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首页> 外文期刊>Cell & Bioscience >Conditional ablation of MAPK7 expression in chondrocytes impairs endochondral bone formation in limbs and adaptation of chondrocytes to hypoxia
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Conditional ablation of MAPK7 expression in chondrocytes impairs endochondral bone formation in limbs and adaptation of chondrocytes to hypoxia

机译:Mapk7在软骨细胞中的灭活物损害肢体中的子细胞骨形成和软骨细胞的适应缺氧

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Long bones of limbs are formed through endochondral bone formation, which depends on the coordinated development of growth plates. Our previous studies have demonstrated that dysfunction of mitogen-activated protein kinase 7 (MAPK7) can cause skeletal dysplasia. However, little is known about the role of MAPK7 in the regulation of proliferation and differentiation of chondrocytes during growth plate development. Ablation of MAPK7 expression in chondrocytes led to growth restriction, short limbs and bone mass loss in postnatal mice. Histological studies revealed that MAPK7 deficiency increased the apoptosis and decreased the proliferation of chondrocytes in the center of the proliferative layer, where the most highly hypoxic chondrocytes are located. Accordingly, hypertrophic differentiation markers were downregulated in the central hypertrophic layer, beneath the site where abnormal apoptosis was observed. Simultaneously, we demonstrated that hypoxic adaptation and hypoxia-induced activation of hypoxia-inducible factor 1 subunit α (HIF1α) were impaired when MAPK7 could not be activated normally in primary chondrocytes. Concomitantly, vascular invasion into epiphyseal cartilage was inhibited when Mapk7 was deleted. We demonstrated that MAPK7 is necessary for maintaining proliferation, survival, and differentiation of chondrocytes during postnatal growth plate development, possibly through modulating HIF1α signaling for adaptation to hypoxia. These results indicate that MAPK7 signaling might be a target for treatment of chondrodysplasia.
机译:通过中间骨形成形成的长骨,这取决于生长板的协调发展。我们以前的研究表明,丝裂剂激活蛋白激酶7(MAPK7)的功能障碍会导致骨骼发育不良。然而,关于MAPK7在生长板发育过程中的细胞细胞增殖和分化的调节中的作用很少。软骨细胞中MAPK7表达的消融导致出生后小鼠的生长限制,短肢和骨质损失。组织学研究表明,MAPK7缺陷增加了细胞凋亡并降低了增殖层中心的软骨细胞的增殖,其中最高度缺氧软骨细胞位于。因此,在观察到异常细胞凋亡的位点下,在中央肥大层中下调肥厚分化标志物。同时,当MAPK7不能在原发性软骨细胞中不能正常激活时,我们证明了缺氧适应和缺氧诱导的缺氧诱导的激活缺氧诱导因子1亚基α(HIF1α)损害。似乎,当删除MAPK7时,抑制血管侵入骨骺软骨。我们证明MAPK7对于在产前生长板开发期间维持软骨细胞的增殖,存活和分化是必要的,可能是通过调节HIF1α信号,以适应缺氧。这些结果表明MAPK7信令可能是治疗软骨增生术的靶标。

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