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NFIA和GATA3是胚胎关节软骨分化的关键调节因子。

NFIA and GATA3 are crucial regulators of embryonic articular cartilage differentiation.

作者信息

Singh Pratik Narendra Pratap, Yadav Upendra Singh, Azad Kimi, Goswami Pooja, Kinare Veena, Bandyopadhyay Amitabha

机构信息

Department of Biological Sciences and Bioengineering, Indian Institute of Technology, Kanpur, U.P. 208016, India.

Kalinga Institute of Industrial Technology, KIIT University, Bhubaneswar 751024, Odisha, India.

出版信息

Development. 2018 Jan 17;145(2):dev156554. doi: 10.1242/dev.156554.

Abstract

During appendicular skeletal development, the bi-potential cartilage anlagen gives rise to transient cartilage, which is eventually replaced by bone, and to articular cartilage that caps the ends of individual skeletal elements. While the molecular mechanism that regulates transient cartilage differentiation is relatively well understood, the mechanism of articular cartilage differentiation has only begun to be unraveled. Furthermore, the molecules that coordinate the articular and transient cartilage differentiation processes are poorly understood. Here, we have characterized in chick the regulatory roles of two transcription factors, NFIA and GATA3, in articular cartilage differentiation, maintenance and the coordinated differentiation of articular and transient cartilage. Both NFIA and GATA3 block hypertrophic differentiation. Our results suggest that NFIA is not sufficient but necessary for articular cartilage differentiation. Ectopic activation of GATA3 promotes articular cartilage differentiation, whereas inhibition of GATA3 activity promotes transient cartilage differentiation at the expense of articular cartilage. We propose a novel transcriptional circuitry involved in embryonic articular cartilage differentiation, maintenance and its crosstalk with the transient cartilage differentiation program.

摘要

在附肢骨骼发育过程中,双潜能软骨原基产生短暂存在的软骨,最终被骨替代,同时产生覆盖各个骨骼元件末端的关节软骨。虽然调节短暂软骨分化的分子机制已相对清楚,但关节软骨分化机制才刚刚开始被揭示。此外,协调关节软骨和短暂软骨分化过程的分子还知之甚少。在此,我们已在鸡中鉴定了两种转录因子NFIA和GATA3在关节软骨分化、维持以及关节软骨和短暂软骨协调分化中的调节作用。NFIA和GATA3均能阻断肥大分化。我们的结果表明,NFIA对于关节软骨分化不是充分条件,但却是必要条件。异位激活GATA3可促进关节软骨分化,而抑制GATA3活性则以关节软骨为代价促进短暂软骨分化。我们提出了一种涉及胚胎关节软骨分化、维持及其与短暂软骨分化程序相互作用的新型转录调控网络。

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