Muscle gene activation by induction and the nonrequirement for cell division.

J B Gurdon, S Fairman
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Abstract

We are investigating the mechanism by which animal cells of an amphibian blastula are induced to differentiate as muscle after contact with blastula vegetal cells. After briefly summarizing previous work on this system, we have asked whether this response of animal cells to vegetal induction requires cell division. Animal and vegetal parts of a blastula were placed in contact with each other, and the resulting conjugates cultured in medium containing a sufficient concentration of colchicine or cytochalasin B to inhibit cell division. Muscle differentiation, as indicated by cardiac actin gene transcription, is induced when cell division is inhibited, though at a substantially reduced rate. However, cytoskeletal actin gene transcription, which does not depend on induction, is also much reduced under the same inhibitory conditions. We conclude that, although the cell division inhibitors seem to reduce all gene transcription, they have no preferential effect on the response to induction, and therefore that this process does not require cytoplasmic or nuclear division.

肌肉基因的诱导激活和不需要细胞分裂。
我们正在研究两栖动物囊胚细胞与囊胚植物细胞接触后诱导分化为肌肉的机制。在简要总结了之前关于该系统的工作之后,我们提出了动物细胞对植物诱导的这种反应是否需要细胞分裂。将囊胚的动物和植物部分相互接触,并在含有足够浓度的秋水仙碱或细胞松弛素B的培养基中培养,以抑制细胞分裂。心肌肌动蛋白基因转录表明,当细胞分裂受到抑制时,肌肉分化会被诱导,尽管速率会大大降低。然而,不依赖于诱导的细胞骨架肌动蛋白基因转录在相同的抑制条件下也大大减少。我们得出的结论是,尽管细胞分裂抑制剂似乎减少了所有基因的转录,但它们对诱导反应没有优先作用,因此这一过程不需要细胞质或核分裂。
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