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细胞对其在形态发生素梯度中的位置进行直接和连续的评估。

Direct and continuous assessment by cells of their position in a morphogen gradient.

作者信息

Gurdon J B, Mitchell A, Mahony D

机构信息

Wellcome CRC Institute, Cambridge, UK.

出版信息

Nature. 1995 Aug 10;376(6540):520-1. doi: 10.1038/376520a0.

Abstract

According to the morphogen gradient concept, cells in one part of an embryo secrete diffusible molecules (morphogens) that spread to other nearby cells and activate genes at different threshold concentrations. Strong support for the operation of a morphogen gradient mechanism in vertebrate development has come from the biochemical experiments of Green and Smith, who induced different kinds of gene expression in amphibian blastula cells exposed to small changes in activin concentration. But the interpretation of these experiments has been complicated by recent reports that cells tested for gene expression 3 hours after exposure to activin fail to show the graded response previously reported at 15 hours, a result suggesting that cells recognize their position in a gradient by an indirect mechanism. Here we conclude from the in situ analysis of blastula tissue containing activin-loaded beads that cells respond directly to changing morphogen concentrations in a way that resembles a ratchet-like process.

摘要

根据形态发生素梯度概念,胚胎某一部位的细胞分泌可扩散分子(形态发生素),这些分子扩散到附近其他细胞,并在不同阈值浓度下激活基因。格林和史密斯的生化实验为脊椎动物发育中形态发生素梯度机制的运作提供了有力支持,他们在暴露于激活素浓度微小变化的两栖类囊胚细胞中诱导了不同类型的基因表达。但是,最近的报道使这些实验的解释变得复杂,这些报道表明,在暴露于激活素3小时后进行基因表达测试的细胞未能显示出之前在15小时时报道的分级反应,这一结果表明细胞通过间接机制识别其在梯度中的位置。在这里,我们通过对含有加载激活素珠子的囊胚组织进行原位分析得出结论,细胞以类似于棘轮样过程的方式直接对变化的形态发生素浓度做出反应。

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