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来自Cyp27b1基因敲除小鼠脾细胞培养物中破骨细胞生成改变的证据。

Evidence for altered osteoclastogenesis in splenocyte cultures from Cyp27b1 knockout mice.

作者信息

Reinke Daniel C, Kogawa Masakazu, Barratt Kate R, Morris Howard A, Anderson Paul H, Atkins Gerald J

机构信息

Bone Cell Biology Group, Centre for Orthopaedic & Trauma Research, University of Adelaide, Australia.

School of Pharmacy and Medical Sciences, University of South Australia, Adelaide, SA 5005, Australia.

出版信息

J Steroid Biochem Mol Biol. 2016 Nov;164:353-360. doi: 10.1016/j.jsbmb.2015.11.015. Epub 2015 Nov 27.

Abstract

The association between increased serum 25-hydroxyvitamin D (25D) and reduced osteoclastic bone resorption is well known. Previously, we have demonstrated that mechanism by which this occurs, may include the conversion of 25D to 1,25-dihydroxyvitamin D (1,25D) by osteoclasts, catalysed by the CYP27B1 enzyme. Local 1,25D synthesis in osteoclasts was shown to regulate osteoclastogenesis and moderating resorptive activity. Thus, we hypothesised that osteoclasts differentiated from mice with global deletion of the Cyp27b1 gene (Cyp27b1 KO) would display enhanced resorptive capacity due to the lack of an ameliorating effect of 1,25D. Splenocytes isolated from Cyp27b1 KO mice or their wild-type (WT) littermates between 6 and 8 weeks of age were cultured under osteoclast-forming conditions for up to 14 days. Osteoclast formation was measured by staining for the osteoclast marker tartrate resistant acid phosphatase (TRAP). Bone resorption activity was measured by plating the cells on a bone-like substrate. In Cyp27b1 KO cultures, osteoclastogenesis was reduced, as indicated by fewer TRAP-positive multinucleated cells at all time points measured (p<0.05) when compared to wild-type (WT) levels. However, Cyp27b1 KO osteoclasts demonstrated greater resorption on a per cell basis than their WT counterparts (p<0.03). In addition, the ratio of expression of the pro-apoptotic gene Bax to the pro-survival gene Bcl-2 was decreased in Cyp27b1 KO cultures, implying that these smaller osteoclasts survive longer than WT osteoclasts. Our data indicate abnormal osteoclastogenesis due to the absence of CYP27B1 expression, consistent with the notion that endogenous metabolism of 25D optimises osteoclastogenesis and ameliorates the resulting activity of mature osteoclasts.

摘要

血清25-羟维生素D(25D)水平升高与破骨细胞骨吸收减少之间的关联已广为人知。此前,我们已经证明,这种情况发生的机制可能包括破骨细胞通过CYP27B1酶将25D转化为1,25-二羟维生素D(1,25D)。破骨细胞中局部1,25D的合成被证明可调节破骨细胞生成并调节吸收活性。因此,我们推测,由于缺乏1,25D的改善作用,从Cyp27b1基因全球缺失(Cyp27b1 KO)的小鼠中分化出的破骨细胞将表现出增强的吸收能力。从6至8周龄的Cyp27b1 KO小鼠或其野生型(WT)同窝小鼠中分离出的脾细胞,在破骨细胞形成条件下培养长达14天。通过对破骨细胞标志物抗酒石酸酸性磷酸酶(TRAP)进行染色来测量破骨细胞的形成。通过将细胞接种在类骨基质上来测量骨吸收活性。在Cyp27b1 KO培养物中,破骨细胞生成减少,与野生型(WT)水平相比,在所有测量时间点TRAP阳性多核细胞数量均减少(p<0.05)。然而,Cyp27b1 KO破骨细胞在单个细胞基础上的吸收能力比其WT对应细胞更强(p<0.03)。此外,在Cyp27b1 KO培养物中,促凋亡基因Bax与促生存基因Bcl-2的表达比率降低,这意味着这些较小的破骨细胞比WT破骨细胞存活时间更长。我们的数据表明,由于缺乏CYP27B1表达导致破骨细胞生成异常,这与25D的内源性代谢优化破骨细胞生成并改善成熟破骨细胞的最终活性这一观点一致。

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