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在进行性骨化性纤维发育不良中发现的ACVR1 R206H突变通过BMP介导的SMAD1/5/8信号通路增加人诱导多能干细胞衍生的内皮细胞形成和胶原蛋白生成。

The ACVR1 R206H mutation found in fibrodysplasia ossificans progressiva increases human induced pluripotent stem cell-derived endothelial cell formation and collagen production through BMP-mediated SMAD1/5/8 signaling.

作者信息

Barruet Emilie, Morales Blanca M, Lwin Wint, White Mark P, Theodoris Christina V, Kim Hannah, Urrutia Ashley, Wong Sarah Anne, Srivastava Deepak, Hsiao Edward C

机构信息

Institute for Human Genetics and the Division of Endocrinology and Metabolism, University of California, 513 Parnassus Avenue, HSE901G, San Francisco, CA, 94143-0794, USA.

Gladstone Institute of Cardiovascular Disease, 1650 Owens Street, San Francisco, CA, 94158, USA.

出版信息

Stem Cell Res Ther. 2016 Aug 17;7(1):115. doi: 10.1186/s13287-016-0372-6.

Abstract

BACKGROUND

The Activin A and bone morphogenetic protein (BMP) pathways are critical regulators of the immune system and of bone formation. Inappropriate activation of these pathways, as in conditions of congenital heterotopic ossification, are thought to activate an osteogenic program in endothelial cells. However, if and how this occurs in human endothelial cells remains unclear.

METHODS

We used a new directed differentiation protocol to create human induced pluripotent stem cell (hiPSC)-derived endothelial cells (iECs) from patients with fibrodysplasia ossificans progressiva (FOP), a congenital disease of heterotopic ossification caused by an activating R206H mutation in the Activin A type I receptor (ACVR1). This strategy allowed the direct assay of the cell-autonomous effects of ACVR1 R206H in the endogenous locus without the use of transgenic expression. These cells were challenged with BMP or Activin A ligand, and tested for their ability to activate osteogenesis, extracellular matrix production, and differential downstream signaling in the BMP/Activin A pathways.

RESULTS

We found that FOP iECs could form in conditions with low or absent BMP4. These conditions are not normally permissive in control cells. FOP iECs cultured in mineralization media showed increased alkaline phosphatase staining, suggesting formation of immature osteoblasts, but failed to show mature osteoblastic features. However, FOP iECs expressed more fibroblastic genes and Collagen 1/2 compared to control iECs, suggesting a mechanism for the tissue fibrosis seen in early heterotopic lesions. Finally, FOP iECs showed increased SMAD1/5/8 signaling upon BMP4 stimulation. Contrary to FOP hiPSCs, FOP iECs did not show a significant increase in SMAD1/5/8 phosphorylation upon Activin A stimulation, suggesting that the ACVR1 R206H mutation has a cell type-specific effect. In addition, we found that the expression of ACVR1 and type II receptors were different in hiPSCs and iECs, which could explain the cell type-specific SMAD signaling.

CONCLUSIONS

Our results suggest that the ACVR1 R206H mutation may not directly increase the formation of mature chondrogenic or osteogenic cells by FOP iECs. Our results also show that BMP can induce endothelial cell dysfunction, increase expression of fibrogenic matrix proteins, and cause differential downstream signaling of the ACVR1 R206H mutation. This iPSC model provides new insight into how human endothelial cells may contribute to the pathogenesis of heterotopic ossification.

摘要

背景

激活素A和骨形态发生蛋白(BMP)信号通路是免疫系统和骨形成的关键调节因子。在先天性异位骨化等情况下,这些信号通路的不适当激活被认为会在内皮细胞中激活成骨程序。然而,这在人类内皮细胞中是否以及如何发生仍不清楚。

方法

我们使用一种新的定向分化方案,从进行性骨化性纤维发育不良(FOP)患者中创建人诱导多能干细胞(hiPSC)来源的内皮细胞(iECs),FOP是一种先天性异位骨化疾病,由激活素A I型受体(ACVR1)中的R206H激活突变引起。该策略允许直接检测ACVR1 R206H在内源基因座上的细胞自主效应,而无需使用转基因表达。用BMP或激活素A配体刺激这些细胞,并测试它们激活成骨、细胞外基质产生以及BMP/激活素A信号通路中不同下游信号的能力。

结果

我们发现FOP iECs可以在低BMP4或无BMP4的条件下形成。这些条件在对照细胞中通常是不允许的。在矿化培养基中培养的FOP iECs碱性磷酸酶染色增加,表明形成了未成熟的成骨细胞,但未显示出成熟的成骨细胞特征。然而,与对照iECs相比,FOP iECs表达更多的成纤维细胞基因和胶原蛋白1/2,这表明早期异位病变中出现组织纤维化的一种机制。最后,FOP iECs在BMP4刺激下显示SMAD1/5/8信号增加。与FOP hiPSC相反,FOP iECs在激活素A刺激下SMAD1/5/8磷酸化没有显著增加,这表明ACVR1 R206H突变具有细胞类型特异性效应。此外,我们发现hiPSC和iECs中ACVR1和II型受体的表达不同,这可以解释细胞类型特异性的SMAD信号。

结论

我们的结果表明,ACVR1 R206H突变可能不会直接增加FOP iECs形成成熟软骨细胞或成骨细胞。我们的结果还表明,BMP可以诱导内皮细胞功能障碍,增加纤维生成基质蛋白的表达,并导致ACVR1 R206H突变的不同下游信号。这个iPSC模型为人类内皮细胞如何参与异位骨化的发病机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4de1/4988052/2eb981dd05fc/13287_2016_372_Fig1_HTML.jpg

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