefano, Martelli, Alberto M., Lattanzi, Giovanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4480690/
https://www.ncbi.nlm.nih.gov/pubmed/25823658
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author Evangelisti, Camilla
Bernasconi, Pia
Cavalcante, Paola
Cappelletti, Cristina
D'Apice, Maria Rosaria
Sbraccia, Paolo
Novelli, Giuseppe
Prencipe, Sabino
Lemma, Silvia
Baldini, Nicola
Avnet, Sofia
Squarzoni, Stefano
Martelli, Alberto M.
Lattanzi, Giovanna
author_facet Evangelisti, Camilla
Bernasconi, Pia
Cavalcante, Paola
Cappelletti, Cristina
D'Apice, Maria Rosaria
Sbraccia, Paolo
Novelli, Giuseppe
Prencipe, Sabino
Lemma, Silvia
Baldini, Nicola
Avnet, Sofia
Squarzoni, Stefano
Martelli, Alberto M.
Lattanzi, Giovanna
author_sort Evangelisti, Camilla
collection PubMed
description Transforming growth factor beta (TGFbeta) plays an essential role in bone homeostasis and deregulation of TGFbeta occurs in bone pathologies. Patients affected by Mandibuloacral Dysplasia (MADA), a progeroid disease linked to LMNA mutations, suffer from an osteolytic process. Our previous work showed that MADA osteoblasts secrete excess amount of TGFbeta 2, which in turn elicits differentiation of human blood precursors into osteoclasts. Here, we sought to determine how altered lamin A affects TGFbeta signaling. Our results show that wild-type lamin A negatively modulates TGFbeta 2 levels in osteoblast-like U2-OS cells, while the R527H mutated prelamin A as well as farnesylated prelamin A do not, ultimately leading to increased secretion of TGFbeta 2. TGFbeta 2 in turn, triggers the Akt/mTOR pathway and upregulates osteoprotegerin and cathepsin K. TGFbeta 2 neutralization rescues Akt/mTOR activation and the downstream transcriptional effects, an effect also obtained by statins or RAD001 treatment. Our results unravel an unexpected role of lamin A in TGFbeta 2 regulation and indicate rapamycin analogs and neutralizing antibodies to TGFbeta 2 as new potential therapeutic tools for MADA.
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spelling pubmed-44806902015-06-26 Modulation of TGFbeta 2 levels by lamin A in U2-OS osteoblast-like cells: understanding the osteolytic process triggered by altered lamins Evangelisti, Camilla Bernasconi, Pia Cavalcante, Paola Cappelletti, Cristina D'Apice, Maria Rosaria Sbraccia, Paolo Novelli, Giuseppe Prencipe, Sabino Lemma, Silvia Baldini, Nicola Avnet, Sofia Squarzoni, Stefano Martelli, Alberto M. Lattanzi, Giovanna Oncotarget Gerotarget (Focus on Aging): Research Paper Transforming growth factor beta (TGFbeta) plays an essential role in bone homeostasis and deregulation of TGFbeta occurs in bone pathologies. Patients affected by Mandibuloacral Dysplasia (MADA), a progeroid disease linked to LMNA mutations, suffer from an osteolytic process. Our previous work showed that MADA osteoblasts secrete excess amount of TGFbeta 2, which in turn elicits differentiation of human blood precursors into osteoclasts. Here, we sought to determine how altered lamin A affects TGFbeta signaling. Our results show that wild-type lamin A negatively modulates TGFbeta 2 levels in osteoblast-like U2-OS cells, while the R527H mutated prelamin A as well as farnesylated prelamin A do not, ultimately leading to increased secretion of TGFbeta 2. TGFbeta 2 in turn, triggers the Akt/mTOR pathway and upregulates osteoprotegerin and cathepsin K. TGFbeta 2 neutralization rescues Akt/mTOR activation and the downstream transcriptional effects, an effect also obtained by statins or RAD001 treatment. Our results unravel an unexpected role of lamin A in TGFbeta 2 regulation and indicate rapamycin analogs and neutralizing antibodies to TGFbeta 2 as new potential therapeutic tools for MADA. Impact Journals LLC 2015-03-16 /pmc/articles/PMC4480690/ /pubmed/25823658 Text en Copyright: © 2015 Evangelisti et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Gerotarget (Focus on Aging): Research Paper
Evangelisti, Camilla
Bernasconi, Pia
Cavalcante, Paola
Cappelletti, Cristina
D'Apice, Maria Rosaria
Sbraccia, Paolo
Novelli, Giuseppe
Prencipe, Sabino
Lemma, Silvia
Baldini, Nicola
Avnet, Sofia
Squarzoni, Stefano
Martelli, Alberto M.
Lattanzi, Giovanna
Modulation of TGFbeta 2 levels by lamin A in U2-OS osteoblast-like cells: understanding the osteolytic process triggered by altered lamins
title Modulation of TGFbeta 2 levels by lamin A in U2-OS osteoblast-like cells: understanding the osteolytic process triggered by altered lamins
title_full Modulation of TGFbeta 2 levels by lamin A in U2-OS osteoblast-like cells: understanding the osteolytic process triggered by altered lamins
title_fullStr Modulation of TGFbeta 2 levels by lamin A in U2-OS osteoblast-like cells: understanding the osteolytic process triggered by altered lamins
title_full_unstemmed Modulation of TGFbeta 2 levels by lamin A in U2-OS osteoblast-like cells: understanding the osteolytic process triggered by altered lamins
title_short Modulation of TGFbeta 2 levels by lamin A in U2-OS osteoblast-like cells: understanding the osteolytic process triggered by altered lamins
title_sort modulation of tgfbeta 2 levels by lamin a in u2-os osteoblast-like cells: understanding the osteolytic process triggered by altered lamins
topic Gerotarget (Focus on Aging): Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4480690/
https://www.ncbi.nlm.nih.gov/pubmed/25823658
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