Nanotechnology Innovation Center, National Institute for Materials Science, 1-2-1 Sengen, Tsukuba, Ibaraki 305-0047, Japan.
J Bone Miner Metab. 2011 May;29(3):279-90. doi: 10.1007/s00774-010-0221-0. Epub 2010 Sep 14.
Interferon-inducible transmembrane protein 5 (IFITM5) is an osteoblast-specific membrane protein whose expression peaks around the early mineralization stage during the osteoblast maturation process. To investigate IFITM5 function, we first sought to identify which proteins interact with IFITM5. Liquid chromatography mass spectrometry revealed that FK506-binding protein 11 (FKBP11) co-immunoprecipitated with IFITM5. FKBP11 is the only protein it was found to interact with in osteoblasts, while IFITM5 interacts with several proteins in fibroblasts. FKBPs are involved in protein folding and immunosuppressant binding, but we could not be sure that IFITM5 participated in these activities when bound to FKBP11. Thus, we generated Ifitm5-deficient mice and analyzed their skeletal phenotypes. The skeletons, especially the long bones, of homozygous mutants (Ifitm5(-/-)) were smaller than those of heterozygous mutants (Ifitm5(+/-)), although we did not observe any significant differences in bone morphometric parameters. The effect of Ifitm5 deficiency on bone formation was more significant in newborns than in young and adult mice, suggesting that Ifitm5 deficiency might have a greater effect on prenatal bone development. Overall, the effect of Ifitm5 deficiency on bone formation was less than we expected. We hypothesize that this may have resulted from a compensatory mechanism in Ifitm5-deficient mice.
干扰素诱导跨膜蛋白 5(IFITM5)是一种成骨细胞特异性膜蛋白,其表达在成骨细胞成熟过程中的早期矿化阶段达到峰值。为了研究 IFITM5 的功能,我们首先试图确定与 IFITM5 相互作用的蛋白质。液质联用分析显示 FK506 结合蛋白 11(FKBP11)与 IFITM5 共免疫沉淀。FKBP11 是在成骨细胞中发现与 IFITM5 相互作用的唯一蛋白,而 IFITM5 在成纤维细胞中与几种蛋白相互作用。FKBP 参与蛋白质折叠和免疫抑制剂结合,但我们不能确定 IFITM5 与 FKBP11 结合时是否参与这些活动。因此,我们生成了 Ifitm5 缺失的小鼠,并分析了它们的骨骼表型。纯合突变体(Ifitm5(-/-))的骨骼,尤其是长骨,比杂合突变体(Ifitm5(+/-))的骨骼小,尽管我们没有观察到骨形态计量参数有任何显著差异。Ifitm5 缺失对骨形成的影响在新生小鼠中比在年轻和成年小鼠中更为显著,表明 Ifitm5 缺失可能对产前骨发育有更大的影响。总的来说,Ifitm5 缺失对骨形成的影响低于我们的预期。我们假设这可能是由于 Ifitm5 缺失小鼠存在代偿机制。