骨保护素(Opg)基因敲除小鼠发生高转换型骨质疏松和动脉钙化
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国家高技术研究发展计划项目(2001AA216081, 2004AA216081), 国家自然基金杰出青年科学家基金(39925023), 国家教育部基金项目(00TPJS111), 上海市科技发展基金项目(99JC14029, 99XD14005), 上海市教育局E-研究院(E03003)资助.


High-bone-turnover Osteoporosis and Aortic Calcification in Opg Knockout Mice
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This work was supported by grants from The Hi-Tech Research and Development Program of China (2001AA216081, 2004AA216081), The National Natural Science Foundation of China for Outstanding Young Scientists (39925023), Ministry of Education (00TPJS111) of China, Science and Technology Commission (99JC14029, 99XD14005), E-Institutes of Shanghai Municipal Education Commission (E03003).

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    摘要:

    骨质疏松以及动脉钙化均是危害极大的临床常见病变,骨保护素 (OPG) 可能是联系两者的分子之一. 构建替换型载体pXpPNT-OPG,利用同源重组,将编码前3个蛋白质结构域的小鼠Opg基因组第二外显子序列剔除掉. 通过胚胎干细胞 (ES) 基因打靶获得了正确重组的ES细胞克隆,ES细胞显微注射后获得嵌合体小鼠,交配传代获得杂合子和纯合子小鼠. RT-PCR和蛋白质印迹实验结果显示,纯合子小鼠没有Opg基因的表达. 纯合子小鼠骨量丢失明显,骨生物力学指标明显下降,发生严重的骨质疏松,此外,还有50%以上的纯合子小鼠在早期出现动脉中层钙化. 小鼠破骨功能亢进,与此同时,成熟成骨细胞数量增加,矿化功能强于野生型. Opg基因缺失小鼠骨中钙和磷大量流失,而血清中水平没有变化,这提示钙磷代谢异常不是OPG缺失导致动脉钙化的原因. 对建立的Opg基因敲除小鼠模型进一步深入的研究,将有助于说明动脉钙化和骨质疏松症相互联系的分子机制,为防治骨质疏松症和动脉钙化的并发提供理论基础支持.

    Abstract:

    Bone turnover is regulated by local concentrations of cytokines such as osteoprotegerin (OPG) and receptor activator of nuclear factor kappaB ligand (RANKL). To explore the in vivo biological function of Opg and the mechanism of osteoporosis due to deficiency of Opg, Opg knockout mice have been generated through homologous recombination. Opg-/- mice exhibit a sharply decrease in bone density and strength as expected. The number of osteoclasts in Opg-/- mice significantly increases. Morphologically, osteoclasts appear more cuboidal in shape in Opg-/- mice than those of wt mice, suggesting that active osteoclastogenesis occurs in the absence of Opg. In consistent with this finding, an increase of osteoblast activity was also observed with accelerated mineral accumulation rate by histomorphometric measurement and elevated serum alkaline phosphatase activity (ALP) in Opg-/- mice. Interestingly, more than 50% of 2-month-old Opg-/- mice manifest medial calcification of aorta with comparable serum concentrations of calcium and phosphorus to wt mice. In conclusion, Opg-/- mice have a high-bone-turnover type osteoporosis. The aortic calcification in Opg-/- mice is not due to abnormality of calcium and phosphorus metabolism. The mechanism underlying aortic calcification in Opg-/- mice needs to be further investigated.

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许勇,杨 桦,乔建瓯,李西华,严兰珍,王 龙,徐国江,费 俭,傅继粱,王铸钢.骨保护素(Opg)基因敲除小鼠发生高转换型骨质疏松和动脉钙化[J].生物化学与生物物理进展,2007,34(3):260-266

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  • 收稿日期:2006-08-11
  • 最后修改日期:2007-01-10
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  • 在线发布日期: 2007-02-06
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