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Disruption of the mouse Slc39a14 gene encoding zinc transporter ZIP14 is associated with decreased bone mass, likely caused by enhanced bone resorption

机译:编码锌转运蛋白ZIP14的小鼠Slc39a14基因的破坏与骨量减少有关,这可能是由于骨吸收增强所致

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Osteoclasts are bone‐resorbing cells that play an essential role in maintaining bone homeostasis. Zinc (Zn) has been reported to inhibit osteoclast‐mediated bone resorption, but the mechanism of this action has not been clarified. Zn homeostasis is tightly controlled by the coordinated actions of many Zn transporters. The Zn transporter ZIP14/Slc39a14 is involved in various physiological functions; hence, Zip14‐knockout (KO) mice exhibit multiple phenotypes. In this study, we thoroughly investigated the bone phenotypes of Zip14‐KO mice, demonstrating that the KO mice exhibited osteopenia in both trabecular and cortical bones. In Zip14‐KO mice, bone resorption was increased, whereas the bone formation rate was unchanged. Zip14mRNA was expressed in normal osteoclasts both in vivo and in vitro, but receptor activator of NF‐κB ligand (RANKL)‐induced osteoclastogenesis was not impaired in bone marrow‐derived macrophages prepared from Zip14‐KO mice. These results suggest that ZIP14 regulates bone homeostasis by inhibiting bore resorption and that in Zip14‐KO mice, bone resorption is increased due to the elimination of this inhibitory regulation. Further studies are necessary to conclude whether the enhancement of bone resorption in Zip14‐KO mice is due to a cell‐autonomous or a non‐cell‐autonomous osteoclast defect.
机译:破骨细胞是骨骼吸收细胞,在维持骨骼稳态方面起着至关重要的作用。锌(Zn)可以抑制破骨细胞介导的骨吸收,但是这种作用的机理尚不清楚。锌稳态受许多锌转运蛋白的协调作用严格控制。锌转运蛋白ZIP14 / Slc39a14参与多种生理功能。因此,Zip14基因敲除(KO)小鼠表现出多种表型。在这项研究中,我们彻底研究了Zip14‐KO小鼠的骨表型,表明KO小鼠在小梁和皮质骨中均表现出骨质减少。在Zip14-KO小鼠中,骨吸收增加,而骨形成速率未改变。 Zip14mRNA在体内和体外均在正常的破骨细胞中表达,但从Zip14-KO小鼠制备的骨髓巨噬细胞中,NF-κB配体(RANKL)诱导的破骨细胞生成的受体激活剂并未受到损害。这些结果表明,ZIP14通过抑制孔吸收来调节骨稳态,而在Zip14-KO小鼠中,由于消除了这种抑制性调节作用,骨吸收增加了。有必要进行进一步的研究来得出结论,认为Zip14‐KO小鼠的骨吸收增强是由于细胞自主或非细胞自主破骨细胞缺陷引起的。

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