Loss of ISWI ATPase SMARCA5 (SNF2H) in Acute Myeloid Leukemia Cells Inhibits Proliferation and Chromatid Cohesion.
Tomas ZikmundHelena PaszekovaJuraj KokavecPaul KerbsShefali ThakurTereza TurkovaPetra TauchmanovaPhilipp A GreifTomáš StopkaPublished in: International journal of molecular sciences (2020)
ISWI chromatin remodeling ATPase SMARCA5 (SNF2H) is a well-known factor for its role in regulation of DNA access via nucleosome sliding and assembly. SMARCA5 transcriptionally inhibits the myeloid master regulator PU.1. Upregulation of SMARCA5 was previously observed in CD34+ hematopoietic progenitors of acute myeloid leukemia (AML) patients. Since high levels of SMARCA5 are necessary for intensive cell proliferation and cell cycle progression of developing hematopoietic stem and progenitor cells in mice, we reasoned that removal of SMARCA5 enzymatic activity could affect the cycling or undifferentiated state of leukemic progenitor-like clones. Indeed, we observed that CRISPR/cas9-mediated SMARCA5 knockout in AML cell lines (S5KO) inhibited the cell cycle progression. We also observed that the SMARCA5 deletion induced karyorrhexis and nuclear budding as well as increased the ploidy, indicating its role in mitotic division of AML cells. The cytogenetic analysis of S5KO cells revealed the premature chromatid separation. We conclude that deleting SMARCA5 in AML blocks leukemic proliferation and chromatid cohesion.
Keyphrases
- acute myeloid leukemia
- cell cycle
- cell proliferation
- induced apoptosis
- allogeneic hematopoietic stem cell transplantation
- crispr cas
- cell cycle arrest
- signaling pathway
- genome editing
- newly diagnosed
- bone marrow
- type diabetes
- ejection fraction
- pi k akt
- dna damage
- gene expression
- poor prognosis
- oxidative stress
- endoplasmic reticulum stress
- cell death
- single cell
- mass spectrometry
- immune response
- nitric oxide
- single molecule
- adipose tissue
- metabolic syndrome
- hydrogen peroxide
- high fat diet induced
- liquid chromatography
- diabetic rats
- high intensity
- long non coding rna
- endothelial cells
- wild type