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BMC Molecular Biology|June 3, 2014
Differential regulation of the α-globin locus by Krüppel-like Factor 3 in erythroid and non-erythroid cellsAlister P W Funnell, Douglas Vernimmen, Wooi F Lim, et al.American Journal of Human Genetics|March 6, 2021
De novo structural mutation rates and gamete-of-origin biases revealed through genome sequencing of 2,396 familiesJonathan R Belyeu, Harrison Brand, Harold Wang, et al.Genome Biology|February 5, 2015
Extending reference assembly modelsDeanna M Church, Valerie A Schneider, Karyn Meltz Steinberg, et al.NPJ Genomic Medicine|August 16, 2018
Whole-genome analysis for effective clinical diagnosis and gene discovery in early infantile epileptic encephalopathyBetsy E P Ostrander, Russell J Butterfield, Brent S Pedersen, et al.Cell|August 6, 2026
Human acrocentric chromosome short-arm de novo mutation and recombinationJiadong Lin, F Kumara Mastrorosa, Michelle D Noyes, et al.Biorxiv : the Preprint Server for Biology|December 25, 2025
Human acrocentric chromosome short arm de novo mutation and recombinationJiadong Lin, F Kumara Mastrorosa, Michelle D Noyes, et al.Nature Communications|July 27, 2025
Removal of promoter CpG methylation by epigenome editing reverses HBG silencingHenry W Bell, Ruopeng Feng, Manan Shah, et al.Nucleic Acids Research|October 2, 2025
WDR5 serves in co-activation and influences genome targeting of KLF3Lu Yang, Manan Shah, Tanit Chavalit, et al.Human Molecular Genetics|January 8, 2008
An Actn3 knockout mouse provides mechanistic insights into the association between alpha-actinin-3 deficiency and human athletic performanceDaniel G MacArthur, Jane T Seto, Stephen Chan, et al.Nature Communications|June 12, 2020
Eosinophil function in adipose tissue is regulated by Krüppel-like factor 3 (KLF3)Alexander J Knights, Emily J Vohralik, Peter J Houweling, et al.Pageof 34