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在墨角藻合子中,一种细胞周期蛋白依赖性激酶样蛋白对极化发育的细胞周期依赖性调控。

Cell cycle-dependent control of polarised development by a cyclin-dependent kinase-like protein in the Fucus zygote.

作者信息

Corellou F, Brownlee C, Kloareg B, Bouget F Y

机构信息

Station Biologique, UMR 1931 CNRS and Laboratoires Goëmar, 29680 Roscoff, France.

出版信息

Development. 2001 Nov;128(21):4383-92. doi: 10.1242/dev.128.21.4383.

Abstract

Although iterative development can be uncoupled from morphogenesis in plant organs, the relationship between the cell cycle and developmental events is not well established in embryos. Zygotes of fucoid algae, including Fucus and Pelvetia are particularly well suited for studying the interaction(s) between cell cycle progression and the early morphogenetic events, as the establishment of polarity and its morphogenetic expression, i.e. germination, and the first cell cycle are concomitant. We have previously demonstrated that, in Fucus zygotes, various aspects of cell cycle progression are tightly controlled by cyclin-dependent kinase (CDK)-like proteins, including two PSTAIRE CDK-like proteins, p34 and p32, which are synthesised after fertilisation. We show that specific inhibition of CDK-like proteins, either with purine derivatives such as olomoucine and amino-purvalanol or by microinjection of the CDK inhibitor p21(cip1), prevents germination and cell division. Whereas direct inhibition of DNA replication by aphidicolin did not affect polarised development, olomoucine, which has previously been shown to prevent entry in S phase, and other purine derivatives also inhibited photopolarisation. Early microinjection of a monoclonal anti-PSTAIRE antibody also prevented germination and cell division. Only p34 had affinity for amino-purvalanol, suggesting that among PSTAIRE CDKs, this protein is the main target of purine derivatives. Models to account for the simultaneous control of early cell cycle progression and polarisation are proposed.

摘要

尽管迭代发育可以与植物器官的形态发生解耦,但细胞周期与胚胎发育事件之间的关系尚未完全明确。包括墨角藻属和鹿角菜属在内的褐藻合子特别适合用于研究细胞周期进程与早期形态发生事件之间的相互作用,因为极性的建立及其形态发生表达,即萌发,与第一个细胞周期是同时发生的。我们之前已经证明,在墨角藻合子中,细胞周期进程的各个方面都受到细胞周期蛋白依赖性激酶(CDK)样蛋白的严格控制,包括两种PSTAIRE CDK样蛋白p34和p32,它们在受精后合成。我们发现,用嘌呤衍生物如olomoucine和氨基嘌呤醇特异性抑制CDK样蛋白,或者通过显微注射CDK抑制剂p21(cip1),会阻止萌发和细胞分裂。虽然放线菌素D直接抑制DNA复制并不影响极化发育,但之前已证明能阻止进入S期的olomoucine和其他嘌呤衍生物也抑制光极化。早期显微注射单克隆抗PSTAIRE抗体也会阻止萌发和细胞分裂。只有p34对氨基嘌呤醇有亲和力,这表明在PSTAIRE CDKs中,这种蛋白是嘌呤衍生物的主要靶点。本文提出了一些模型来解释早期细胞周期进程和极化的同时控制。

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