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Nature|July 21, 2016
Structural organization of the inactive X chromosome in the mouseLuca Giorgetti, Bryan R Lajoie, Ava C Carter, et al.Proceedings of the National Academy of Sciences of the United States of America|October 30, 2016
Crystal structure of the DNA binding domain of the transcription factor T-bet suggests simultaneous recognition of distant genome sitesCe Feng Liu, Gabriel S Brandt, Quyen Q Hoang, et al.Life Science Alliance|November 21, 2023
Enhancer-driven 3D chromatin domain folding modulates transcription in human mammary tumor cellsSilvia Kocanova, Flavien Raynal, Isabelle Goiffon, et al.Nature Cell Biology|February 18, 2022
Spatial organization of transcribed eukaryotic genesSusanne Leidescher, Johannes Ribisel, Simon Ullrich, et al.Nature Communications|October 5, 2019
Highly structured homolog pairing reflects functional organization of the Drosophila genomeJumana AlHaj Abed, Jelena Erceg, Anton Goloborodko, et al.Nature Methods|May 9, 2018
C-BERST: defining subnuclear proteomic landscapes at genomic elements with dCas9-APEX2Xin D Gao, Li-Chun Tu, Aamir Mir, et al.Cell Reports|January 26, 2016
Extremely Long-Range Chromatin Loops Link Topological Domains to Facilitate a Diverse Antibody RepertoireLindsey Montefiori, Robert Wuerffel, Damian Roqueiro, et al.Biochimica Et Biophysica Acta|August 13, 2016
RUNX1 contributes to higher-order chromatin organization and gene regulation in breast cancer cellsA Rasim Barutcu, Deli Hong, Bryan R Lajoie, et al.Science (New York, N.Y.)|October 9, 2025
mRNA initiation and termination are spatially coordinatedEzequiel Calvo-Roitberg, Christine L Carroll, GyeungYun Kim, et al.Genome Biology and Evolution|March 29, 2022
Chromosome-Level Reference Genomes for Two Strains of Caenorhabditis briggsae: An Improved Platform for Comparative GenomicsLewis Stevens, Nicolas D Moya, Robyn E Tanny, et al.Pageof 21