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胚胎成骨细胞 Smad4 的缺失会中断对经典 Wnt 信号的基质合成反应,并导致类成骨不全表型。

Embryonic ablation of osteoblast Smad4 interrupts matrix synthesis in response to canonical Wnt signaling and causes an osteogenesis-imperfecta-like phenotype.

机构信息

Washington University School of Medicine, Division of Bone and Mineral Disease, Departments of Internal Medicine and Cell Biology and Physiology, 660 South Euclid, Campus Box 8301, Saint Louis, MO 63110, USA.

出版信息

J Cell Sci. 2013 Nov 1;126(Pt 21):4974-84. doi: 10.1242/jcs.131953. Epub 2013 Sep 4.

Abstract

To examine interactions between bone morphogenic protein (BMP) and canonical Wnt signaling during skeletal growth, we ablated Smad4, a key component of the TGF-β-BMP pathway, in Osx1(+) cells in mice. We show that loss of Smad4 causes stunted growth, spontaneous fractures and a combination of features seen in osteogenesis imperfecta, cleidocranial dysplasia and Wnt-deficiency syndromes. Bones of Smad4 mutant mice exhibited markers of fully differentiated osteoblasts but lacked multiple collagen-processing enzymes, including lysyl oxidase (Lox), a BMP2-responsive gene regulated by Smad4 and Runx2. Accordingly, the collagen matrix in Smad4 mutants was disorganized, but also hypomineralized. Primary osteoblasts from these mutants did not mineralize in vitro in the presence of BMP2 or Wnt3a, and Smad4 mutant mice failed to accrue new bone following systemic inhibition of the Dickkopf homolog Dkk1. Consistent with impaired biological responses to canonical Wnt, ablation of Smad4 causes cleavage of β-catenin and depletion of the low density lipoprotein receptor Lrp5, subsequent to increased caspase-3 activity and apoptosis. In summary, Smad4 regulates maturation of skeletal collagen and osteoblast survival, and is required for matrix-forming responses to both BMP2 and canonical Wnt.

摘要

为了研究骨形态发生蛋白(BMP)和经典 Wnt 信号在骨骼生长过程中的相互作用,我们在小鼠的 Osx1(+)细胞中敲除了 TGF-β-BMP 途径的关键组成部分 Smad4。我们发现 Smad4 的缺失会导致生长迟缓、自发性骨折以及成骨不全症、颅锁骨发育不全症和 Wnt 缺陷综合征中所见的多种特征的组合。Smad4 突变小鼠的骨骼表现出完全分化的成骨细胞的标志物,但缺乏多种胶原加工酶,包括赖氨酰氧化酶(Lox),这是一种受 Smad4 和 Runx2 调节的 BMP2 反应基因。因此,Smad4 突变体中的胶原基质结构紊乱,但也矿化不足。这些突变体的原代成骨细胞在存在 BMP2 或 Wnt3a 的情况下无法在体外矿化,并且 Smad4 突变小鼠在系统抑制 Dickkopf 同源物 Dkk1 后未能积累新骨。与经典 Wnt 的生物反应受损一致,Smad4 的缺失会导致 β-连环蛋白的切割和低密度脂蛋白受体 Lrp5 的耗竭,随后 caspase-3 活性增加和细胞凋亡。总之,Smad4 调节骨骼胶原的成熟和成骨细胞的存活,并且是对 BMP2 和经典 Wnt 的基质形成反应所必需的。

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