Kumei Yasuhiro, Morita Sadao, Nakamura Hiroshi, Katano Hisako, Ohya Kei'ichi, Shimokawa Hitoyata, Sams Clarence F, Whitson Peggy A
Department of Hard Tissue Engineering, Graduate School of Tokyo Medical and Dental University, Tokyo 113-8549, Japan.
Ann N Y Acad Sci. 2004 Dec;1030:121-4. doi: 10.1196/annals.1329.015.
Rat osteoblasts were cultured aboard a space shuttle for 4 and 5 days. Cells were treated with 1 nM 1alpha,25-dihydroxyvitamin D(3) (VD) for the last 1 day. The conditioned media were harvested. Cells were solubilized with guanidine solution on board. We examined microgravity effects on the production/expression of osteocalcin, bone sialoprotein (BSP), and VD receptor (VD-R) in osteoblasts. Under VD treatment, the osteocalcin protein level was 243 +/- 117 and 1,718 +/- 534 pg/microg cellular DNA in flight cultures and ground controls, respectively. Without VD treatment, the osteocalcin protein level was not different between flight cultures and ground controls. The osteocalcin mRNA level in the VD-treated flight cultures was as low as 16% of that in ground controls. The VD-R mRNA level in the VD-treated flight cultures was also decreased to 16% of that in ground controls. Microgravity would suppress the VD-inducible production of osteocalcin but not the basal productivity. The BSP mRNA level was increased by microgravity. VD/VD-R binds to the vitamin D-responsive element (VDRE) on the target genes. The rat osteocalcin gene is positively regulated via "enhancer" VDRE, whereas the rat BSP gene is negatively regulated via "repressor " VDRE. Microgravity might modulate osteoblast responsiveness to VD through the suppression of VD-R.
将大鼠成骨细胞搭载在航天飞机上培养4天和5天。在最后1天用1 nM 1α,25 - 二羟基维生素D(3)(VD)处理细胞。收集条件培养基。细胞在航天飞机上用胍溶液溶解。我们研究了微重力对成骨细胞中骨钙素、骨唾液蛋白(BSP)和VD受体(VD - R)产生/表达的影响。在VD处理下,飞行培养物和地面对照中骨钙素蛋白水平分别为243±117和1718±534 pg/μg细胞DNA。未进行VD处理时,飞行培养物和地面对照之间的骨钙素蛋白水平没有差异。VD处理的飞行培养物中骨钙素mRNA水平低至地面对照的16%。VD处理的飞行培养物中VD - R mRNA水平也降至地面对照的16%。微重力会抑制VD诱导的骨钙素产生,但不影响基础产量。微重力使BSP mRNA水平升高。VD/VD - R与靶基因上的维生素D反应元件(VDRE)结合。大鼠骨钙素基因通过“增强子”VDRE受到正调控,而大鼠BSP基因通过“抑制子”VDRE受到负调控。微重力可能通过抑制VD - R来调节成骨细胞对VD的反应性。