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果蝇的A 型和B 型细胞周期蛋白在时间上不同的事件中积累和降解,这些事件定义了G2-M 转换的不同阶段。

The A- and B-type cyclins of Drosophila are accumulated and destroyed in temporally distinct events that define separable phases of the G2-M transition.

作者信息

Whitfield W G, Gonzalez C, Maldonado-Codina G, Glover D M

机构信息

Department of Biochemistry, The University, Dundee, Scotland.

出版信息

EMBO J. 1990 Aug;9(8):2563-72. doi: 10.1002/j.1460-2075.1990.tb07437.x.

Abstract

We show that the sequence of Drosophila cyclin B has greater identity with B-type cyclins from other animal phyla than with Drosophila cyclin A, suggesting that the two cyclins have distinct roles that have been maintained in evolution. Cyclin A is not detectable in unfertilized eggs and is present at low levels prior to cellularization of the syncytial embryo. In contrast, the levels of cyclin B remain uniformly high throughout these developmental stages. In cells within cellularized embryos and the larval brain, cyclin A accumulates to peak levels in prophase and is degraded throughout the period in which chromosomes are becoming aligned on the metaphase plate. The degradation of cyclin B, on the other hand, does not occur until the metaphase-anaphase transition. In cells arrested at c-metaphase by treating with microtubule destabilizing drugs to prevent spindle formation, cyclin A has been degraded in the arrested cells, whereas cyclin B is maintained at high levels. These observations suggest that cyclin A has a role in the G2-M transition that is independent of spindle formation, and that entry into anaphase is a key requirement for the degradation of cyclin B.

摘要

我们发现,果蝇周期蛋白B的序列与其他动物门的B型周期蛋白的同源性高于与果蝇周期蛋白A的同源性,这表明这两种周期蛋白具有在进化过程中得以保留的不同作用。在未受精卵中检测不到周期蛋白A,在合胞体胚胎细胞化之前其水平较低。相比之下,在这些发育阶段,周期蛋白B的水平一直保持较高。在细胞化胚胎和幼虫大脑的细胞中,周期蛋白A在前期积累至峰值水平,并在染色体在中期板上排列的整个时期内降解。另一方面,周期蛋白B直到中期-后期转换时才会降解。在用微管破坏药物处理以阻止纺锤体形成而停滞在中期的细胞中,停滞细胞中的周期蛋白A已被降解,而周期蛋白B则维持在高水平。这些观察结果表明,周期蛋白A在G2-M转换中具有独立于纺锤体形成的作用,并且进入后期是周期蛋白B降解的关键条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a9e/552287/d5b16d49a048/emboj00235-0209-a.jpg

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