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Mouse gastrulation: Attributes of transcription factor regulatory network for epiblast patterning.

Guizhong CuiShengbao SuoRan WangYun QianJing-Dong J HanGuangdun PengPatrick P L TamNaihe Jing
Published in: Development, growth & differentiation (2019)
Gastrulation is a key milestone in early mouse development when multipotent epiblast cells are allocated to progenitors of diverse tissue lineages that constitute the ensemble of building blocks of the body plan. The analysis of gene function revealed that the activity of transcription factors is likely to be the fundamental driving force underpinning the lineage specification and tissue patterning in the primary germ layers. The developmental-spatial transcriptome of the gastrulating embryo revealed the concerted and interactive activity of the gene regulatory network anchored by development-related transcription factors. The findings of the network structure offer novel insights into the regionalization of tissue fates and enable tracking of the progression of epiblast patterning, leading to the construction of molecularly annotated fate maps of epiblast during gastrulation.
Keyphrases
  • transcription factor
  • cell fate
  • single cell
  • genome wide identification
  • dna binding
  • genome wide
  • rna seq
  • cell cycle arrest
  • machine learning
  • single molecule
  • cell death
  • neural network
  • pregnancy outcomes