From the Molecular and Computational Biology Section, Department of Biological Sciences, University of Southern California, Los Angeles, California 90089 and.
J Biol Chem. 2013 Oct 11;288(41):29382-93. doi: 10.1074/jbc.M113.499012. Epub 2013 Aug 28.
The nucleus/cytoplasm (N/C) ratio controls S phase dynamics in many biological systems, most notably the abrupt remodeling of the cell cycle that occurs at the midblastula transition in early Xenopus laevis embryos. After an initial series of rapid cleavage cycles consisting only of S and M phases, a critical N/C ratio is reached, which causes a sharp increase in the length of S phase as the cell cycle is reconfigured to resemble somatic cell cycles. How the N/C ratio determines the length of S phase has been a longstanding problem in developmental biology. Using Xenopus egg extracts, we show that DNA replication at high N/C ratio is restricted by one or more limiting substances. We report here that the protein phosphatase PP2A, in conjunction with its B55α regulatory subunit, becomes limiting for replication origin firing at high N/C ratio, and this in turn leads to reduced origin activation and an increase in the time required to complete S phase. Increasing the levels of PP2A catalytic subunit or B55α experimentally restores rapid DNA synthesis at high N/C ratio. Inversely, reduction of PP2A or B55α levels sharply extends S phase even in low N/C extracts. These results identify PP2A-B55α as a link between DNA replication and N/C ratio in egg extracts and suggest a mechanism that may influence the onset of the midblastula transition in vivo.
核质比(N/C)在许多生物系统中控制 S 期动力学,在非洲爪蟾早期胚胎的中胚层转换中,细胞周期的突然重构最为明显。在由 S 期和 M 期组成的最初的一系列快速分裂周期之后,达到一个关键的 N/C 比值,这导致 S 期的长度急剧增加,因为细胞周期被重新配置为类似于体细胞周期。N/C 比值如何决定 S 期的长度一直是发育生物学中的一个长期存在的问题。使用非洲爪蟾卵提取物,我们表明高 N/C 比值下的 DNA 复制受到一种或多种限制物质的限制。我们在这里报告,蛋白磷酸酶 PP2A 与其 B55α 调节亚基一起,在高 N/C 比值下成为复制起点点火的限制因素,这反过来又导致起始原点激活减少,完成 S 期所需的时间增加。实验增加 PP2A 催化亚基或 B55α 的水平可在高 N/C 比值下恢复快速 DNA 合成。相反,PP2A 或 B55α 水平的降低甚至在低 N/C 提取物中也会急剧延长 S 期。这些结果表明,在卵提取物中,PP2A-B55α 是 DNA 复制和 N/C 比值之间的联系,并提出了一种可能影响体内中胚层转换开始的机制。