Search results (500)
« Back to PublicationsA functional overlap between actively transcribed genes and chromatin insulator elements.
Journal article
Cornell LJ. et al, (2026), EMBO J
Facilitators may represent a new class of regulatory elements.
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Kassouf M. et al, (2026), Curr Opin Genet Dev, 97
ATRX loss couples genome instability at a G-rich repeat to dysregulation of human alpha-globin expression.
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Shen Y. et al, (2026), Nat Commun
Switching and Sniffing around the β-globin cluster.
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Higgs D. and Gupta K., (2026), Blood, 147, 609 - 610
Mapping chromatin structure at base-pair resolution unveils a unified model of cis-regulatory element interactions.
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Li H. et al, (2025), Cell, 188, 7175 - 7193.e19
Active regulatory elements recruit cohesin to establish cell specific chromatin domains.
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Georgiades E. et al, (2025), Sci Rep, 15
Identification of new candidate drugs in myelodysplastic syndromes with splicing factor mutations by transcriptional profiling and connectivity map analysis.
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Sun T. et al, (2025), Br J Haematol, 206, 1086 - 1091
Ancient genomic linkage of α-globin and Nprl3 couples metabolism with erythropoiesis.
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Preston AE. et al, (2025), Nat Commun, 16
Author Correction: The α-globin super-enhancer acts in an orientation-dependent manner.
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Kassouf MT. et al, (2025), Nat Commun, 16
The α-globin super-enhancer acts in an orientation-dependent manner.
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Kassouf MT. et al, (2025), Nat Commun, 16
The characteristics of CTCF binding sequences contribute to enhancer blocking activity.
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Tsang FH. et al, (2024), Nucleic Acids Res, 52, 10180 - 10193
Hemoglobin Bart's hydrops fetalis: charting the past and envisioning the future.
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Amid A. et al, (2024), Blood, 144, 822 - 833
Interspecies regulatory landscapes and elements revealed by novel joint systematic integration of human and mouse blood cell epigenomes.
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Xiang G. et al, (2024), Genome Res, 34, 1089 - 1105
Loss-of-Function Variants in SUPT5H as Modifying Factors in Beta-Thalassemia.
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Harteveld CL. et al, (2024), Int J Mol Sci, 25