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BMC Genomics|January 25, 2023
peaksat: an R package for ChIP-seq peak saturation analysisJoseph R Boyd, Cong Gao, Kathleen Quinn, et al.Plos One|February 23, 2016
Transcriptional Auto-Regulation of RUNX1 P1 PromoterMilka Martinez, Marcela Hinojosa, Daniel Trombly, et al.BMJ Public Health|May 20, 2026
Individual, community, and structural determinants of diagnostic testing decisions during public health crises: evidence from dynamic access and behavioural trade-offsEline M van den Broek-Altenburg, Jamie Benson, Jonathan Emery, et al.The Journal of Steroid Biochemistry and Molecular Biology|July 1, 2004
The Runx2 transcription factor plays a key role in the 1alpha,25-dihydroxy Vitamin D3-dependent upregulation of the rat osteocalcin (OC) gene expression in osteoblastic cellsRoberto Paredes, Gloria Arriagada, Fernando Cruzat, et al.Biorxiv : the Preprint Server for Biology|June 4, 2025
Genome reorganization and its functional impact during breast cancer progressionKathleen S Metz Reed, Andrew Fritz, Haley Greenyer, et al.Elife|June 16, 2026
Genome reorganization and its functional impact during breast cancer progressionKathleen S Metz Reed, Andrew Fritz, Haley Greenyer, et al.Nature Genetics|November 16, 2002
The core-binding factor beta subunit is required for bone formation and hematopoietic maturationJanelle Miller, Alan Horner, Terryl Stacy, et al.Journal of Cellular Physiology|September 20, 2017
Loss of RUNX1 is associated with aggressive lung adenocarcinomasJon Ramsey, Kelly Butnor, Zhihua Peng, et al.Bioanalysis|November 19, 2010
Determination of tigecycline in human skin using a novel validated LC-MS/MS methodAllena Ji Ji, James Patrick Saunders, Peter Amorusi, et al.Cell Death & Disease|January 27, 2017
MicroRNA-466 inhibits tumor growth and bone metastasis in prostate cancer by direct regulation of osteogenic transcription factor RUNX2Melissa Colden, Altaf A Dar, Sharanjot Saini, et al.Pageof 4