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Cbfb2亚型比更具活性的Cbfb1占主导地位,且是骨骼发育所必需的。

Cbfb2 Isoform Dominates More Potent Cbfb1 and Is Required for Skeletal Development.

作者信息

Jiang Qing, Qin Xin, Kawane Tetsuya, Komori Hisato, Matsuo Yuki, Taniuchi Ichiro, Ito Kosei, Izumi Shin-Ichi, Komori Toshihisa

机构信息

Department of Cell Biology, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki, Japan.

Laboratory for Transcriptional Regulation, RIKEN Research Center for Allergy and Immunology, Yokohama, Japan.

出版信息

J Bone Miner Res. 2016 Jul;31(7):1391-404. doi: 10.1002/jbmr.2814.

Abstract

Cbfb is a cotranscription factor that forms a heterodimer with Runx proteins Runx1, Runx2, and Runx3. It is required for fetal liver hematopoiesis and skeletal development. Cbfb has two functional isoforms, Cbfb1 and Cbfb2, which are formed by alternative splicing. To address the biological functions of these isoforms in skeletal development, we examined Cbfb1(-/-) and Cbfb2(-/-) mouse embryos. Intramembranous and endochondral ossification was retarded and chondrocyte and osteoblast differentiation was inhibited in Cbfb2(-/-) embryos but not in Cbfb1(-/-) embryos. Cbfb2 mRNA was upregulated in calvariae, limbs, livers, thymuses, and hearts of Cbfb1(-/-) embryos but Cbfb1 mRNA was not in those of Cbfb2(-/-) embryos, and the total amount of Cbfb1 and Cbfb2 mRNA in Cbfb1(-/-) embryos was similar to that in wild-type embryos but was severely reduced in Cbfb2(-/-) embryos. The absolute numbers of Cbfb2 mRNA in calvariae, limbs, livers, thymuses, and brains in wild-type embryos were about three times higher than those of Cbfb1 in the respective tissue. The levels of Runx proteins were reduced in calvariae, limbs, and primary osteoblasts from Cbfb2(-/-) embryos, but the reduction in Runx2 protein was very mild. Furthermore, the amounts of Runx proteins and Cbfb in Cbfb2(-/-) embryos differed similarly among skeletal tissues, livers, and thymuses, suggesting that Runx proteins and Cbfb are mutually required for their stability. Although Cbfb1(-/-) embryos developed normally, Cbfb1 induced chondrocyte and osteoblast differentiation and enhanced DNA binding of Runx2 more efficiently than Cbfb2. Our results indicate that modulations in the relative levels of the isoforms may adjust transcriptional activation by Runx2 to appropriate physiological levels. Cbfb2 was more abundant, but Cbfb1 was more potent for enhancing Runx2 activity. Although only Cbfb2 loss generated overt skeletal phenotypes, both may play major roles in skeletal development with functional redundancy. © 2016 American Society for Bone and Mineral Research.

摘要

Cbfb是一种共转录因子,它与Runx蛋白Runx1、Runx2和Runx3形成异二聚体。它是胎儿肝脏造血和骨骼发育所必需的。Cbfb有两种功能异构体,Cbfb1和Cbfb2,它们通过可变剪接形成。为了研究这些异构体在骨骼发育中的生物学功能,我们检查了Cbfb1(-/-)和Cbfb2(-/-)小鼠胚胎。在Cbfb2(-/-)胚胎中,膜内和软骨内成骨受到阻碍,软骨细胞和成骨细胞分化受到抑制,但在Cbfb1(-/-)胚胎中没有。Cbfb2 mRNA在Cbfb1(-/-)胚胎的颅骨、四肢、肝脏、胸腺和心脏中上调,但Cbfb1 mRNA在Cbfb2(-/-)胚胎中没有上调,并且Cbfb1(-/-)胚胎中Cbfb1和Cbfb2 mRNA的总量与野生型胚胎相似,但在Cbfb2(-/-)胚胎中严重减少。野生型胚胎颅骨、四肢、肝脏、胸腺和大脑中Cbfb2 mRNA的绝对数量分别比相应组织中Cbfb1的数量高约三倍。来自Cbfb2(-/-)胚胎的颅骨、四肢和原代成骨细胞中Runx蛋白的水平降低,但Runx2蛋白的降低非常轻微。此外,Cbfb2(-/-)胚胎中Runx蛋白和Cbfb的数量在骨骼组织、肝脏和胸腺中差异相似,表明Runx蛋白和Cbfb相互需要以维持其稳定性。尽管Cbfb1(-/-)胚胎发育正常,但Cbfb1比Cbfb2更有效地诱导软骨细胞和成骨细胞分化并增强Runx2的DNA结合。我们的结果表明,异构体相对水平的调节可能将Runx2的转录激活调节到适当的生理水平。Cbfb2含量更丰富,但Cbfb1在增强Runx2活性方面更有效。虽然只有Cbfb2缺失产生明显的骨骼表型,但两者可能在骨骼发育中发挥主要作用且具有功能冗余。© 2016美国骨与矿物质研究学会。

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