Center for Skeletal Disease Research and Laboratory of Cell Signaling and Carcinogenesis, Van Andel Research Institute, Grand Rapids, MI 49503, USA
Proc Natl Acad Sci U S A. 2012 Aug 14;109(33):E2197-204. doi: 10.1073/pnas.1120407109. Epub 2012 Jun 28.
Recent genome-wide association studies of individuals of Asian and European descent have found that SNPs located within the genomic region (1p31.3) encoding the Wntless (Wls)/Gpr177 protein are associated significantly with reduced bone mineral density. Wls/Gpr177 is a newly identified chaperone protein that specifically escorts Wnt ligands for secretion. Given the strong functional association between the Wnt signaling pathways and bone development and homeostasis, we generated osteoblast-specific Wls-deficient (Ocn-Cre;Wls-flox) mice. Homozygous conditional knockout animals were born at a normal Mendelian frequency. Whole-body dual-energy X-ray absorptiometry scanning revealed that bone-mass accrual was significantly inhibited in homozygotes as early as 20 d of age. These homozygotes had spontaneous fractures and a high frequency of premature lethality at around 2 mo of age. Microcomputed tomography analysis and histomorphometric data revealed a dramatic reduction of both trabecular and cortical bone mass in homozygous mutants. Bone formation in homozygotes was severely impaired, but no obvious phenotypic change was observed in mice heterozygous for the conditional deletion. In vitro studies showed that Wls-deficient osteoblasts had a defect in differentiation and mineralization, with significant reductions in the expression of key osteoblast differentiation regulators. In summary, these results reveal a surprising and crucial role of osteoblast-secreted Wnt ligands in bone-mass accrual.
最近对亚洲和欧洲血统个体的全基因组关联研究发现,位于编码 Wntless(Wls)/Gpr177 蛋白的基因组区域(1p31.3)内的 SNPs 与骨矿物质密度降低显著相关。Wls/Gpr177 是一种新鉴定的伴侣蛋白,专门护送 Wnt 配体进行分泌。鉴于 Wnt 信号通路与骨骼发育和稳态之间的强烈功能关联,我们生成了成骨细胞特异性 Wls 缺陷(Ocn-Cre;Wls-flox)小鼠。纯合条件性敲除动物以正常的孟德尔频率出生。全身双能 X 射线吸收法扫描显示,早在 20 日龄时,纯合子的骨量积累就明显受到抑制。这些纯合子自发骨折,约 2 月龄时的早期死亡率很高。微计算机断层扫描分析和组织形态计量数据显示,纯合突变体的小梁骨和皮质骨量均显著减少。纯合子的骨形成严重受损,但杂合子条件缺失的小鼠没有明显的表型变化。体外研究表明,Wls 缺陷的成骨细胞在分化和矿化方面存在缺陷,关键成骨细胞分化调节剂的表达显著减少。总之,这些结果揭示了成骨细胞分泌的 Wnt 配体在骨量积累中的惊人而关键作用。