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Wnt1 是一种不依赖于 Lrp5 的骨形成性 Wnt 配体。

Wnt1 is an Lrp5-independent bone-anabolic Wnt ligand.

机构信息

Department of Osteology and Biomechanics, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.

Department of Orthodontics, University Medical Center Hamburg-Eppendorf, D 20246 Hamburg, Germany.

出版信息

Sci Transl Med. 2018 Nov 7;10(466). doi: 10.1126/scitranslmed.aau7137.

Abstract

mutations in humans are associated with a new form of osteogenesis imperfecta and with early-onset osteoporosis, suggesting a key role of WNT1 in bone mass regulation. However, the general mode of action and the therapeutic potential of Wnt1 in clinically relevant situations such as aging remain to be established. Here, we report the high prevalence of heterozygous mutations in patients with early-onset osteoporosis. We show that inactivation of Wnt1 in osteoblasts causes severe osteoporosis and spontaneous bone fractures in mice. In contrast, conditional Wnt1 expression in osteoblasts promoted rapid bone mass increase in developing young, adult, and aged mice by rapidly increasing osteoblast numbers and function. Contrary to current mechanistic models, loss of Lrp5, the co-receptor thought to transmit extracellular WNT signals during bone mass regulation, did not reduce the bone-anabolic effect of Wnt1, providing direct evidence that Wnt1 function does not require the LRP5 co-receptor. The identification of Wnt1 as a regulator of bone formation and remodeling provides the basis for development of Wnt1-targeting drugs for the treatment of osteoporosis.

摘要

人类的突变与一种新形式的成骨不全症和早发性骨质疏松症有关,这表明 WNT1 在骨量调节中起着关键作用。然而,Wnt1 在临床上相关情况下(如衰老)的一般作用模式和治疗潜力仍有待确定。在这里,我们报告了早发性骨质疏松症患者中杂合突变的高发生率。我们表明,成骨细胞中 Wnt1 的失活导致小鼠严重的骨质疏松症和自发性骨折。相比之下,成骨细胞中条件性 Wnt1 的表达通过快速增加成骨细胞的数量和功能,促进了发育中的年轻、成年和老年小鼠的快速骨量增加。与当前的机制模型相反,LRP5 的缺失(在骨量调节过程中被认为传递细胞外 WNT 信号的共受体)并没有降低 Wnt1 的骨合成作用,这提供了直接的证据,表明 Wnt1 的功能不需要 LRP5 共受体。Wnt1 作为骨形成和重塑调节剂的鉴定为开发用于治疗骨质疏松症的 Wnt1 靶向药物提供了基础。

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