首页> 美国卫生研究院文献>Journal of Bone and Mineral Research >Osteoblast malfunction caused by cell stress response to procollagen misfolding in α2(I)-G610C mouse model of osteogenesis imperfecta
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Osteoblast malfunction caused by cell stress response to procollagen misfolding in α2(I)-G610C mouse model of osteogenesis imperfecta

机译:在成骨不全症的α2(I)-G610C小鼠模型中由细胞压力对胶原蛋白原折叠引起的成骨细胞反应所致

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摘要

Glycine (Gly) substitutions in collagen Gly-X-Y repeats disrupt folding of type I procollagen triple helix and cause severe bone fragility and malformations (osteogenesis imperfecta, aka OI). However, these mutations do not elicit the expected Endoplasmic Reticulum (ER) stress response, in contrast to other protein folding diseases. Thus, it has remained unclear whether cell stress and osteoblast malfunction contribute to the bone pathology caused by Gly substitutions. Here we used a mouse with a Gly610 to cysteine (Cys) substitution in the procollagen α2(I) chain to show that misfolded procollagen accumulation in the ER leads to an unusual form of cell stress, which is neither a conventional unfolded protein response stress nor ER overload. Despite pronounced ER dilation, there is no upregulation of BIP expected in the former and no activation of NFκB signaling expected in the latter. Altered expression of ER chaperones αB crystalline and HSP47, phosphorylation of EIF2α, activation of autophagy, upregulation of general stress response protein CHOP, and osteoblast malfunction reveal some other adaptive response to the ER disruption. We show how this response alters differentiation and function of osteoblasts in culture and in vivo. We demonstrate that bone matrix deposition by cultured osteoblasts is rescued by activation of misfolded procollagen autophagy, suggesting a new therapeutic strategy for OI.
机译:胶原蛋白Gly-X-Y中的甘氨酸(Gly)取代重复破坏了I型前胶原三螺旋的折叠,并导致严重的骨脆性和畸形(成骨不全,又称OI)。但是,与其他蛋白质折叠疾病相反,这些突变不会引起预期的内质网(ER)应激反应。因此,尚不清楚细胞应激和成骨细胞功能障碍是否导致由Gly替代引起的骨病理。在这里,我们使用了在原胶​​原α2(I)链中具有Gly610到半胱氨酸(Cys)取代的小鼠,以显示错误折叠的原胶原在ER中的积累会导致异常的细胞应激,这既不是常规的未展开的蛋白质反应应激,也不是ER过载。尽管有明显的ER扩张,但在前者中没有预期的BIP上调,而在后者中预期没有NFκB信号的激活。 ER伴侣αB晶体和HSP47的表达改变,EIF2α的磷酸化,自噬的激活,一般应激反应蛋白CHOP的上调和成骨细胞功能紊乱揭示了对ER破坏的其他适应性反应。我们展示了这种反应如何改变培养和体内成骨细胞的分化和功能。我们证明,培养的成骨细胞可以通过错折叠的前胶原自噬激活来拯救骨基质沉积,提示OI的新治疗策略。

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