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761por Jingchun Du, Yougui Xiang, Hua Liu, Shuzhen Liu, Ashwani Kumar, Chao Xing, Zhigao Wang“... residues. Here, the authors use a CRISPR whole genome screen to identify that protein phosphatase 1...”
Publicado 2021
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762por Samantha G. Scharenberg, Edina Poletto, Katherine L. Lucot, Pasqualina Colella, Adam Sheikali, Thomas J. Montine, Matthew H. Porteus, Natalia Gomez-Ospina“... expression. Here, the authors describe a CRISPR/Cas9-based gene-editing approach to re-express this enzyme...”
Publicado 2020
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763por Motoki Takaku, Sara A. Grimm, John D. Roberts, Kaliopi Chrysovergis, Brian D. Bennett, Page Myers, Lalith Perera, Charles J. Tucker, Charles M. Perou, Paul A. Wade“... is unclear. Here, the authors utilise CRISPR-Cas9 to model frame-shift mutations in zinc finger 2 of GATA3...”
Publicado 2018
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764por Hiroki Sasaguri, Kenichi Nagata, Misaki Sekiguchi, Ryo Fujioka, Yukio Matsuba, Shoko Hashimoto, Kaori Sato, Deepika Kurup, Takanori Yokota, Takaomi C. Saido“...CRISPR-guided cytidine deaminases, including BE3 (Base Editor 3) and Target-AID (activation-induced...”
Publicado 2018
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765por Fernando Orden Rueda, Michal Bista, Matthew D. Newton, Anne U. Goeppert, M. Emanuela Cuomo, Euan Gordon, Felix Kröner, Jon A. Read, Jonathan D. Wrigley, David Rueda, Benjamin J. M. Taylor“...CRISPR-Cas9 systems are being continually improved to enhance specificity and improve functionality...”
Publicado 2017
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766Hit-and-run epigenetic editing prevents senescence entry in primary breast cells from healthy donorspor Emily A. Saunderson, Peter Stepper, Jennifer J. Gomm, Lily Hoa, Adrienne Morgan, Michael D. Allen, J. Louise Jones, John G. Gribben, Tomasz P. Jurkowski, Gabriella Ficz“... it is sufficient to drive transformation. Here, the authors use CRISPR-dCas9 to perform hit-and-run epigenetic...”
Publicado 2017
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767por Eleonora Ottina, Victor Peperzak, Katia Schoeler, Emma Carrington, Roswitha Sgonc, Marc Pellegrini, Simon Preston, Marco J. Herold, Andreas Strasser, Andreas Villunger“... and for CRISPR/Cas9-based systems. Here the authors show that DNA-bound Tet-transactivators can induce cell death...”
Publicado 2017
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768por Man-Tat Lau, John Manion, Jamie B. Littleboy, Lisa Oyston, Thang M. Khuong, Qiao-Ping Wang, David T. Nguyen, Daniel Hesselson, Jamie E. Seymour, G. Gregory Neely“.... Here, Lau et al. perform a CRISPR screen to identify genes required for venom action and use...”
Publicado 2019
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769por Ioannis Mougiakos, Prarthana Mohanraju, Elleke F. Bosma, Valentijn Vrouwe, Max Finger Bou, Mihris I. S. Naduthodi, Alex Gussak, Rudolf B. L. Brinkman, Richard van Kranenburg, John van der Oost“...CRISPR-Cas9 genome engineering tools have found wide application in a range of species, however...”
Publicado 2017
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770por Upneet K. Sokhi, Mark P. Liber, Laura Frye, Sungho Park, Kyuho Kang, Tania Pannellini, Baohong Zhao, Rada Norinsky, Lionel B. Ivashkiv, Shiaoching Gong“..., the authors use BAC transgenics combined with CRISPR- and recombineering-mediated genome editing to dissect...”
Publicado 2018
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771por Yuting Guan, Xiujie Liang, Ziyuan Ma, Hailong Hu, Hongbo Liu, Zhen Miao, Andreas Linkermann, Jacklyn N. Hellwege, Benjamin F. Voight, Katalin Susztak“..., the authors investigate a kidney disease GWAS locus with functional genomics data, CRISPR editing and mouse...”
Publicado 2021
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772por Hyo Min Park, Hui Liu, Joann Wu, Anthony Chong, Vanessa Mackley, Christof Fellmann, Anirudh Rao, Fuguo Jiang, Hunghao Chu, Niren Murthy, Kunwoo Lee“...Optimization of the recently discovered Class 2 CRISPR protein Cpf1 has the potential to promote...”
Publicado 2018
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773por David Cano-Rodriguez, Rutger A F. Gjaltema, Laura J Jilderda, Pytrick Jellema, Jelleke Dokter-Fokkens, Marcel H J. Ruiters, Marianne G Rots“...Epigenome editing by zinc finger (ZF) and CRISPR-dCas9 technologies can induce or repress gene...”
Publicado 2016
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774por Roisin E. O’Brien, Inês C. Santos, Daniel Wrapp, Jack P. K. Bravo, Evan A. Schwartz, Jennifer S. Brodbelt, David W. Taylor“...Type I-C Cascade (the CRISPR-associated complex for antiviral defense) is a minimal system...”
Publicado 2020
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775por Anuska Das, Travis H. Hand, Chardasia L. Smith, Ethan Wickline, Michael Zawrotny, Hong Li“...Acidothermus cellulolyticus CRISPR-Cas9 (AceCas9) is a Type II-C enzyme that cleaves DNA in a...”
Publicado 2020
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776por Andrew D. Johnston, Claudia A. Simões-Pires, Taylor V. Thompson, Masako Suzuki, John M. Greally“..., can alter transcription factor binding, and use CRISPR-Cas9 to reveal localization...”
Publicado 2019
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777por Stefan Kol, Daniel Ley, Tune Wulff, Marianne Decker, Johnny Arnsdorf, Sanne Schoffelen, Anders Holmgaard Hansen, Tanja Lyholm Jensen, Jahir M. Gutierrez, Austin W. T. Chiang, Helen O. Masson, Bernhard O. Palsson, Bjørn G. Voldborg, Lasse Ebdrup Pedersen, Helene Faustrup Kildegaard, Gyun Min Lee, Nathan E. Lewis“... the authors use modelling and CRISPR to delete secreted host proteins in CHO cells, leading to improved...”
Publicado 2020
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778“..., based on combined CRISPR-Cas9 and micro-homology-mediated end joining....”
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779por Timothy J. Satchwell, Katherine E. Wright, Katy L. Haydn-Smith, Fernando Sánchez-Román Terán, Pedro L. Moura, Joseph Hawksworth, Jan Frayne, Ashley M. Toye, Jake Baum“... and development of Plasmodium falciparum and use CRISPR-mediated gene knockout and complementation of an invasion...”
Publicado 2019
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780por Serif Senturk, Nitin H. Shirole, Dawid G. Nowak, Vincenzo Corbo, Debjani Pal, Alexander Vaughan, David A. Tuveson, Lloyd C. Trotman, Justin B. Kinney, Raffaella Sordella“...CRISPR/Cas9-based genome editing enables specific deletion of target genes. Here, Senturket al...”
Publicado 2017
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