Heterozygous mutation SLFN14 K208N in mice mediates species-specific differences in platelet and erythroid lineage

Rachel J Stapley1, Christopher W Smith1, Elizabeth J Haining1

  • 1Institute of Cardiovascular Sciences, College of Medical and Dental Sciences.

Blood Advances
|January 26, 2021
PubMed

Insights

Schlafen 14 (SLFN14) is an endoribonuclease regulating protein synthesis. A new mouse model reveals SLFN14

Area of Science:

  • Hematology
  • Molecular Biology
  • Genetics

Background:

  • Schlafen 14 (SLFN14) is an endoribonuclease regulating protein synthesis.
  • SLFN family members influence T-cell differentiation via cell-cycle arrest.
  • SLFN14 mutations cause inherited macrothrombocytopenia and bleeding in humans.

Purpose of the Study:

  • Investigate the role of SLFN14 in megakaryopoiesis and thrombopoiesis.
  • Characterize a CRISPR knock-in mouse model of SLFN14 K208N mutation.

Main Methods:

  • Hematological analysis.
  • In vitro and in vivo platelet and erythrocyte function studies.
  • Analysis of spleen and bone marrow progenitors.
  • CRISPR knock-in mouse model.
  • Intravital microscopy.

Main Results:

  • Homozygous SLFN14 K208N mice do not survive to weaning.
  • Heterozygous mice show microcytic erythrocytosis, hemolytic anemia, splenomegaly, and abnormal thrombus formation.
  • Platelet function and morphology are unchanged in heterozygotes.
  • Upregulated erythropoiesis observed in spleen and bone marrow progenitors.

Conclusions:

  • SLFN14 is a key regulator of mammalian hematopoiesis.
  • SLFN14 mediates species-specific regulation of platelet and erythroid lineage commitment.
  • Mouse model exhibits distinct phenotypes (erythrocytosis) compared to human patients (platelet defect).