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Updated: Aug 9, 2026

Two Techniques to Create Hypoparathyroid Mice: Parathyroidectomy Using GFP Glands and Diphtheria-Toxin-Mediated Parathyroid Ablation
Published on: March 14, 2017
Neurofibromatosis type 1 gene haploinsufficiency reduces AP-1 gene expression without abrogating the anabolic effect
1Department of Anatomy and Cell Biology, Indiana University School of Medicine, 635 Barnhill Drive, Indianapolis, IN 46202, USA. xijyu@iupui.edu
Abstract:
Approximately 50% of neurofibromatosis type 1 (NF1) patients exhibit skeletal pathology, such as premature osteoporosis or pseudoarthroses. Loss of neurofibromin deregulates Ras signal transduction to affect generation of mitogen-activated protein kinase and Akt, both of which have been implicated in parathyroid hormone (PTH) anabolic mechanisms. Our aim was to determine if loss of neurofibromin impaired the anabolic effect of PTH on bone mass. Nf1 heterozygote (Nf1(+/-)) and wild type (Nf1(+/+)) mice were treated with recombinant human PTH(1-34) or vehicle once daily for 3-28 days. PTH enhanced mRNA expression of c-fos, junB, and fra2 in the distal femur metaphyses of both genotypes; expression of these transcripts was consistently lower in PTH-treated Nf1(+/-) mice. Despite lowered c-fos expression in Nf1(+/-) mice, PTH increased bone mass equivalently in both genotypes by 28 days. Ex vivo, Nf1 heterozygosity was associated with increased inducible osteoclasts in PTH-treated bone marrow cells and impairment of the actin stress fiber and cyclic adenosine monophosphate response to PTH in osteoprogenitors. Lower c-fos expression was previously thought to abrogate PTH responsiveness. Our results suggest crosstalk might occur between Ras signal transduction and the protein kinase A pathway in Nf1(+/-) mice. Ras signal transduction does not appear to be essential for the anabolic actions of PTH on bone. Because PTH was effective in the absence of Nf1, it may offer a useful approach to treat osteoporosis in NF1 patients.
Insights
Parathyroid hormone (PTH) effectively increases bone mass in neurofibromatosis type 1 (NF1) mice, despite Nf1 loss impacting cellular responses. This suggests PTH may treat osteoporosis in NF1 patients.
Area of Science:
- Bone biology
- Genetics
- Endocrinology
Background:
- Neurofibromatosis type 1 (NF1) is associated with skeletal pathologies like osteoporosis.
- Loss of neurofibromin in NF1 disrupts Ras signaling, potentially affecting bone metabolism.
- Parathyroid hormone (PTH) is known for its anabolic effects on bone mass.
Purpose of the Study:
- To investigate if neurofibromin deficiency impairs the bone-building effects of PTH.
- To explore the cellular mechanisms underlying PTH responsiveness in the context of NF1.
Main Methods:
- Treatment of Nf1(+/-) and wild type mice with recombinant human PTH(1-34) or vehicle.
- Analysis of gene expression (c-fos, junB, fra2) in femur metaphyses.
- Ex vivo assessment of osteoclastogenesis and osteoprogenitor cell responses to PTH.
Main Results:
- PTH increased bone mass similarly in both Nf1(+/-) and wild type mice.
- Lowered c-fos expression was observed in PTH-treated Nf1(+/-) mice.
- Nf1 heterozygosity led to increased osteoclasts and impaired cellular responses to PTH ex vivo.
Conclusions:
- Ras signaling is not essential for PTH's anabolic action on bone.
- PTH remains effective in increasing bone mass despite Nf1 loss, suggesting potential therapeutic use.
- Crosstalk between Ras and protein kinase A pathways may occur in Nf1(+/-) osteoprogenitors.
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