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American Journal of Human Genetics|January 11, 2016
Invariant TAD Boundaries Constrain Cell-Type-Specific Looping Interactions between Promoters and Distal Elements around the CFTR LocusEmily M Smith, Bryan R Lajoie, Gaurav Jain, et al.Journal of Visualized Experiments : Jove|February 6, 2023
Capturing Chromosome Conformation Across Length ScalesLiyan Yang, Betul Akgol Oksuz, Job Dekker, et al.Current Protocols in Molecular Biology|February 12, 2008
Mapping chromatin interactions by chromosome conformation captureAdriana Miele, Nele Gheldof, Tomoko M Tabuchi, et al.Genes & Development|January 15, 2017
CTCF-mediated topological boundaries during development foster appropriate gene regulationVarun Narendra, Milica Bulajić, Job Dekker, et al.Methods (San Diego, Calif.)|November 10, 2012
From cells to chromatin: capturing snapshots of genome organization with 5C technologyMaria A Ferraiuolo, Amartya Sanyal, Natalia Naumova, et al.Nature Structural & Molecular Biology|September 15, 2020
Multi-contact 3C reveals that the human genome during interphase is largely not entangledFilipe Tavares-Cadete, Davood Norouzi, Bastiaan Dekker, et al.Nature Methods|September 24, 2020
Detecting chromatin interactions between and along sister chromatids with SisterCMarlies E Oomen, Adam K Hedger, Jonathan K Watts, et al.Genes & Development|April 25, 2009
Mechanisms that regulate localization of a DNA double-strand break to the nuclear peripheryPranav Oza, Sue L Jaspersen, Adriana Miele, et al.Genome Research|January 19, 2019
CTCF sites display cell cycle-dependent dynamics in factor binding and nucleosome positioningMarlies E Oomen, Anders S Hansen, Yu Liu, et al.Human Genetics|December 16, 2006
High-resolution mapping identifies a commonly amplified 11q13.3 region containing multiple genes flanked by segmental duplicationsJohan H Gibcus, Klaas Kok, Lorian Menkema, et al.Pageof 21