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L-Plastin deficiency produces increased trabecular bone due to attenuation of sealing ring formation and osteoclast dysfunction

机译:L-Plastin缺乏症会导致密封环形成减弱和破骨细胞功能障碍,导致小梁骨增加

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摘要

Bone resorption requires the formation of complex, actin-rich cytoskeletal structures. During the early phase of sealing ring formation by osteoclasts, L-plastin regulates actin-bundling to form the nascent sealing zones(NSZ). Here, we show that L-plastin knockout mice produce osteoclasts that are deficient in the formation of NSZs, are hyporesorptive, and make superficial resorption pits in vitro. Transduction of TAT-fused full-length L-plastin peptide into osteoclasts from L-plastin knockout mice rescued the formation of nascent sealing zones and sealing rings in a time-dependent manner. This response was not observed with mutated full-length L-plastin(Ser-5 and-7 to Ala-5 and-7) peptide. In contrast to the observed defect in the NSZ, L-plastin deficiency did not affect podosome formation or adhesion of osteoclasts in vitro or in vivo. Histomorphometry analyses in 8-and 12-week-old female L-plastin knockout mice demonstrated a decrease in eroded perimeters and an increase in trabecular bone density, without a change in bone formation by osteoblasts. This decrease in eroded perimeters supports that osteoclast function is attenuated in L-plastin knockouts. Micro-CT analyses confirmed a marked increase in trabecular bone mass. In conclusion, female L-plastin knockout mice had increased trabecular bone density due to impaired bone resorption by osteoclasts. L-plastin could be a potential target for therapeutic interventions to treat trabecular bone loss.

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  • 来源
    《骨研究(英文版)》 |2020年第1期|53-62|共10页
  • 作者单位

    Department of Oncology and Diagnostic Sciences School of Dentistry University of Maryland Baltimore MD USA;

    Department of Orthopedics University of Maryland School of Medicine Baltimore MD USA;

    Department of Pediatrics Division of Infectious Diseases and Department of Pathology and Immunology Washington University School of Medicine St. Louis MO USA;

    Department of Kinesiology California State University East Bay Hayward CA USA;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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