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Proteomic Analysis of Estrogen-Mediated Signal Transduction in Osteoclasts Formation.


ABSTRACT: Estrogen plays an important role in inhibiting osteoclast differentiation and protecting against bone loss from osteoporosis, especially in postmenopausal women. However, the precise mechanisms underlying the effect of estrogen on osteoclasts are not well known. In the present study, we performed proteomics analysis and bioinformatics analysis to comprehensively compare the differential expression of proteins in receptor activator of nuclear factor-?B ligand RANKL-induced osteoclasts in the presence and absence of estrogen. We identified 6403 proteins, of which 124 were upregulated and 231 were downregulated by estrogen. Bioinformatics analysis showed that estrogen treatment interfered with 77 intracellular pathways, including both confirmed canonical and unconfirmed pathways of osteoclast formation. Our findings validate the inhibitory effect of estrogen on osteoclasts via the promotion of apoptosis and suppression of differentiation and polarization and suggest that estrogen might inhibit osteoclast formation via other pathways, which requires further investigation and verification.

SUBMITTER: Xiong Q 

PROVIDER: S-EPMC4450280 | biostudies-literature | 2015

REPOSITORIES: biostudies-literature

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Proteomic Analysis of Estrogen-Mediated Signal Transduction in Osteoclasts Formation.

Xiong Qi Q   Tang Peifu P   Gao Yanpan Y   Zhang Lihai L   Ge Wei W  

BioMed research international 20150518


Estrogen plays an important role in inhibiting osteoclast differentiation and protecting against bone loss from osteoporosis, especially in postmenopausal women. However, the precise mechanisms underlying the effect of estrogen on osteoclasts are not well known. In the present study, we performed proteomics analysis and bioinformatics analysis to comprehensively compare the differential expression of proteins in receptor activator of nuclear factor-κB ligand RANKL-induced osteoclasts in the pres  ...[more]

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