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非洲爪蟾蝌蚪尾巴和肢体再生中骨形态发生蛋白的时间需求。

Temporal requirement for bone morphogenetic proteins in regeneration of the tail and limb of Xenopus tadpoles.

作者信息

Beck Caroline W, Christen Bea, Barker Donna, Slack Jonathan M W

机构信息

Centre for Regenerative Medicine, Department of Biology and Biochemistry, University of Bath, Bath, United Kingdom.

出版信息

Mech Dev. 2006 Sep;123(9):674-88. doi: 10.1016/j.mod.2006.07.001. Epub 2006 Jul 6.

Abstract

Bone morphogenetic protein (BMP) signalling is necessary for both the development of the tail bud and for tail regeneration in Xenopus laevis tadpoles. Using a stable transgenic line in which expression of the soluble BMP inhibitor noggin is under the control of the temperature inducible hsp70 promoter, we have investigated the timing of the requirement for BMP signalling during tail regeneration. If noggin expression is induced followed by partial amputation of the tail, then wound closure and the formation of the neural ampulla occur normally but outgrowth of the regeneration bud is inhibited. Furthermore, we show that BMP signalling is also necessary for limb bud regeneration, which occurs in Xenopus tadpoles prior to differentiation. When noggin expression is induced, limb bud regeneration fails at an early stage and a stump is formed. The situation appears similar to the tail, with formation of the limb bud blastema occurring but renewed outgrowth inhibited. The transcriptional repressor Msx1, a direct target of BMP signalling with known roles in vertebrate appendage regeneration, fails to be re-expressed in both tail and limb in the presence of noggin. DNA labelling studies show that proliferation in the notochord and spinal cord of the tail, and of the blastema in the limb bud, is significantly inhibited by noggin induction, suggesting that in the context of these regenerating appendages BMP is mainly required, directly or indirectly, as a mitogenic factor.

摘要

骨形态发生蛋白(BMP)信号传导对于非洲爪蟾蝌蚪的尾芽发育和尾巴再生均必不可少。利用一种稳定的转基因系,其中可溶性BMP抑制剂头蛋白(noggin)的表达受温度诱导型hsp70启动子的控制,我们研究了尾巴再生过程中对BMP信号传导需求的时间点。如果诱导noggin表达,随后对尾巴进行部分截肢,伤口闭合和神经壶腹的形成会正常发生,但再生芽的生长会受到抑制。此外,我们表明BMP信号传导对于肢体芽再生也是必需的,肢体芽再生发生在非洲爪蟾蝌蚪分化之前。当诱导noggin表达时,肢体芽再生在早期就失败并形成残端。情况似乎与尾巴相似,肢体芽胚基形成,但新的生长受到抑制。转录抑制因子Msx1是BMP信号传导的直接靶点,在脊椎动物附肢再生中具有已知作用,在存在noggin的情况下,它在尾巴和肢体中均无法重新表达。DNA标记研究表明,尾巴的脊索和脊髓以及肢体芽胚基中的增殖受到noggin诱导的显著抑制,这表明在这些再生附肢的情况下,BMP主要直接或间接地作为一种促有丝分裂因子发挥作用。

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