Collart Clara, Smith James C, Zegerman Philip
Department of Biochemistry, Wellcome Trust/Cancer Research UK Gurdon Institute, The Henry Wellcome Building of Cancer and Developmental Biology, University of Cambridge, Cambridge CB2 1QN, UK; Developmental Biology Laboratory, Francis Crick Institute, Midland Road, London NW1 1AT, UK.
Developmental Biology Laboratory, Francis Crick Institute, Midland Road, London NW1 1AT, UK.
Dev Cell. 2017 Jul 10;42(1):82-96.e3. doi: 10.1016/j.devcel.2017.06.010.
The early cell divisions of many metazoan embryos are rapid and occur in the near absence of transcription. At the mid-blastula transition (MBT), the cell cycle elongates and several processes become established including the onset of bulk transcription and cell-cycle checkpoints. How these events are timed and coordinated is poorly understood. Here we show in Xenopus laevis that developmental activation of the checkpoint kinase Chk1 at the MBT results in the SCF-dependent degradation of a limiting replication initiation factor Drf1. Inhibition of Drf1 is the primary mechanism by which Chk1 blocks cell-cycle progression in the early embryo and is an essential function of Chk1 at the blastula-to-gastrula stage of development. This study defines the downregulation of Drf1 as an important mechanism to coordinate the lengthening of the cell cycle and subsequent developmental processes.
许多后生动物胚胎的早期细胞分裂迅速,且几乎在没有转录的情况下发生。在囊胚中期转换(MBT)时,细胞周期延长,包括大量转录起始和细胞周期检查点在内的几个过程开始建立。这些事件如何定时和协调,目前了解甚少。在这里,我们在非洲爪蟾中发现,MBT时检查点激酶Chk1的发育激活导致了一种限制性复制起始因子Drf1的SCF依赖性降解。抑制Drf1是Chk1在早期胚胎中阻断细胞周期进程的主要机制,并且是Chk1在囊胚到原肠胚发育阶段的一项基本功能。这项研究将Drf1的下调定义为协调细胞周期延长和后续发育过程的重要机制。