首页> 外文期刊>Journal of cellular biochemistry. >Discovery of Sonic hedgehog expression in postnatal growth plate chondrocytes: Differential regulation of Sonic and Indian hedgehog by retinoic acid.
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Discovery of Sonic hedgehog expression in postnatal growth plate chondrocytes: Differential regulation of Sonic and Indian hedgehog by retinoic acid.

机译:出生后生长板软骨细胞中Sonic刺猬表达的发现:视黄酸对Sonic和印度刺猬的差异调节。

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摘要

Sonic hedgehog (Shh) is a key signal protein in early embryological patterning of limb bud development. Its analog, Indian hedgehog (Ihh), primarily expressed during early cartilage development in prehypertrophic chondrocytes, regulates proliferation and suppresses terminal differentiation of postnatal growth plate (GP) chondrocytes. We report here for the first time that both Shh and Ihh mRNA are expressed in the GP of rapidly growing 6-week-old broiler-strain chickens. They are also expressed in other tissues such as articular chondrocytes, kidney, and bone. In situ hybridization and RT-PCR analyses reveal Shh in all zones of the GP, with peak expression in late hypertrophy. Using primary cultures of GP chondrocytes in serum-containing medium, we followed the patterns of Shh and Ihh mRNA expression as the cultures matured and mineralized. We find a cyclical expression of both hedgehog genes during the early period of culture development between day 10 and 14; when one is elevated, the other tended to be suppressed, suggesting that the two hedgehogs may play complementary roles during GP development. Retinoic acid (RA), a powerful modulator of gene expression in cell differentiation, stimulates GP chondrocytes toward terminal differentiation, enhancing mineral formation. We find that RA strongly suppresses Ihh, but enhances expression of Shh in this system. While Ihh suppresses maturation of GP chondrocytes to hypertrophy, we hypothesize that Shh acts to push these cells toward hypertrophy. J. Cell. Biochem. 87: 173-187, 2002. Copyright 2002 Wiley-Liss, Inc.
机译:声波刺猬(Shh)是肢芽发育早期胚胎学模式中的关键信号蛋白。其类似物印度刺猬(Ihh)主要在肥大前软骨细胞的早期软骨发育过程中表达,调节增殖并抑制出生后生长板(GP)软骨细胞的终末分化。我们首次在这里报告,Shh和Ihh mRNA均在快速生长的6周龄肉鸡菌株鸡的GP中表达。它们也在其他组织中表达,例如关节软骨细胞,肾脏和骨骼。原位杂交和RT-PCR分析显示在GP的所有区域都出现Shh,在肥大晚期表达高峰。使用GP软骨细胞在含血清的培养基中的原代培养,随着培养物的成熟和矿化,我们遵循Shh和Ihh mRNA表达的模式。我们发现第10天到第14天之间的文化发展早期,这两个刺猬基因都具有周期性表达。当一只升高时,另一只倾向于被抑制,表明这两只刺猬可能在GP发育过程中起互补作用。维甲酸(RA)是细胞分化中基因表达的强大调节剂,可刺激GP软骨细胞向终末分化,从而增强矿物质的形成。我们发现RA强烈抑制Ihh,但在该系统中增强Shh的表达。尽管Ihh抑制了GP软骨细胞向肥大的成熟,但我们假设Shh的作用是将这些细胞推向肥大。 J.细胞。生化。 87:173-187,2002。版权所有2002 Wiley-Liss,Inc.。

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