4.6 Article

Oophorectomy-induced bone loss is attenuated in MAGP1-deficient mice

Journal

JOURNAL OF CELLULAR BIOCHEMISTRY
Volume 113, Issue 1, Pages 93-99

Publisher

WILEY-BLACKWELL
DOI: 10.1002/jcb.23331

Keywords

MAGP1; Microfibril; Bone; Oophorectomy; Rankl

Funding

  1. NIH [HL71960, HL084922, T32-HL007275-30, AR0327888, AR046523, AR057037, AR054618, P30AR057235]
  2. National Marfan Foundation
  3. Washington University Core Center for Musculoskeletal Biology and Medicine
  4. Washington University Core Center for Musculoskeletal Biology and Medicine, NIH [P30AR057235]

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Microfibril-associated glycoprotein-1 (MAGP1), together with the fibrillins, are constitutive components of vertebrate microfibrils. Mice deficient in MAGP1 (murine MAGP1 knockout animals (Mfap2-/-); MAGP1) is appropriate develop progressive osteopenia and reduced whole bone strength, and have elevated numbers of osteoclasts lining the bone surface. Our previous studies suggested that the increased osteoclast population was associated with elevated levels of receptor activator of NF-?B ligand (RANKL), a positive regulator of osteoclast differentiation. To explore the relationship between RANKL expression and osteoclast differentiation in MAGP1 deficiency, oophorectomy (OVX) was used to stimulate RANKL expression in both WT and MAGP1 animals. Bone loss following OVX was monitored using whole body DEXA and in vivo mu CT. While WT mice exhibited significant bone loss following OVX, percent bone loss was reduced in MAGP1 mice. Further, serum RANKL levels rose significantly in OVX WT mice, whereas, there was only a modest increase in RANKL following OVX in the mutant mice due to already high baseline levels. Elevated RANKL expression was normalized when cultured MAGP1 osteoblasts were treated with a neutralizing antibody targeting free TGF beta. These studies provide support for increased RANKL expression associated with MAGP1 deficiency and provide a link to altered TGF-beta signaling as a possible causative signaling pathway regulating RANKL expression in MAGP1? osteoblasts. J. Cell. Biochem. 113: 9399, 2012. (C) 2011 Wiley Periodicals, Inc.

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