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Updated: Jun 2, 2026

Skeletal Phenotype Analysis of a Conditional Stat3 Deletion Mouse Model
Published on: July 3, 2020
Microtubule assembly affects bone mass by regulating both osteoblast and osteoclast functions: stathmin deficiency
Hongbin Liu1, Rongrong Zhang, Seon-Yle Ko
1Key Laboratory of Agricultural Animal Genetics, Huazhong Agricultural University, Wuhan, China.
Abstract:
Cytoskeleton microtubules regulate various cell signaling pathways that are involved in bone cell function. We recently reported that inhibition of microtubule assembly by microtubule-targeting drugs stimulates osteoblast differentiation and bone formation. To further elucidate the role of microtubules in bone homeostasis, we characterized the skeletal phenotype of mice null for stathmin, an endogenous protein that inhibits microtubule assembly. In vivo micro-computed tomography (µCT) and histology revealed that stathmin deficiency results in a significant reduction of bone mass in adult mice concurrent with decreased osteoblast and increased osteoclast numbers in bone tissues. Phenotypic analyses of primary calvarial cells and bone marrow cells showed that stathmin deficiency inhibited osteoblast differentiation and induced osteoclast formation. In vitro overexpression studies showed that increased stathmin levels enhanced osteogenic differentiation of preosteoblast MC3T3-E1 cells and mouse bone marrow-derived cells and attenuated osteoclast formation from osteoclast precursor Raw264.7 cells and bone marrow cells. Results of immunofluorescent studies indicated that overexpression of stathmin disrupted radial microtubule filaments, whereas deficiency of stathmin stabilized the microtubule network structure in these bone cells. In addition, microtubule-targeting drugs that inhibit microtubule assembly and induce osteoblast differentiation lost these effects in the absence of stathmin. Collectively, these results suggest that stathmin, which alters microtubule dynamics, plays an essential role in maintenance of postnatal bone mass by regulating both osteoblast and osteoclast functions in bone. \
Insights
Stathmin deficiency in mice reduces bone mass by impairing osteoblast function and increasing osteoclast activity. This protein is crucial for maintaining bone homeostasis through microtubule regulation.
Area of Science:
- Cell Biology
- Bone Biology
- Biochemistry
Background:
- Cytoskeleton microtubules are vital for cell signaling in bone cells.
- Microtubule-targeting drugs promote osteoblast differentiation and bone formation.
- Stathmin is an endogenous protein that inhibits microtubule assembly.
Purpose of the Study:
- To investigate the role of stathmin in bone homeostasis.
- To characterize the skeletal phenotype of stathmin-deficient mice.
Main Methods:
- In vivo micro-computed tomography (µCT) and histology.
- Phenotypic analyses of primary calvarial and bone marrow cells.
- In vitro overexpression studies and immunofluorescence.
Main Results:
- Stathmin deficiency led to reduced bone mass, decreased osteoblasts, and increased osteoclasts.
- Stathmin deficiency inhibited osteoblast differentiation and enhanced osteoclast formation.
- Stathmin regulates microtubule dynamics, impacting bone cell function and bone mass maintenance.
Conclusions:
- Stathmin plays a critical role in maintaining postnatal bone mass.
- Stathmin regulates both osteoblast and osteoclast functions via microtubule dynamics.
- Stathmin is essential for the therapeutic effects of microtubule-targeting drugs on bone formation.
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