Cell cycle remodeling and zygotic gene activation at the midblastula transition Journal Article


Authors: Zhang, M.; Skirkanich, J.; Lampson, M. A.; Klein, P. S.
Article Title: Cell cycle remodeling and zygotic gene activation at the midblastula transition
Abstract: Following fertilization, vertebrate embryos delay large-scale activation of the zygotic genome from several hours in fish and amphibians to several days in mammals. Externally developing embryos also undergo synchronous and extraordinarily rapid cell divisions that are accelerated by promiscuous licensing of DNA replication origins, absence of gap phases and cell cycle checkpoints, and preloading of the egg with maternal RNAs and proteins needed to drive early development. After a speciesspecific number of cell divisions, the cell cycle slows and becomes asynchronous, gap phases appear, checkpoint functions are acquired, and large-scale zygotic gene activation begins. These events, along with clearance of maternal RNAs and proteins, define the maternal to zygotic transition and are coordinated at a developmental milestone termed the midblastula transition (MBT). Despite the relative quiescence of the zygotic genome in vertebrate embryos, genes required for clearance of maternal RNAs and for the initial steps in mesoderm induction are robustly transcribed before MBT. The coordination and timing of the MBT depends on a mechanism that senses the ratio of nuclear to cytoplasmic content as well as mechanisms that are independent of the nuclear–cytoplasm ratio. Changes in chromatin architecture anticipate zygotic gene activation, and maternal transcription factors identified as regulators of pluripotency play critical roles in kick-starting the transition from the proliferative, pluripotent state of the early embryo to the more lineage-committed phase of development after the MBT. This chapter describes the regulation of the cell cycle and the activation of zygotic gene expression before and after the MBT in vertebrate embryos. © Springer International Publishing Switzerland 2017.
Keywords: dna damage; cell cycle; embryo; cell cycle checkpoint; pluripotency; midblastula transition; maternal zygotic transition; nuclear cytoplasmic ratio; zygotic transcription
Journal Title: Advances in Experimental Medicine and Biology
Volume: 953
ISSN: 0065-2598
Publisher: Springer  
Date Published: 2017-01-01
Start Page: 441
End Page: 487
Language: English
DOI: 10.1007/978-3-319-46095-6_9
PROVIDER: scopus
PUBMED: 27975277
DOI/URL:
Notes: Book Chapter 9 in "Vertebrate Development: Maternal to Zygotic Control" (ISBN: 978-3-319-46093-2) -- Export Date: 3 January 2017 -- Source: Scopus
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  1. Xiang Zhang
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