Trisomy silencing by XIST normalizes Down syndrome cell pathogenesis demonstrated for hematopoietic defects in vitro

Jen-Chieh Chiang1, Jun Jiang1, Peter E Newburger2

  • 1Department of Neurology and Pediatrics, University of Massachusetts Medical School, 55 Lake Avenue North, Worcester, MA, 01655, USA.

Nature Communications
|December 7, 2018
PubMed

Insights

Trisomy silencing using XIST in Down syndrome cells corrected blood cell overproduction. This epigenetic strategy shows promise for investigating and mitigating Down syndrome developmental disorders.

Area of Science:

  • Genetics
  • Developmental Biology
  • Stem Cell Biology

Background:

  • Down syndrome (DS) is characterized by trisomy of chromosome 21, leading to developmental abnormalities.
  • Cellular phenotypes in DS are well-documented in hematopoietic stem cells.
  • Previous work showed XIST transgene can repress chromosome 21 in DS pluripotent cells.

Purpose of the Study:

  • To determine if trisomy silencing can normalize cell function and correct Down syndrome pathogenesis.
  • To investigate the cell-type specificity of XIST-mediated trisomy silencing.
  • To explore the role of trisomy 21 in hematopoietic progenitor overproduction and associated signaling pathways.

Main Methods:

  • Utilized an in vitro model of human fetal hematopoiesis.
  • Generated and analyzed four transgenic clones with XIST induction.
  • Assessed cell production, progenitor populations (CD34+, CD43+), and IGF signaling.

Main Results:

  • XIST induction in DS cells reproducibly corrected the overproduction of megakaryocytes and erythrocytes.
  • Observed cell-type specific effects, with an increase in neural stem and induced pluripotent stem cells.
  • Demonstrated that trisomy 21 promotes CD43+ progenitor overproduction, linked to increased IGF signaling.

Conclusions:

  • Epigenetic silencing of chromosome 21 via XIST demonstrates proof-of-principle for correcting DS-associated hematopoietic pathologies.
  • This approach can normalize developmental programs and rebalance cell production in DS models.
  • The findings provide a strategy for investigating and potentially mitigating Down syndrome developmental disorders.

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