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牙本质基质蛋白-1对羟基磷灰石形成的体外作用为其体内功能提供了见解。

In vitro effects of dentin matrix protein-1 on hydroxyapatite formation provide insights into in vivo functions.

作者信息

Tartaix Philippe H, Doulaverakis Marie, George Anne, Fisher Larry W, Butler William T, Qin Chunlin, Salih Erdjan, Tan Melin, Fujimoto Yukiji, Spevak Lyudmila, Boskey Adele L

机构信息

Columbia University School of Dental and Oral Surgery, New York, New York 10032, USA.

出版信息

J Biol Chem. 2004 Apr 30;279(18):18115-20. doi: 10.1074/jbc.M314114200. Epub 2004 Feb 9.

Abstract

Dentin matrix protein-1 (DMP1) is a mineralized tissue matrix protein synthesized by osteoblasts, hypertrophic chondrocytes, and ameloblasts as well as odontoblasts. DMP1 is believed to have multiple in vivo functions, acting both as a signaling molecule and a regulator of biomineralization. Using a cell-free system in vitro, we evaluated the action of DMP1 in the regulation of hydroxylapatite (HA) formation and crystal growth. The non-phosphorylated recombinant protein acted as an HA nucleator, increasing the amount of mineral formed in a gelatin gel HA growth system relative to protein-free controls. The recombinant protein phosphorylated in vitro had no detectable effect on HA formation and growth. In contrast, phosphorylated bovine DMP1 expressed in marrow stromal cells with an adenovirus vector containing 29.7 phosphates/mol was an effective inhibitor of HA formation and growth. The native full-length protein appeared to be absent or present in only small amounts in the extracellular matrix of bones and teeth. However, two highly phosphorylated fragments representing the N- and C-terminal portions of DMP1 have been identified, apparently arising from proteolytic cleavage of four X-Asp bonds. The highly phosphorylated C-terminal 57-kDa fragment (containing 42 phosphates/mol), like the non-phosphorylated DMP1, was an HA nucleator. These data suggest that, in its native form, DMP1 inhibits mineralization, but when cleaved or dephosphorylated, it initiates mineralization. These in vitro data are consistent with the findings in the DMP1 knockout mouse.

摘要

牙本质基质蛋白-1(DMP1)是一种由成骨细胞、肥大软骨细胞、成釉细胞以及成牙本质细胞合成的矿化组织基质蛋白。DMP1被认为具有多种体内功能,既作为信号分子又作为生物矿化的调节剂。利用体外无细胞系统,我们评估了DMP1在调节羟基磷灰石(HA)形成和晶体生长中的作用。非磷酸化的重组蛋白作为HA成核剂,相对于无蛋白对照,增加了明胶凝胶HA生长系统中形成的矿物质数量。体外磷酸化的重组蛋白对HA的形成和生长没有可检测到的影响。相比之下,用含有29.7个磷酸盐/摩尔的腺病毒载体在骨髓基质细胞中表达的磷酸化牛DMP1是HA形成和生长的有效抑制剂。天然全长蛋白似乎在骨骼和牙齿的细胞外基质中不存在或仅少量存在。然而,已经鉴定出代表DMP1 N端和C端部分的两个高度磷酸化的片段,显然是由四个X-天冬氨酸键的蛋白水解切割产生的。高度磷酸化的C端57-kDa片段(含有42个磷酸盐/摩尔),与非磷酸化的DMP1一样,是一种HA成核剂。这些数据表明,DMP1以其天然形式抑制矿化,但当被切割或去磷酸化时,它启动矿化。这些体外数据与DMP1基因敲除小鼠的研究结果一致。

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