TY - JOUR
T1 - The p85α subunit of class IA phosphatidylinositol 3-kinase regulates the expression of multiple genes involved in osteoclast maturation and migration
AU - Munugalavadla, Veerendra
AU - Vemula, Sasidhar
AU - Sims, Emily Catherine
AU - Krishnan, Subha
AU - Chen, Shi
AU - Yan, Jincheng
AU - Li, Huijie
AU - Niziolek, Paul J.
AU - Takemoto, Clifford
AU - Robling, Alexander G.
AU - Yang, Feng Chun
AU - Kapur, Reuben
PY - 2008/12
Y1 - 2008/12
N2 - Intracellular signals involved in the maturation and function of osteoclasts are poorly understood. Here, we demonstrate that osteoclasts express multiple regulatory subunits of class IA phosphatidylinositol 3-kinase (PI3-K) although the expression of the full-length form of p85α is most abundant. In vivo, deficiency of p85α results in a significantly greater number of trabeculae and significantly lower spacing between trabeculae as well as increased bone mass in both males and females compared to their sex-matched wild-type controls. Consistently, p85α-/- osteoclast progenitors show impaired growth and differentiation, which is associated with reduced activation of Akt and mitogen-activated protein kinase extracellular signal-regulated kinase 1 (Erk1)/Erk2 in vitro. Furthermore, a significant reduction in the ability of p85α-/- osteoclasts to adhere to as well as to migrate via integrin αvβ3 was observed, which was associated with reduced bone resorption. Microarray as well as quantitative real-time PCR analysis of p85α-/- osteoclasts revealed a significant reduction in the expression of several genes associated with the maturation and migration of osteoclasts, including microphathalmia-associated transcription factor, tartrate-resistant acid phosphatase, cathepsin K, and β3 integrin. Restoring the expression of the full-length form of p85α but not the version with a deletion of the Src homology-3 domain restored the maturation of p85α-/- osteoclasts to wild-type levels. These results highlight the importance of the full-length version of the p85α subunit of class IA PI3-K in controlling multiple aspects of osteoclast functions.
AB - Intracellular signals involved in the maturation and function of osteoclasts are poorly understood. Here, we demonstrate that osteoclasts express multiple regulatory subunits of class IA phosphatidylinositol 3-kinase (PI3-K) although the expression of the full-length form of p85α is most abundant. In vivo, deficiency of p85α results in a significantly greater number of trabeculae and significantly lower spacing between trabeculae as well as increased bone mass in both males and females compared to their sex-matched wild-type controls. Consistently, p85α-/- osteoclast progenitors show impaired growth and differentiation, which is associated with reduced activation of Akt and mitogen-activated protein kinase extracellular signal-regulated kinase 1 (Erk1)/Erk2 in vitro. Furthermore, a significant reduction in the ability of p85α-/- osteoclasts to adhere to as well as to migrate via integrin αvβ3 was observed, which was associated with reduced bone resorption. Microarray as well as quantitative real-time PCR analysis of p85α-/- osteoclasts revealed a significant reduction in the expression of several genes associated with the maturation and migration of osteoclasts, including microphathalmia-associated transcription factor, tartrate-resistant acid phosphatase, cathepsin K, and β3 integrin. Restoring the expression of the full-length form of p85α but not the version with a deletion of the Src homology-3 domain restored the maturation of p85α-/- osteoclasts to wild-type levels. These results highlight the importance of the full-length version of the p85α subunit of class IA PI3-K in controlling multiple aspects of osteoclast functions.
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U2 - 10.1128/MCB.00920-08
DO - 10.1128/MCB.00920-08
M3 - Article
C2 - 18809581
AN - SCOPUS:57349195638
SN - 0270-7306
VL - 28
SP - 7182
EP - 7198
JO - Molecular and cellular biology
JF - Molecular and cellular biology
IS - 23
ER -