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前肢芽中极化活性的抑制受细胞外因子调控。

Inhibition of polarizing activity in the anterior limb bud is regulated by extracellular factors.

作者信息

Schaller S A, Muneoka K

机构信息

Department of Cell and Molecular Biology, Tulane University, New Orleans, Louisiana 70118, USA.

出版信息

Dev Biol. 2001 Dec 15;240(2):443-56. doi: 10.1006/dbio.2001.0500.

Abstract

Anterior-posterior patterning of the developing limb is largely viewed as a function of polarizing activity. Recent evidence in polydactylous mutants, however, indicates that development of proper pattern also requires the involvement of inhibitory pathways in the anterior limb that prevent secondary polarizing zone formation, thus limiting the number of digits produced. We report the novel finding that grafts of extracellular matrix from the Mouse Posterior Limb Bud-4 cell line can induce supernumerary digits, including digits with posterior phenotype, from anterior chick limb mesenchyme. Unlike previously described mechanisms of pattern specification during limb development, it is shown that the extracellular matrix effect is not associated with release of an active signal. Rather, evidence is presented suggesting that heparan sulfate moieties in extracellular matrix grafts bind an endogenous, extracellular factor involved in inhibition of anterior polarizing activity, leading to derepression of the anterior limb and induction of polarizing zone marker genes including Sonic hedgehog and Bone morphogenetic protein-2.

摘要

发育中肢体的前后模式形成在很大程度上被视为极化活性的一种功能。然而,近期在多指突变体中的证据表明,正确模式的发育还需要前肢中抑制性通路的参与,这些通路可防止次级极化区的形成,从而限制所产生的指(趾)数量。我们报告了一项新发现,即来自小鼠后肢芽 - 4细胞系的细胞外基质移植能够从鸡前肢间充质诱导出多余的指(趾),包括具有后表型的指(趾)。与先前描述的肢体发育过程中模式指定的机制不同,研究表明细胞外基质效应与活性信号的释放无关。相反,有证据表明,细胞外基质移植中的硫酸乙酰肝素部分结合了一种参与抑制前极化活性的内源性细胞外因子,导致前肢去抑制并诱导极化区标记基因,包括音猬因子和骨形态发生蛋白 - 2。

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