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一种可能控制盘基网柄菌分化的形态发生素。

A possible morphogen controlling differentiation in Dictyostelium.

作者信息

Kay R R, Jermyn K A

出版信息

Nature. 1983;303(5914):242-4. doi: 10.1038/303242a0.

Abstract

The complex morphology of a higher organism is generated partly by such developmental processes as cell movement and cohesion but also by a social interaction between cells in small areas of embryonic tissue known as morphogenetic fields. The initially similar cells within such a field organize themselves and differentiate, forming a discrete spatial pattern which is remarkably independent of field size and which can regenerate after some part is removed. Although it is believed that a cell signalling system must underlie this behaviour, the putative signals--or morphogens--have so far proved elusive. Perhaps the simplest known morphogenetic field arises within the multicellular aggregate formed by developing cells of the slime mould Dictyostelium discoideum. As the amorphous aggregate transforms into a cylindrical slug, a simple pattern emerges, with prestalk cells differentiating in the anterior and prespores in the posterior. One great difficulty in identifying any morphogen has been to predict properties that could form the basis of a bioassay. However, in Dictyostelium it is almost essential that the morphogens should dictate to cells their choice of differentiation pathway. We have described previously a crude factor termed DIF which stimulates the differentiation of isolated amoebae into stalk cells. We now show that purified DIF also inhibits spore formation and so switches cells to stalk cell formation. Thus, we believe that DIF is a morphogen which regulates the choice of differentiation pathway of cells in the Dictyostelium slug.

摘要

高等生物复杂的形态部分是由细胞移动和黏附等发育过程形成的,但也源于胚胎组织小区域内细胞间的一种社会相互作用,这种小区域被称为形态发生场。在这样一个场域内最初相似的细胞会自我组织并分化,形成一种离散的空间模式,这种模式显著独立于场域大小,并且在部分被移除后能够再生。尽管人们认为细胞信号系统必定是这种行为的基础,但迄今为止,假定的信号——即形态发生素——仍难以捉摸。也许已知最简单的形态发生场出现在黏菌盘基网柄菌发育细胞形成的多细胞聚集体中。随着无定形聚集体转变为圆柱形蛞蝓体,一种简单的模式出现了,前柄细胞在前部分化,前孢子在后部分化。识别任何形态发生素的一个重大困难在于预测能够构成生物测定基础的特性。然而,在盘基网柄菌中,形态发生素几乎必定要向细胞指示它们对分化途径的选择。我们之前描述过一种名为DIF的粗提因子,它能刺激分离的变形虫分化为柄细胞。我们现在表明,纯化的DIF也能抑制孢子形成,从而使细胞转向柄细胞形成。因此,我们认为DIF是一种形态发生素,它调节盘基网柄菌蛞蝓体中细胞分化途径的选择。

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