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101por Muneaki Nakamura, Prashanth Srinivasan, Michael Chavez, Matthew A. Carter, Antonia A. Dominguez, Marie La Russa, Matthew B. Lau, Timothy R. Abbott, Xiaoshu Xu, Dehua Zhao, Yuchen Gao, Nathan H. Kipniss, Christina D. Smolke, Joseph Bondy-Denomy, Lei S. Qi“...Anti-CRISPR proteins derived from phage can abrogate CRISPR activity. The authors repurpose...”
Publicado 2019
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102por Nicky R. Faber, Gus R. McFarlane, R. Chris Gaynor, Ivan Pocrnic, C. Bruce A. Whitelaw, Gregor Gorjanc“... present HD-ClvR in this modelling study, a novel combination of CRISPR-based gene drives that eliminates...”
Publicado 2021
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103
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104por Michael Y. He, Michael M. Halford, Ruofei Liu, James P. Roy, Zoe L. Grant, Leigh Coultas, Niko Thio, Omer Gilan, Yih-Chih Chan, Mark A. Dawson, Marc G. Achen, Steven A. Stacker“...Through three-dimensional CRISPR screening, He et al. report that functional inhibition of BET...”
Publicado 2021
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105por Tiruneh G/Medhin M, Chekol Abebe E, Sisay T, Berhane N, Bekele Snr T, Asmamaw Dejenie TMaterias: “...crispr...”
Publicado 2021
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106
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107por Nannan Duan, Shuqing Tang, Baitao Zeng, Zhiqing Hu, Qian Hu, Lingqian Wu, Miaojin Zhou, Desheng LiangMaterias: “...CRISPR/Cas12a...”
Publicado 2021
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108por Barkha Binyameen, Zulqurnain Khan, Sultan Habibullah Khan, Aftab Ahmad, Nayla Munawar, Muhammad Salman Mubarik, Hasan Riaz, Zulfiqar Ali, Asif Ali Khan, Alaa T. Qusmani, Kamel A. Abd-Elsalam, Sameer H. QariMaterias: “...CRISPR/Cas...”
Publicado 2021
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109por Ahmed A. Gomaa, Heidi E. Klumpe, Michelle L. Luo, Kurt Selle, Rodolphe Barrangou, Chase L. Beisel“...ABSTRACT CRISPR (clustered regularly interspaced short palindromic repeats)-Cas (CRISPR-associated...”
Publicado 2014
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110
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111por Cui Zhang, Bo Xiao, Yuanyuan Jiang, Yihua Zhao, Zhenkui Li, Han Gao, Yuan Ling, Jun Wei, Shaoneng Li, Mingke Lu, Xin-zhuan Su, Huiting Cui, Jing Yuan“..., and current methods for editing the parasite genes have been inefficient. The CRISPR/Cas9 (clustered regularly...”
Publicado 2014
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112“... interspaced short palindromic repeat (CRISPR) shows a large variability of spacers. Modeling bacterial strains...”
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113por Valmik K. Vyas, G. Guy Bushkin, Douglas A. Bernstein, Matthew A. Getz, Magdalena Sewastianik, M. Inmaculada Barrasa, David P. Bartel, Gerald R. FinkMaterias: “...CRISPR...”
Publicado 2018
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114“...ABSTRACT Clustered, regularly interspaced short palindromic repeats (CRISPR) provide bacteria...”
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115por Aude Bernheim, Alicia Calvo-Villamañán, Clovis Basier, Lun Cui, Eduardo P. C. Rocha, Marie Touchon, David Bikard“...The double-strand breaks generated by CRISPR-Cas systems are the target of multiple DNA repair...”
Publicado 2017
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116“...Type III CRISPR-Cas systems are able to target transcriptionally active DNA sequences in phages...”
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117por Tarun S. Nambiar, Pierre Billon, Giacomo Diedenhofen, Samuel B. Hayward, Angelo Taglialatela, Kunheng Cai, Jen-Wei Huang, Giuseppe Leuzzi, Raquel Cuella-Martin, Andrew Palacios, Anuj Gupta, Dieter Egli, Alberto Ciccia“...Manipulating DNA repair pathways can be used to improve the outcomes of CRISPR-based genome editing...”
Publicado 2019
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118por Hiroyuki Morisaka, Kazuto Yoshimi, Yuya Okuzaki, Peter Gee, Yayoi Kunihiro, Ekasit Sonpho, Huaigeng Xu, Noriko Sasakawa, Yuki Naito, Shinichiro Nakada, Takashi Yamamoto, Shigetoshi Sano, Akitsu Hotta, Junji Takeda, Tomoji Mashimo“...Class 1 CRISPR systems are not as developed for genome editing as Class 2 systems are. Here...”
Publicado 2019
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119por Jackson Champer, Esther Lee, Emily Yang, Chen Liu, Andrew G. Clark, Philipp W. Messer“...CRISPR homing gene drives are highly invasive and can fail due to the rapid evolution of resistance...”
Publicado 2020
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120por Abdullah O. Khan, Victoria A. Simms, Jeremy A. Pike, Steven G. Thomas, Neil V. Morgan“... fluorophores through CRISPR-Cas9 offers an excellent opportunity for generating stable cell lines expressing a...”
Publicado 2017
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