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Published on: July 3, 2020
SHP-1 Protein Tyrosine Phosphatase Affects Early Postnatal Bone Development in Mice
Adrienn Markovics1, Sydney Lupo2, Niyati Patel2
1Department of Orthopedic Surgery, Rush University Medical Center, Chicago, IL, USA. Adrienn_Markovics@rush.edu.
Abstract:
The Src homology region 2 domain-containing phosphatase-1 (SHP-1) is an intracellular tyrosine phosphatase that plays a negative regulatory role in immune cell signaling. Absent or diminished SHP-1 catalytic activity results in reduced bone mass with enhanced bone resorption. Here, we sought to investigate if Shp1 overexpression leads to increased bone mass and improved mechanical properties. Male and female wildtype (WT) and SHP1-transgenic (Tg) mice at 28, 56, and 84 days of age were compared. We applied microcomputed tomography to assess femoral cortical bone geometry and trabecular architecture and 3-point mechanical bending to assess mid-diaphyseal structural and estimated material properties. Serum OPG, RANKL, P1NP, and CTX-1 concentrations were measured by enzyme-linked immunoassay. The majority of transgene effects were restricted to the 28-day-old mice. Trabecular bone volume per total volume, trabecular number, and connectivity density were greater in 28-day-old female SHP1-Tg mice when compared to WTs. SHP1-Tg female mice showed increased total and medullary areas, with no difference in cortical area and thickness. Cortical tissue mineral density was strongly genotype-dependent. Failure load, yield load, ultimate stress, and yield stress were all lower in 28-day-old SHP1-Tg females. In 28-day-old SHP1-Tg females, circulating levels of OPG and P1NP were higher and RANKL levels were lower than WT controls. Our study demonstrates a role for SHP-1 in early postnatal bone development; SHP-1 overexpression negatively impacted whole bone strength and material properties in females.
Insights
Src homology region 2 domain-containing phosphatase-1 (SHP-1) overexpression in female mice reduced bone strength during early development. This suggests SHP-1 plays a critical role in regulating bone mass and mechanical properties.
Area of Science:
- Bone biology and immunology
- Skeletal development
- Tyrosine phosphatase function
Background:
- Src homology region 2 domain-containing phosphatase-1 (SHP-1) is an intracellular tyrosine phosphatase.
- SHP-1 negatively regulates immune cell signaling.
- Reduced SHP-1 activity is linked to lower bone mass and increased resorption.
Purpose of the Study:
- To investigate the impact of SHP-1 overexpression on bone mass and mechanical properties.
- To determine if increased SHP-1 levels lead to enhanced bone characteristics.
- To explore the effects of SHP-1 on early postnatal bone development.
Main Methods:
- Comparison of wildtype (WT) and SHP1-transgenic (Tg) mice at 28, 56, and 84 days of age.
- Microcomputed tomography (micro-CT) for bone geometry and architecture assessment.
- 3-point mechanical bending tests for structural and material properties.
- Enzyme-linked immunoassay for serum OPG, RANKL, P1NP, and CTX-1 levels.
Main Results:
- SHP-1 overexpression effects were primarily observed in 28-day-old mice.
- Female SHP1-Tg mice showed increased trabecular bone volume, number, and connectivity density.
- SHP1-Tg females had lower whole bone strength (failure load, yield load, ultimate stress, yield stress).
- Elevated OPG and P1NP, with lower RANKL, were found in 28-day-old SHP1-Tg females.
Conclusions:
- SHP-1 plays a significant role in early postnatal bone development.
- Overexpression of SHP-1 negatively impacts bone strength and material properties in young female mice.
- SHP-1 influences bone remodeling through modulation of OPG and RANKL pathways.
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