Impaired osteoclast differentiation and function and mild osteopetrosis development in Siglec-15-deficient mice

Yoshiharu Hiruma1, Eisuke Tsuda, Naoyuki Maeda

  • 1Frontier Research Laboratories, Daiichi Sankyo Co., Ltd., Tokyo, Japan. hiruma.yoshiharu.hy@daiichisankyo.co.jp

Bone
|December 15, 2012
PubMed

Insights

Sialic acid-binding immunoglobulin-like lectin 15 (Siglec-15) plays a key role in bone regulation. Mice lacking Siglec-15 show increased bone mass due to impaired osteoclast function, not altered osteoclast numbers.

Area of Science:

  • Skeletal Biology
  • Immunology
  • Cell Biology

Background:

  • Sialic acid-binding immunoglobulin-like lectin 15 (Siglec-15) is a receptor for sialylated glycans.
  • Previous in vitro studies indicated Siglec-15's involvement in osteoclast differentiation and function.

Purpose of the Study:

  • To investigate the in vivo physiological role of Siglec-15 in skeletal development and osteoclast biology.
  • To analyze the phenotype of Siglec-15-deficient mice regarding bone mass and osteoclast activity.

Main Methods:

  • Generation and phenotypic analysis of Siglec-15-deficient (siglec-15(-/-)) mice.
  • Histological examination of bone structure and osteoclast number.
  • Measurement of urinary deoxypyridinoline as a bone resorption marker.
  • In vitro assessment of osteoclast differentiation from bone marrow-derived monocytes/macrophages.

Main Results:

  • Siglec-15-deficient mice exhibited increased trabecular bone mass, indicative of mild osteopetrosis.
  • Osteoclast numbers were comparable between mutant and wild-type mice.
  • Reduced urinary deoxypyridinoline levels in mutant mice suggested impaired osteoclast function.
  • In vitro osteoclast differentiation was impaired in cells from Siglec-15-deficient mice.

Conclusions:

  • Siglec-15 is crucial for regulating osteoclast formation and/or function in vivo.
  • The study provides novel insights into the biological functions of Siglec-15 in the skeletal system.
  • Siglec-15 deficiency leads to increased bone mass primarily through reduced osteoclast resorption activity.

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