G protein-coupled receptors (GPCRs) coupled to activation of Gs, such as the PTH1 receptor (PTH1R), have long been known to regulate skeletal function and homeostasis. However, the role of GPCRs coupled to other G proteins such as Gi is not well established. We used the tet-off system to regulate the expression of an activated Gi-coupled GPCR (Ro1) in osteoblasts in vivo. Skeletal phenotypes were assessed in mice expressing Ro1 from conception, from late stages of embryogenesis, and after weaning. Long bones were assessed histologically and by microcomputed tomography. Expression of Ro1 from conception resulted in neonatal lethality that was associated with reduced bone mineralization. Expression of Ro1 starting at late embryogenesis resulted in a severe trabecular bone deficit at 12 wk of age (>51% reduction in trabecular bone volume fraction in the proximal tibia compared with sex-matched control littermates; n = 11; P < 0.01). Ro1 expression for 8 wk beginning at 4 wk of age resulted in a more than 20% reduction in trabecular bone volume fraction compared with sex-matched control littermates (n = 16; P < 0.01). Bone histomorphometry revealed that Ro1 expression is associated with reduced rates of bone formation and mineral apposition without a significant change in osteoblast or osteoclast surface. Our results indicate that signaling by a Gi-coupled GPCR in osteoblasts leads to osteopenia resulting from a reduction in trabecular bone formation. The severity of the phenotype is related to the timing and duration of Ro1 expression during growth and development. The skeletal phenotype in Ro1 mice bears some similarity to that produced by knockout of Gs-alpha expression in osteoblasts and thus may be due at least in part to Gi-mediated inhibition of adenylyl cyclase.

译文

长期以来,已知与Gs激活偶联的:G蛋白偶联受体(GPCR)可调节骨骼功能和体内平衡。但是,与其他G蛋白(例如Gi)偶联的GPCR的作用尚不明确。我们使用tet-off系统来调节体内成骨细胞中激活的Gi偶联GPCR(Ro1)的表达。从受孕,胚胎发生的后期以及断奶后评估表达Ro1的小鼠的骨骼表型。通过组织学和微计算机断层扫描对长骨进行评估。从受孕中表达Ro1会导致新生儿致死性,这与减少的骨矿化有关。 Ro1的表达始于胚胎晚期,导致在12周龄时出现严重的小梁骨缺损(胫骨近端的小梁骨体积分数与性别匹配的对照同窝仔相比减少了51%以上; n = 11; P <0.01)。与性别匹配的对照同窝仔相比,从4周龄开始的8周Ro1表达导致小梁骨体积分数减少了20%以上(n = 16; P <0.01)。骨组织形态计量学表明,Ro1表达与成骨率和矿物质沉积率降低相关,而成骨细胞或破骨细胞表面无明显变化。我们的结果表明,成骨细胞中通过Gi偶联GPCR进行的信号传导导致骨小梁减少,其原因是小梁骨形成减少。表型的严重性与Ro1表达在生长发育过程中的时机和持续时间有关。 Ro1小鼠的骨骼表型与成骨细胞中Gs-α表达的敲除产生的相似,因此可能至少部分是由于Gi介导的对腺苷酸环化酶的抑制。

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