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Methods in Molecular Biology (Clifton, N.J.)|July 19, 2020
Proximity RNA-seq: A Sequencing Method to Identify Co-localization of RNAJörg Morf, Steven W WingettF1000Research|September 29, 2018
FastQ Screen: A tool for multi-genome mapping and quality controlSteven W Wingett, Simon AndrewsMethods in Molecular Biology (Clifton, N.J.)|October 8, 2017
Capturing Three-Dimensional Genome Organization in Individual Cells by Single-Cell Hi-CTakashi Nagano, Steven W Wingett, Peter FraserScientific Data|January 30, 2020
RNA proximity sequencing data and analysis pipeline from a human neuroblastoma nuclear transcriptomeSteven W Wingett, Simon Andrews, Peter Fraser, et al.Journal of Visualized Experiments : Jove|July 17, 2018
Promoter Capture Hi-C: High-resolution, Genome-wide Profiling of Promoter InteractionsStefan Schoenfelder, Biola-Maria Javierre, Mayra Furlan-Magaril, et al.The EMBO Journal|April 25, 2022
Cellular responses to halofuginone reveal a vulnerability of the GCN2 branch of the integrated stress responseAleksandra P Pitera, Maria Szaruga, Sew-Yeu Peak-Chew, et al.Genome Biology|August 27, 2015
Comparison of Hi-C results using in-solution versus in-nucleus ligationTakashi Nagano, Csilla Várnai, Stefan Schoenfelder, et al.Nature Protocols|November 6, 2015
Single-cell Hi-C for genome-wide detection of chromatin interactions that occur simultaneously in a single cellTakashi Nagano, Yaniv Lubling, Eitan Yaffe, et al.Biorxiv : the Preprint Server for Biology|March 13, 2023
Genome-scale requirements for dynein-based trafficking revealed by a high-content arrayed CRISPR screenChun Hao Wong, Steven W Wingett, Chen Qian, et al.The Journal of Cell Biology|March 6, 2024
Genome-scale requirements for dynein-based transport revealed by a high-content arrayed CRISPR screenChun Hao Wong, Steven W Wingett, Chen Qian, et al.Pageof 4