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PKCδ 对于 Jagged-1 诱导人骨髓间充质干细胞成骨分化是必需的。

PKCδ is required for Jagged-1 induction of human mesenchymal stem cell osteogenic differentiation.

机构信息

Department of Clinical Studies-New Bolton Center, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

Stem Cells. 2013 Jun;31(6):1181-92. doi: 10.1002/stem.1353.

Abstract

JAG1, the gene for the Jagged-1 ligand (Jag1) in the Notch signaling pathway, is variably mutated in Alagille Syndrome (ALGS). ALGS patients have skeletal defects, and additionally JAG1 has been shown to be associated with low bone mass through genome-wide association studies. Plating human osteoblast precursors (human mesenchymal stem cells-hMSCs) on Jag1 is sufficient to induce osteoblast differentiation; however, exposure of mouse MSC (mMSC) to Jag1 actually inhibits osteoblastogenesis. Overexpression of the notch-2 intracellular domain (NICD2) is sufficient to mimic the effect of Jag1 on hMSC osteoblastogenesis, while blocking Notch signaling with a γ-secretase inhibitor or with dominant-negative mastermind inhibits Jag1-induced hMSC osteoblastogenesis. In pursuit of interacting signaling pathways, we discovered that treatment with a protein kinase C δ (PKCδ) inhibitor abrogates Jag1-induced hMSC osteoblastogenesis. Jag1 results in rapid PKCδ nuclear translocation and kinase activation. Furthermore, Jag1 stimulates the physical interaction of PKCδ with NICD. Collectively, these results suggest that Jag1 induces hMSC osteoblast differentiation through canonical Notch signaling and requires concomitant PKCδ signaling. This research also demonstrates potential deficiencies in using mouse models to study ALGS bone abnormalities.

摘要

JAG1 是 Notch 信号通路中 Jagged-1 配体(Jag1)的基因,在 Alagille 综合征(ALGS)中发生可变突变。ALGS 患者有骨骼缺陷,并且通过全基因组关联研究表明,JAG1 与低骨量有关。在 Jag1 上种植人成骨前体细胞(人间充质干细胞-hMSCs)足以诱导成骨细胞分化;然而,Jag1 暴露于小鼠 MSC(mMSC)实际上抑制成骨细胞生成。过表达 Notch-2 细胞内结构域(NICD2)足以模拟 Jag1 对 hMSC 成骨细胞生成的作用,而用 γ-分泌酶抑制剂或显性负性主调控因子阻断 Notch 信号通路可抑制 Jag1 诱导的 hMSC 成骨细胞生成。为了探索相互作用的信号通路,我们发现用蛋白激酶 C δ(PKCδ)抑制剂处理可消除 Jag1 诱导的 hMSC 成骨细胞生成。Jag1 导致 PKCδ 的快速核易位和激酶激活。此外,Jag1 刺激 PKCδ 与 NICD 的物理相互作用。总的来说,这些结果表明 Jag1 通过经典的 Notch 信号诱导 hMSC 成骨细胞分化,并且需要伴随的 PKCδ 信号。这项研究还表明,使用小鼠模型研究 ALGS 骨骼异常存在潜在缺陷。

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