Correction for “ Neighbor of Brca 1 gene ( Nbr 1 ) functions as a negative regulator of postnatal osteoblastic bone formation and p 38 MAPK activity , ” by Caroline

نویسندگان

  • Caroline A. Whitehouse
  • Sarah Waters
  • Katie Marchbank
  • Alan Horner
  • Neil W. A. McGowan
  • Jelena V. Jovanovic
  • Guilherme M. Xavier
  • Takeshi G. Kashima
  • Martyn T. Cobourne
  • Gareth O. Richards
  • Paul T. Sharpe
  • Tim M. Skerry
  • Agamemnon E. Grigoriadis
  • Raymond W. Friddle
  • Aleksandr Noy
چکیده

DEVELOPMENTAL BIOLOGY Correction for “Neighbor of Brca1 gene (Nbr1) functions as a negative regulator of postnatal osteoblastic bone formation and p38 MAPK activity,” by Caroline A. Whitehouse, Sarah Waters, Katie Marchbank, Alan Horner, Neil W. A. McGowan, Jelena V. Jovanovic, Guilherme M. Xavier, Takeshi G. Kashima, Martyn T. Cobourne, Gareth O. Richards, Paul T. Sharpe, Tim M. Skerry, Agamemnon E. Grigoriadis, and Ellen Solomon, which appeared in issue 29, July 20, 2010, of Proc Natl Acad Sci USA (107:12913–12918; first published June 29, 2010; 10.1073/ pnas.0913058107). The authors note that Figure 4 appeared incorrectly. A well image was duplicated within panel C. The corrected figure and its legend appear below. This error does not affect the conclusions of the article.

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Correction for “ Neighbor of Brca 1 gene ( Nbr 1 ) functions as a negative regulator of postnatal osteoblastic bone formation and p 38 MAPK activity

DEVELOPMENTAL BIOLOGY Correction for “Neighbor of Brca1 gene (Nbr1) functions as a negative regulator of postnatal osteoblastic bone formation and p38 MAPK activity,” by Caroline A. Whitehouse, Sarah Waters, Katie Marchbank, Alan Horner, Neil W. A. McGowan, Jelena V. Jovanovic, Guilherme M. Xavier, Takeshi G. Kashima, Martyn T. Cobourne, Gareth O. Richards, Paul T. Sharpe, Tim M. Skerry, Agamem...

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Neighbor of Brca1 gene (Nbr1) functions as a negative regulator of postnatal osteoblastic bone formation and p38 MAPK activity.

The neighbor of Brca1 gene (Nbr1) functions as an autophagy receptor involved in targeting ubiquitinated proteins for degradation. It also has a dual role as a scaffold protein to regulate growth-factor receptor and downstream signaling pathways. We show that genetic truncation of murine Nbr1 leads to an age-dependent increase in bone mass and bone mineral density through increased osteoblast d...

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Background and Objective: The importance of β-adrenergic signals in bone formation and resorption has been well investigated. However, little is known about the role of β -adrenergic signals in osteoblastic differentiation of mesenchymal stem cells (MSCs), which is critically important in bone physiology and pharmacology. In this study, RUNX2 and Osteocalcin gene expression were quantified in M...

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تاریخ انتشار 2013