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Profiling the changes in signaling pathways in ascorbic acid/β‐glycerophosphate‐induced osteoblastic differentiation
Authors:Antonio Hernandes Chaves Neto  Karla Cristiana Queiroz  Renato Milani  Edgar Julian Paredes‐Gamero  Giselle Zenker Justo  Maikel P Peppelenbosch  Carmen Veríssima Ferreira
Institution:1. Departamento de Bioquímica, Instituto de Biologia, Universidade Estadual de Campinas (UNICAMP), Cidade Universitária Zeferino Vaz, Bar?o Geraldo, 13083‐970 Campinas, SP, Brazil;2. Department of Cell Biology, University Medical Center Groningen, University of Groningen, A. Deusinglaan 1, NL‐9713 AV, Groningen, The Netherlands;3. Departamento de Bioquímica, Universidade Federal de S?o Paulo (UNIFESP), S?o Paulo, SP, Brazil
Abstract:Despite numerous reports on the ability of ascorbic acid and β‐glycerophosphate (AA/β‐GP) to induce osteoblast differentiation, little is known about the molecular mechanisms involved in this phenomenon. In this work, we used a peptide array containing specific consensus sequences (potential substrates) for protein kinases and traditional biochemical techniques to examine the signaling pathways modulated during AA/β‐GP‐induced osteoblast differentiation. The kinomic profile obtained after 7 days of treatment with AA/β‐GP identified 18 kinase substrates with significantly enhanced or reduced phosphorylation. Peptide substrates for Akt, PI3K, PKC, BCR, ABL, PRKG1, PAK1, PAK2, ERK1, ERBB2, and SYK showed a considerable reduction in phosphorylation, whereas enhanced phosphorylation was observed in substrates for CHKB, CHKA, PKA, FAK, ATM, PKA, and VEGFR‐1. These findings confirm the potential usefulness of peptide microarrays for identifying kinases known to be involved in bone development in vivo and in vitro and show that this technique can be used to investigate kinases whose function in osteoblastic differentiation is poorly understood. J. Cell. Biochem. 112: 71–77, 2011. © 2010 Wiley‐Liss, Inc.
Keywords:ascorbic acid  β  ‐glycerophosphate  kinases  osteoblast differentiation  signaling
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