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BMP Receptor 1A Determines the Cell Fate of the Postnatal Growth Plate

机译:BMP受体1A决定产后生长板的细胞命运

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Bone morphogenic proteins (BMPs) are critical for both chondrogenesis and osteogenesis. Previous studies reported that embryos deficient in Bmp receptor (Bmpr)1a or Bmpr1b in cartilage display subtle skeletal defects; however, double mutant embryos develop severe skeletal defects, suggesting a functional redundancy that is essential for early chondrogenesis. In this study, we examined the postnatal role of Bmpr1a in cartilage. In the Bmpr1a conditional knockout (cKO, a cross between Bmpr1a flox and aggrecan-CreERT2 induced by a one-time-tamoxifen injection at birth and harvested at ages of 2, 4, 8 and 20 weeks), there was essentially no long bone growth with little expression of cartilage markers such as SOX9, IHH and glycoproteins. Unexpectedly, the null growth plate was replaced by bone-like tissues, supporting the notions that the progenitor cells in the growth plate, which normally form cartilage, can form other tissues such as bone and fibrous; and that BMPR1A determines the cell fate. A working hypothesis is proposed to explain the vital role of BMPR1A in postnatal chondrogenesis.
机译:骨形态发生蛋白(BMP)对于软骨形成和成骨均至关重要。先前的研究报道,软骨中缺乏Bmp受体(Bmpr)1a或Bmpr1b的胚胎显示出细微的骨骼缺陷。但是,双突变体胚胎会形成严重的骨骼缺损,表明功能冗余对于早期软骨形成至关重要。在这项研究中,我们检查了Bmpr1a在软骨中的产后作用。在Bmpr1a有条件的基因敲除中(cKO,Bmpr1a亚麻与aggrecan-CreER T2 之间的杂交是在出生时一次性注射他莫昔芬诱导并在2、4、8、20周龄收获的) ,基本上没有长骨生长,几乎没有软骨标志物如SOX9,IHH和糖蛋白的表达。出乎意料的是,无效的生长板被骨样组织所替代,支持了这样的观念,即生长板中的正常形成软骨的祖细胞可以形成其他组织,例如骨和纤维。而BMPR1A决定了细胞命运。提出了一个有效的假设来解释BMPR1A在产后软骨形成中的重要作用。

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