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The compleX balancing act of controlling X-chromosome dosage and how it impacts mammalian germline development.

Tom MattimoeBernhard Payer
Published in: The Biochemical journal (2023)
In female mammals, the two X chromosomes are subject to epigenetic gene regulation in order to balance X-linked gene dosage with autosomes and in relation to males, which have one X and one Y chromosome. This is achieved by an intricate interplay of several processes; X-chromosome inactivation and reactivation elicit global epigenetic regulation of expression from one X chromosome in a stage-specific manner, whilst the process of X-chromosome upregulation responds to this by fine-tuning transcription levels of the second X. The germline is unique in its function of transmitting both the genetic and epigenetic information from one generation to the next, and remodelling of the X chromosome is one of the key steps in setting the stage for successful development. Here, we provide an overview of the complex dynamics of X-chromosome dosage control during embryonic and germ cell development, and aim to decipher its potential role for normal germline competency.
Keyphrases
  • copy number
  • dna methylation
  • genome wide
  • poor prognosis
  • gene expression
  • cell proliferation
  • healthcare
  • health information
  • oxidative stress
  • medical education