Department of Anatomy, Cell Biology, and Physiology, Indiana University School of Medicine, Indianapolis, IN, USA.
Division of Biomedical and Applied Sciences, Indiana University School of Dentistry, Indianapolis, IN, USA.
J Bone Miner Res. 2021 Dec;36(12):2413-2425. doi: 10.1002/jbmr.4411. Epub 2021 Jul 23.
Wnt signaling plays a vital role in the cell biology of skeletal patterning, differentiation, and maintenance. Notum is a secreted member of the α/β-hydrolase superfamily that hydrolyzes the palmitoleoylate modification on Wnt proteins, thereby disrupting Wnt signaling. As a secreted inhibitor of Wnt, Notum presents an attractive molecular target for improving skeletal health. To determine the cell type of action for Notum's effect on the skeleton, we generated mice with Notum deficiency globally (Notum ) and selectively (Notum ) in limb bud mesenchyme (Prx1-Cre) and late osteoblasts/osteocytes (Dmp1-Cre). Late-stage deletion induced increased cortical bone properties, similar to global mutants. Notum expression was enhanced in response to sclerostin inhibition, so dual inhibition (Notum/sclerostin) was also investigated using a combined genetic and pharmacologic approach. Co-suppression increased cortical properties beyond either factor alone. Notum suppressed Wnt signaling in cell reporter assays, but surprisingly also enhanced Shh signaling independent of effects on Wnt. Notum is an osteocyte-active suppressor of cortical bone formation that is likely involved in multiple signaling pathways important for bone homeostasis © 2021 American Society for Bone and Mineral Research (ASBMR).
Wnt 信号在骨骼形态发生、分化和维持的细胞生物学中起着至关重要的作用。Notum 是 α/β-水解酶超家族的一种分泌成员,它水解 Wnt 蛋白上的棕榈油酸修饰,从而破坏 Wnt 信号。作为 Wnt 的一种分泌抑制剂,Notum 为改善骨骼健康提供了一个有吸引力的分子靶点。为了确定 Notum 对骨骼的作用的细胞类型,我们在全局(Notum )和肢芽间质(Prx1-Cre)及晚期成骨细胞/破骨细胞(Dmp1-Cre)中(Notum )选择性地生成了 Notum 缺失的小鼠。晚期缺失诱导皮质骨特性增加,类似于全局突变体。Notum 的表达在骨硬化蛋白抑制后增强,因此还使用联合遗传和药理学方法研究了双重抑制(Notum/骨硬化蛋白)。共同抑制作用使皮质特性增加超过任何单一因素。Notum 在细胞报告实验中抑制了 Wnt 信号,但令人惊讶的是,它还增强了 Shh 信号,而不影响 Wnt。Notum 是一种破骨细胞活性的皮质骨形成抑制剂,可能参与多个对骨稳态很重要的信号通路。