首页> 美国卫生研究院文献>Biochemistry and Biophysics Reports >The functional co-operativity of tissue-nonspecific alkaline phosphatase (TNAP) and PHOSPHO1 during initiation of skeletal mineralization.
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The functional co-operativity of tissue-nonspecific alkaline phosphatase (TNAP) and PHOSPHO1 during initiation of skeletal mineralization.

机译:骨骼矿化开始期间组织非特异性碱性磷酸酶(TNAP)和PHOSPHO1的功能协同作用。

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摘要

Phosphatases are recognized to have important functions in the initiation of skeletal mineralization. Tissue-nonspecific alkaline phosphatase (TNAP) and PHOSPHO1 are indispensable for bone and cartilage mineralization but their functional relationship in the mineralization process remains unclear. In this study, we have used osteoblast and ex-vivo metatarsal cultures to obtain biochemical evidence for co-operativity and cross-talk between PHOSPHO1 and TNAP in the initiation of mineralization. Clones 14 and 24 of the MC3T3-E1 cell line were used in the initial studies. Clone 14 cells expressed high levels of PHOSPHO1 and low levels of TNAP and in the presence of β-glycerol phosphate (βGP) or phosphocholine (P-Cho) as substrates and they mineralized their matrix strongly. In contrast clone 24 cells expressed high levels of TNAP and low levels of PHOSPHO1 and mineralized their matrix poorly. Lentiviral Phospho1 overexpression in clone 24 cells resulted in higher PHOSPHO1 and TNAP protein expression and increased levels of matrix mineralization. To uncouple the roles of PHOSPHO1 and TNAP in promoting matrix mineralization we used PHOSPHO1 (MLS-0263839) and TNAP (MLS-0038949) specific inhibitors, which individually reduced mineralization levels of Phospho1 overexpressing C24 cells, whereas the simultaneous addition of both inhibitors essentially abolished matrix mineralization (85%; P<0.001). Using metatarsals from E15 mice as a physiological ex vivo model of mineralization, the response to both TNAP and PHOSPHO1 inhibitors appeared to be substrate dependent. Nevertheless, in the presence of βGP, mineralization was reduced by the TNAP inhibitor alone and almost completely eliminated by the co-incubation of both inhibitors. These data suggest critical non-redundant roles for PHOSPHO1 and TNAP during the initiation of osteoblast and chondrocyte mineralization.
机译:磷酸酶被认为在骨骼矿化的起始中具有重要的功能。组织非特异性碱性磷酸酶(TNAP)和PHOSPHO1对于骨骼和软骨矿化是必不可少的,但它们在矿化过程中的功能关系尚不清楚。在这项研究中,我们已经使用成骨细胞和离体meta骨培养物来获得生化证据,证明在成矿作用中PHOSPHO1和TNAP之间的协同作用和串扰。最初的研究使用了MC3T3-E1细胞系的克隆14和24。克隆14细胞表达高水平的PHOSPHO1和低水平的TNAP,并且在存在β-甘油磷酸酯(βGP)或磷酸胆碱(P-Cho)作为底物的情况下,它们强烈地矿化了其基质。相反,克隆的24个细胞表达高水平的TNAP和低水平的PHOSPHO1,并使它们的基质矿化不良。慢病毒Phospho1在克隆24细胞中的过表达导致更高的PHOSPHO1和TNAP蛋白表达以及增加的基质矿化水平。为了消除PHOSPHO1和TNAP在促进基质矿化中的作用,我们使用了PHOSPHO1(MLS-0263839)和TNAP(MLS-0038949)特异性抑制剂,它们分别降低了过表达Phospho1的C24细胞的矿化水平,而同时添加了这两种抑制剂基本上被废除了基质矿化(85%; P <0.001)。使用来自E15小鼠的meta骨作为矿化的生理离体模型,对TNAP和PHOSPHO1抑制剂的反应似乎都依赖于底物。然而,在存在βGP的情况下,仅TNAP抑制剂可减少矿化作用,而两种抑制剂的共同孵育可将矿化作用几乎完全消除。这些数据表明在成骨细胞和软骨细胞矿化的起始过程中,PHOSPHO1和TNAP的关键非冗余作用。

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