首页> 外文期刊>Bone >Partial rescue of postnatal growth plate abnormalities in Ihh mutants by expression of a constitutively active PTH/PTHrP receptor.
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Partial rescue of postnatal growth plate abnormalities in Ihh mutants by expression of a constitutively active PTH/PTHrP receptor.

机译:通过表达组成型活性PTH / PTHrP受体,部分挽救Ihh突变体中的产后生长板异常。

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Indian hedgehog (Ihh) is essential for chondrocyte proliferation/differentiation and osteoblast differentiation during prenatal endochondral bone formation. Ihh expression in postnatal chondrocytes has a non-redundant role in maintaining a growth plate and sustaining trabecular bone after birth. Loss of Ihh in postnatal chondrocytes results in fusion of the growth plate and a decrease in trabecular bone. In order to normalize this abnormal chondrocyte phenotype and to investigate whether a putative rescue of the growth plate anomalies is sufficient to correct the severe alterations in the bone, we expressed a constitutively active PTH/PTHrP receptor (an Ihh downstream target) in the chondrocytes of Col2 alpha 1-Cre ER; Ihh(dld) mice by mating Col2 alpha 1-Cre ER; Ihh(fl/fl) mice with Col2 alpha 1-constitutively active PTH/PTHrP receptor transgenic mice (Jansen, J). Col2 alpha 1-Cre ER; Ihh(f/f); J mice were then injected with tamoxifen at P0 to generate Col2 alpha 1-Cre ER; Ihh(d/d); J mice. In contrast with the previously reported growth plate phenotype of Col2 alpha 1-Cre ER; Ihh(d/d) mice that displayed ectopic chondrocyte hypertrophy at P7, growth plates of Col2 alpha 1-Cre ER; Ihh(d/d); J double mutants were well organized, and exhibited a gene expression pattern similar to the one of control mice. However, expression of osteoblast markers and Dkk1, a Wnt signaling target, remains decreased in the bone collar of Col2 alpha 1-Cre ER; Ihh(d/d); J mice when compared to control mice despite the rescue of abnormal chondrocyte differentiation. Moreover, proliferation of chondrocytes was still significantly impaired in Col2 alpha 1-Cre ER; Ihh(d/d); J mice, and this eventually led to the fusion of the growth plate at P14. In summary, we have demonstrated that expression of a Jansen receptor in chondrocytes was able to rescue abnormal chondrocyte differentiation but not impaired chondrocyte proliferation and the bone anomalies in mice lacking the Ihh gene in chondrocytes after birth. Taken together, our findings suggest that Ihh has both PTHrP-dependent and -independent functions during postnatal endochondral bone development.
机译:印度刺猬(Ihh)对于产前软骨内骨形成过程中的软骨细胞增殖/分化和成骨细胞分化至关重要。出生后软骨细胞中的Ihh表达在出生后维持生长板和维持小梁骨方面具有非冗余作用。出生后软骨细胞中Ihh的丧失导致生长板融合并导致小梁骨减少。为了使这种异常的软骨细胞表型正常化并调查生长板异常的假定挽救是否足以纠正骨骼中的严重改变,我们在软骨细胞的软骨细胞中表达了一个组成型活性的PTH / PTHrP受体(Ihh下游靶标)。 Col2 alpha 1-Cre ER;通过使Col2 alpha 1-Cre ER交配来获得Ihh(dld)小鼠; Ihh(fl / fl)小鼠具有Col2 alpha 1组成型活性PTH / PTHrP受体转基因小鼠(Jansen,J)。 Col2 alpha 1-Cre ER; Ihh(f / f);然后向J小鼠在P0处注射他莫昔芬以产生Col2 alpha 1-Cre ER; Ihh(d / d); J老鼠。与先前报道的Col2 alpha 1-Cre ER的生长板表型相反; Ihh(d / d)小鼠在P7处显示异位软骨细胞肥大,Col2 alpha 1-Cre ER的生长板; Ihh(d / d); J双突变体组织良好,并表现出与对照小鼠相似的基因表达模式。然而,Col2 alpha 1-Cre ER的骨环中成骨细胞标志物和Dkk1(Wnt信号转导靶标)的表达仍然降低。 Ihh(d / d);尽管挽救了异常的软骨细胞分化,但与对照小鼠相比,J小鼠仍然存在。此外,在Col2 alpha 1-Cre ER中,软骨细胞的增殖仍显着受损。 Ihh(d / d); J小鼠,最终导致P14处的生长板融合。总而言之,我们已经证明,软骨细胞中Jansen受体的表达能够挽救软骨细胞的异常分化,但不会损害软骨细胞的增殖,而且出生后软骨细胞中缺乏Ihh基因的小鼠的骨骼异常。两者合计,我们的发现表明,Ihh在产后软骨内骨发育过程中同时具有PTHrP依赖性和非依赖性功能。

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