Literature DB >> 18467443

The anabolic response to parathyroid hormone is augmented in Rac2 knockout mice.

Tsutomu Kawano1, Nancy Troiano, Douglas J Adams, Jian Jun Wu, Ben-hua Sun, Karl Insogna.   

Abstract

PTH is the only currently available anabolic therapy for osteoporosis. In clinical practice, the skeletal response to PTH varies and because therapy is limited to 2 yr, approaches to maximize the therapeutic response are desirable. Rac2 is a small GTPase that is expressed only in hematopoietic tissue. Rac2(-/-) mice have a slight increase in bone mass and osteoclasts isolated from these animals have reduced basal resorptive activity and reduced chemotaxis. To evaluate the anabolic response to PTH in Rac2(-/-) mice, we treated 18 Rac2(-/-) and 17 control, age-matched wild-type animals once daily for 28 d with 80 ng/g body weight of h(1-34)PTH. Treatment resulted in significantly greater increments in spinal, femur, and total bone density in the Rac2(-/-) as compared with wild-type animals. Microcomputed tomography analysis demonstrated greater increases in trabecular thickness and cortical thickness in the knockout mice. Interestingly, histomorphometric analysis showed an equivalent increase in osteoblast and osteoclast number in response to PTH treatment in both groups of animals. However, as judged by changes in serum markers, the resorptive response to PTH was impaired. Thus, telopeptide of type 1 collagen was 15.9+/-6.9 ng/ml after PTH treatment in the knockout animals and 26.8+/-11.1 ng/ml in the PTH-treated wild-type group. In contrast, serum aminoterminal propeptide of type 1 collagen and osteocalcin were equivalent in both groups. We conclude that, in the genetic absence of Rac2, the anabolic response to PTH is increased. This appears to be due to attenuated resorptive activity of osteoclasts.

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Year:  2008        PMID: 18467443      PMCID: PMC2488220          DOI: 10.1210/en.2008-0034

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  31 in total

1.  Characterization of RAC3, a novel member of the Rho family.

Authors:  L Haataja; J Groffen; N Heisterkamp
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Authors:  H Dobnig; R T Turner
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4.  rac, a novel ras-related family of proteins that are botulinum toxin substrates.

Authors:  J Didsbury; R F Weber; G M Bokoch; T Evans; R Snyderman
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5.  Development and validation of a radioimmunoassay for mouse osteocalcin: paradoxical response in the Hyp mouse.

Authors:  C M Gundberg; M E Clough; T O Carpenter
Journal:  Endocrinology       Date:  1992-04       Impact factor: 4.736

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Authors:  Dennis M Black; Susan L Greenspan; Kristine E Ensrud; Lisa Palermo; Joan A McGowan; Thomas F Lang; Patrick Garnero; Mary L Bouxsein; John P Bilezikian; Clifford J Rosen
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Authors:  A B Hodsman; L J Fraher; T Ostbye; J D Adachi; B M Steer
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Review 8.  The insulin-like growth factor system and the coupling of formation to resorption.

Authors:  J M Hayden; S Mohan; D J Baylink
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9.  The murine rac1 gene: cDNA cloning, tissue distribution and regulated expression of rac1 mRNA by disassembly of actin microfilaments.

Authors:  J Moll; G Sansig; E Fattori; H van der Putten
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7.  An Unanticipated Role for Sphingosine Kinase-2 in Bone and in the Anabolic Effect of Parathyroid Hormone.

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