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Imprinted X chromosome inactivation in marsupials: The paternal X arrives at the egg with a silent DNA methylation profile. | LitMetric

AI Article Synopsis

  • X chromosome inactivation (XCI) is an epigenetic phenomenon where one X chromosome in females is silenced, differing between eutherian (random silencing) and marsupial mammals (always paternal silencing).
  • In eutherians, the inactive X shows high DNA methylation at key sites, while marsupials have lower methylation levels on the paternal X.
  • The study focused on the tammar wallaby's X chromosome during sperm development, finding that the paternal X has a DNA methylation profile similar to the inactive X in female tissues, suggesting it may serve as an imprint for paternal XCI in marsupials.

Article Abstract

X chromosome inactivation (XCI) is an epigenetic process that results in the transcriptional silencing of one X chromosome in the somatic cells of females. This phenomenon is common to both eutherian and marsupial mammals, but there are fundamental differences. In eutherians, the X chosen for silencing is random. DNA methylation on the eutherian inactive X is high at transcription start sites (TSSs) and their flanking regions, resulting in universally high DNA methylation. This contrasts XCI in marsupials where the paternally derived X is always silenced, and in which DNA methylation is low at TSSs and flanking regions. Here, we examined the DNA methylation status of the tammar wallaby X chromosome during spermatogenesis to determine the DNA methylation profile of the paternal X prior to and at fertilization. Whole genome enzymatic methylation sequencing was carried out on enriched flow-sorted populations of premeiotic, meiotic, and postmeiotic cells. We observed that the X displayed a pattern of DNA methylation from spermatogonia to mature sperm that reflected the inactive X in female somatic tissue. Therefore, the paternal X chromosome arrives at the egg with a DNA methylation profile that reflects the transcriptionally silent X in adult female somatic tissue. We present this epigenetic signature as a candidate for the long sought-after imprint for paternal XCI in marsupials.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11388282PMC
http://dx.doi.org/10.1073/pnas.2412185121DOI Listing

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