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牙本质磷蛋白的转基因表达抑制骨骼发育。

Transgenic expression of dentin phosphoprotein inhibits skeletal development.

作者信息

Zhang H, Liu P, Wang S, Liu C, Jani P, Lu Y, Qin C

机构信息

Texas A&M University, Baylor College of Dentistry.

出版信息

Eur J Histochem. 2016 Mar 11;60(1):2587. doi: 10.4081/ejh.2016.2587.

Abstract

Dentin sialophosphoprotein (DSPP) is proteolytically processed into an NH2-terminal fragment called dentin sialoprotein (DSP) and a COOH-terminal fragment known as dentin phosphoprotein (DPP). These two fragments are believed to perform distinct roles in formation of bone and dentin. To investigate the functions of DPP in skeletal development, we generated transgenic mice to overexpress hemagglutinin (HA)-tagged DPP under the control of a 3.6 kb type I collagen (Col1a1) promoter (designated as Col1a1-HA-DPP). The Col1a1-HA-DPP transgenic mice were significantly smaller by weight, had smaller skeletons and shorter long bones than their wild type littermates, as demonstrated by X-ray radiography. They displayed reduced trabecular bone formation and narrower zones of proliferative and hypertrophic chondrocytes in the growth plates of the long bones. Histological analyses showed that the transgenic mice had reduced cell proliferation in the proliferating zone, but lacked obvious defects in the chondrocyte differentiation. In addition, the transgenic mice with a high level of transgene expression developed spontaneous long bone fractures. In conclusion, overexpressing DPP inhibited skeletal development, suggesting that the balanced actions between the NH2- and COOH-terminal fragments of DSPP may be required for normal skeletal development.

摘要

牙本质涎磷蛋白(DSPP)经蛋白水解加工后形成一个名为牙本质涎蛋白(DSP)的氨基末端片段和一个称为牙本质磷蛋白(DPP)的羧基末端片段。据信这两个片段在骨和牙本质形成中发挥着不同的作用。为了研究DPP在骨骼发育中的功能,我们构建了转基因小鼠,使其在3.6 kb的I型胶原(Col1a1)启动子的控制下过表达血凝素(HA)标记的DPP(命名为Col1a1-HA-DPP)。X射线影像学显示,Col1a1-HA-DPP转基因小鼠的体重明显更轻,骨骼更小,长骨更短,与它们的野生型同窝小鼠相比。它们在长骨生长板中的小梁骨形成减少,增殖性和肥大性软骨细胞区变窄。组织学分析表明,转基因小鼠在增殖区的细胞增殖减少,但软骨细胞分化没有明显缺陷。此外,转基因表达水平高的转基因小鼠出现自发性长骨骨折。总之,过表达DPP会抑制骨骼发育,这表明DSPP的氨基末端和羧基末端片段之间的平衡作用可能是正常骨骼发育所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c37/4800252/e1ca0a3144da/ejh-2016-1-2587-g001.jpg

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