Nomura S, Sakuma T, Higashibata Y, Oboki K, Sato M
Department of Pathology, Osaka University Medical School, Suita, Japan.
J Bone Miner Metab. 2001;19(3):183-7. doi: 10.1007/s007740170040.
Severe osteopetrosis was observed in mi/mi mutant mice. However, the bone of VGA9/VGA9 mutant mice, in which Mi gene expression is undetectable, showed normal histology. No osteopetrosis was found in mi/+ mice, but was observed in VGA9/mi mice. Biochemical analysis revealed that the gene product encoded with the mi mutant allele (mi-Mi) has impaired DNA binding activity and nuclear translocation ability. Furthermore, inhibitory effects of mi-Mi were shown not only on the DNA binding activity of wild-type Mi, but also on the nuclear translocation ability of Mi, PU.1 and cFOS. The present results suggest the presence of a target gene for Mi that is essential for the proliferation/differentiation of osteoclasts.
在mi/mi突变小鼠中观察到严重的骨质石化。然而,在Mi基因表达检测不到的VGA9/VGA9突变小鼠的骨骼中,组织学表现正常。在mi/+小鼠中未发现骨质石化,但在VGA9/mi小鼠中观察到了骨质石化。生化分析表明,由mi突变等位基因编码的基因产物(mi-Mi)的DNA结合活性和核转位能力受损。此外,mi-Mi不仅对野生型Mi的DNA结合活性有抑制作用,对Mi、PU.1和cFOS的核转位能力也有抑制作用。目前的结果表明存在一个Mi的靶基因,它对破骨细胞的增殖/分化至关重要。