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Transcription factors(TF) plays a key role in hematopoiesis via promoting cell-type specific gene expression. A subset of TFs, canonically termed “pioneer factors”, possesses the ability to bind to otherwise inaccessible heterochromatin regions, and recruit additional TFs, co-activators, and chromat...
ORGANISM(S): Homo sapiens (Human) 
2026-03-16 | PXD037838 | Pride
CUX1, a homeodomain-containing transcription factor, is recurrently deleted or mutated in multiple tumor types. In myeloid neoplasms, CUX1 deletion or mutation carries a poor prognosis. We have previously established that CUX1 functions as a tumor suppressor in hematopoietic cells across multiple or...
ORGANISM(S): Homo sapiens (Human) 
2022-02-17 | PXD027527 | Pride
LOUCY cells were resuspended in Opti-MEM (Gibco) and electroporated in 4 mm cuvettes (300 V, 1000 F; Genepulser XCell, Bio-Rad) using Stealth siRNAs (Ambion) against CUX1 or negative control duplexes. Cells were rested for 15 min following electroporation before dilution into normal RPMI 10 percent ...
ORGANISM(S): Homo sapiens 
ATAC-Seq of sorted murine LT-HSCs segemented on intial CUX1 levels with and without CUX1 knockdown.
RNA-seq of sorted murine long-term hematopoietic stem cells segmented on CUX1 levels with and without CUX1 knockdown
Next generation sequencing following CUX1 knockdown in erythroblasts
CUX1 deficiency potentiates RAS signaling to drive malignancy
Transcriptomic analysis of neuroblastoma cells in response to stable over-expression of circular RNA derived from CUX1 gene (circ-CUX1)
Reduction of di-methyl histone H3K9 (H3K9me2) in CUX1-deficient cells.
Hematopoietic stem cells (HSCs) possess properties of both self-renewal and multipotent differentiation; however, the regulation of these opposing properties remains elusive. Using a novel reporter mouse, we demonstrate the dose-dependent role of the transcription factor, CUX1, in HSC fate. As CUX1 ...
ORGANISM(S): Mus musculus 
2025-08-01 | GSE274032 | GEO
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