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维生素D受体/视黄酸X受体γ双基因敲除小鼠生长板发育异常。

Aberrant growth plate development in VDR/RXR gamma double null mutant mice.

作者信息

Yagishita N, Yamamoto Y, Yoshizawa T, Sekine K, Uematsu Y, Murayama H, Nagai Y, Krezel W, Chambon P, Matsumoto T, Kato S

机构信息

Institute of Molecular and Cellular Biosciences, University of Tokyo, Yayoi, Bunkyo-ku, Tokyo 113-0032, Japan.

出版信息

Endocrinology. 2001 Dec;142(12):5332-41. doi: 10.1210/endo.142.12.8544.

Abstract

VDR forms heterodimers with one of three RXRs, RXR alpha, RXR beta, and RXR gamma, and it is thought that RXR ligands can also modulate the trans-activation function of VDR/RXR heterodimers. In the present study we generated VDR/RXR gamma double null mutant mice to examine the convergent actions of vitamin D and vitamin A signaling and to explore the possibility of a functionally redundant VDR. Although RXR gamma(-/-) mice exhibited no overt abnormalities, VDR(-/-)/RXR gamma(-/-) mice appeared similar to VDR(-/-) mice, showing features typical of vitamin D-dependent rickets type II, including growth retardation, impaired bone formation, hypocalcemia, and alopecia. However, compared to VDR(-/-) mice, growth plate development in VDR(-/-)/RXR gamma(-/-) mutant mice was more severely impaired. Normalizing mineral ion homeostasis through dietary supplementation with high calcium and phosphorous effectively prevented rachitic abnormalities, except for disarranged growth plates in VDR(-/-)/RXR gamma(-/-) mutant mice, and alopecia in both VDR(-/-) and VDR(-/-)/RXR gamma(-/-) mutant mice. Histological analysis of VDR(-/-)/RXR gamma(-/-) growth plates revealed that development of the hypertrophic chondrocytes was selectively impaired. Thus, our findings indicated that the combined actions of VDR- and RXR gamma-mediated signals are essential for the normal development of growth plate chondrocytes, and raised the possibility that a functionally redundant VDR is present on chondrocytes as a heterodimer with RXR gamma.

摘要

维生素D受体(VDR)与三种视黄酸X受体(RXR)之一,即RXRα、RXRβ和RXRγ形成异源二聚体,据认为RXR配体也可调节VDR/RXR异源二聚体的反式激活功能。在本研究中,我们构建了VDR/RXRγ双敲除突变小鼠,以研究维生素D和维生素A信号的协同作用,并探索是否存在功能冗余的VDR。尽管RXRγ(-/-)小鼠未表现出明显异常,但VDR(-/-)/RXRγ(-/-)小鼠与VDR(-/-)小鼠相似,表现出典型的II型维生素D依赖性佝偻病特征,包括生长迟缓、骨形成受损、低钙血症和脱发。然而,与VDR(-/-)小鼠相比,VDR(-/-)/RXRγ(-/-)突变小鼠的生长板发育受损更严重。通过高钙和高磷饮食补充使矿物质离子稳态正常化,有效预防了佝偻病异常,但VDR(-/-)/RXRγ(-/-)突变小鼠的生长板排列紊乱以及VDR(-/-)和VDR(-/-)/RXRγ(-/-)突变小鼠的脱发除外。对VDR(-/-)/RXRγ(-/-)生长板的组织学分析显示,肥大软骨细胞的发育受到选择性损害。因此,我们的研究结果表明,VDR和RXRγ介导的信号的联合作用对于生长板软骨细胞的正常发育至关重要,并增加了软骨细胞上存在与RXRγ形成异源二聚体的功能冗余VDR的可能性。

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