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对软骨内骨骼中刺猬信号通路的基因操作揭示了其在软骨细胞增殖调控中的直接作用。

Genetic manipulation of hedgehog signaling in the endochondral skeleton reveals a direct role in the regulation of chondrocyte proliferation.

作者信息

Long F, Zhang X M, Karp S, Yang Y, McMahon A P

机构信息

Harvard University, Department of Molecular and Cellular Biology, Cambridge, MA 02138, USA.

出版信息

Development. 2001 Dec;128(24):5099-108. doi: 10.1242/dev.128.24.5099.

Abstract

Indian hedgehog (Ihh), one of the three mammalian hedgehog (Hh) proteins, coordinates proliferation and differentiation of chondrocytes during endochondral bone development. Smoothened (Smo) is a transmembrane protein that transduces all Hh signals. In order to discern the direct versus indirect roles of Ihh in cartilage development, we have used the Cre-loxP approach to remove Smo activity specifically in chondrocytes. Animals generated by this means develop shorter long bones when compared to wild-type littermates. In contrast to Ihh mutants (Ihh(n)/Ihh(n)), chondrocyte differentiation proceeds normally. However, like Ihh(n)/Ihh(n) mice, proliferation of chondrocytes is reduced by about 50%, supporting a direct role for Ihh in the regulation of chondrocyte proliferation. Moreover, by overexpressing either Ihh or a constitutively active Smo allele (Smo*) specifically in the cartilage using the bigenic UAS-Gal4 system, we demonstrate that activation of the Ihh signaling pathway is sufficient to promote chondrocyte proliferation. Finally, expression of cyclin D1 is markedly downregulated when either Ihh or Smo activity is removed from chondrocytes, indicating that Ihh regulates chondrocyte proliferation at least in part by modulating the transcription of cyclin D1. Taken together, the present study establishes Ihh as a key mitogen in the endochondral skeleton.

摘要

印度刺猬因子(Ihh)是哺乳动物中三种刺猬因子(Hh)蛋白之一,在软骨内骨发育过程中协调软骨细胞的增殖和分化。平滑受体(Smo)是一种转导所有Hh信号的跨膜蛋白。为了区分Ihh在软骨发育中的直接作用与间接作用,我们采用了Cre-loxP方法,特异性地去除软骨细胞中的Smo活性。与野生型同窝小鼠相比,通过这种方式产生的动物长骨较短。与Ihh突变体(Ihh(n)/Ihh(n))不同,软骨细胞分化正常进行。然而,与Ihh(n)/Ihh(n)小鼠一样,软骨细胞的增殖减少了约50%,这支持了Ihh在调节软骨细胞增殖中起直接作用。此外,通过使用双转基因UAS-Gal4系统在软骨中特异性过表达Ihh或组成型活性Smo等位基因(Smo*),我们证明Ihh信号通路的激活足以促进软骨细胞增殖。最后,当从软骨细胞中去除Ihh或Smo活性时,细胞周期蛋白D1的表达明显下调,表明Ihh至少部分通过调节细胞周期蛋白D1的转录来调节软骨细胞增殖。综上所述,本研究确定Ihh是软骨内骨骼中的关键促有丝分裂原。

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