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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >Inactivation of FAM20B causes cell fate changes in annulus fibrosus of mouse intervertebral disc and disc defects via the alterations of TGF-beta and MAPK signaling pathways
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Inactivation of FAM20B causes cell fate changes in annulus fibrosus of mouse intervertebral disc and disc defects via the alterations of TGF-beta and MAPK signaling pathways

机译:FAM20B的失活导致小鼠椎间盘和椎间盘缺陷的细胞命运变化通过TGF-β和MAPK信号通路的改变

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Intervertebral disc (IVD) disorder is often caused by the defect of annulus fibrosus (AF), especially that of the outer AF. Studies about the mechanisms governing the development of the outer AF are needed for a better understanding of pathogenesis of IVD defects. Glycosaminoglycans (GAGs) are essential components of extracellular matrix (ECM) in AF. FAM20B is a newly identified xylose kinase that catalyzes the biosynthesis of GAGs. In this study, we created Fam20B conditional knockout (cKO) mice in which FAM20B was inactivated in type I collagen-expressing cells, the main type of cells in the outer AF of IVD. The cKO mice showed severe spine deformity and remarkable IVD defects associated with AF malformation. The AF of cKO mice had a lower level of chondroitin sulfate and heparan sulfate, and the outer AF cells lost their normal fibroblast-like morphology and acquired chondrocyte phenotypes, expressing a higher level of Sox 9 and type II collagen along with a reduced level of type I collagen. The level of phospho-Smad 2 and phospho-Smad 3, and that of scleraxis, a downstream target molecule of canonical TGF-beta signaling pathway were significantly lower in the AF of cKO mice. The AF in cKO mice also manifested altered levels in the molecules associated with the activations of MAPK pathway; the changes included the increase of phospho-P38 and phospho-ERK and a decrease of phospho-JNK. These results indicate that FAM20B plays an essential role in the development of AF by regulating the TGF-beta signaling and MAPK signaling pathways.
机译:椎间盘(IVD)紊乱通常是由环纤维(AF)的缺陷引起的,特别是外部AF的缺陷。需要研究关于外部AF的发展的机制,以更好地理解IVD缺陷的发病机制。糖酰胺聚糖(GAG)是AF中细胞外基质(ECM)的必要组分。 FAM20B是一种新鉴定的木糖激酶,其催化GAG的生物合成。在这项研究中,我们创建了FAM20B条件敲除(CKO)小鼠,其中FAM20B在I型表达胶原蛋白的细胞中灭活,IVD外部AF中的主要类型的细胞。 CKO小鼠表现出严重的脊柱畸形和与AF畸形相关的显着IVD缺陷。 CKO小鼠的AF具有较低水平的软骨素硫酸盐和硫酸乙酰肝素,并且外部AF细胞丧失了它们的正常成纤维细胞样形态并获得了软骨细胞表型,表达了更高水平的SOX 9和II型胶原蛋白,以及减少的水平I型胶原蛋白。在CKO小鼠的AF中,磷酸 - Smad 2和磷酸磷酸型途径的下游靶分子,磷酸磷酸型途径的水平显着降低。 CKO小鼠中的AF也表现出与MAPK途径的激活相关的分子中的改变水平;该变化包括磷酸-P38的增加和磷酸-ERK和磷酸磷酸的减少。这些结果表明,通过调节TGF-Beta信号传导和MAPK信号传导途径,FAM20B在AF的开发中起重要作用。

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