-
801“... in biocrusts. Prophage elements and CRISPR-Cas repeats in Firmicutes metagenome-assembled genomes (MAGs...”
Enlace del recurso
article -
802por Dalia Denapaite, Martin Rieger, Sophie Köndgen, Reinhold Brückner, Irma Ochigava, Peter Kappeler, Kerstin Mätz-Rensing, Fabian Leendertz, Regine Hakenbeck“... interspaced short palindromic repeat (CRISPR)–CRISPR-associated protein (Cas) gene clusters were common among...”
Publicado 2016
Enlace del recurso
article -
803por Xinyi Yang, Xiaying Zhao, Yuqi Zhu, Yinzhong Shen, Yanan Wang, Panpan Lu, Zhengtao Jiang, Hanyu Pan, Jinlong Yang, Jingna Xun, Lin Zhao, Jing Wang, Zhiming Liang, Xiaoting Shen, Yue Liang, Qinru Lin, Huitong Liang, Lu Jin, Dengji Zhang, Jun Liu, Bin Wang, Shibo Jiang, Jianqing Xu, Hao Wu, Hongzhou Lu, Huanzhang Zhu“... that FKBP3 may be related to HIV-1 latency using CRISPR screening. In this study, we knocked out the FKBP3...”
Publicado 2021
Enlace del recurso
article -
804por Siyuan Ding, Jonathan Diep, Ningguo Feng, Lili Ren, Bin Li, Yaw Shin Ooi, Xin Wang, Kevin F. Brulois, Linda L. Yasukawa, Xingnan Li, Calvin J. Kuo, David A. Solomon, Jan E. Carette, Harry B. Greenberg“... roles during cell division. Here in a genome-wide CRISPR-Cas9 screen, the authors identify a novel role...”
Publicado 2018
Enlace del recurso
article -
805por Thomas Strub, Flavia G. Ghiraldini, Saul Carcamo, Man Li, Aleksandra Wroblewska, Rajendra Singh, Matthew S. Goldberg, Dan Hasson, Zichen Wang, Stuart J. Gallagher, Peter Hersey, Avi Ma’ayan, Georgina V. Long, Richard A. Scolyer, Brian Brown, Bin Zheng, Emily Bernstein“... develop a CRISPR-Cas9 screen targeting epigenetic regulators and discover that SIRT6 haploinsufficiency...”
Publicado 2018
Enlace del recurso
article -
806por Pierre Bourguet, Colette L. Picard, Ramesh Yelagandula, Thierry Pélissier, Zdravko J. Lorković, Suhua Feng, Marie-Noëlle Pouch-Pélissier, Anna Schmücker, Steven E. Jacobsen, Frédéric Berger, Olivier Mathieu“..., by characterizing a null mutant created by CRISPR, the authors show that previous reported function of H2A.W...”
Publicado 2021
Enlace del recurso
article -
807por David W. Morgens, Michael Wainberg, Evan A. Boyle, Oana Ursu, Carlos L. Araya, C. Kimberly Tsui, Michael S. Haney, Gaelen T. Hess, Kyuho Han, Edwin E. Jeng, Amy Li, Michael P. Snyder, William J. Greenleaf, Anshul Kundaje, Michael C. Bassik“...CRISPR-Cas9 screens are powerful high-throughput tools but can be confounded by nuclease toxicity...”
Publicado 2017
Enlace del recurso
article -
808Integrative oncogene-dependency mapping identifies RIT1 vulnerabilities and synergies in lung cancerpor Athea Vichas, Amanda K. Riley, Naomi T. Nkinsi, Shriya Kamlapurkar, Phoebe C. R. Parrish, April Lo, Fujiko Duke, Jennifer Chen, Iris Fung, Jacqueline Watson, Matthew Rees, Austin M. Gabel, James D. Thomas, Robert K. Bradley, John K. Lee, Emily M. Hatch, Marina K. Baine, Natasha Rekhtman, Marc Ladanyi, Federica Piccioni, Alice H. Berger“.... Here the authors examine genetic dependencies of mutant RIT1 with genome-wide CRISPR screens, revealing...”
Publicado 2021
Enlace del recurso
article -
809por Rajeev Rai, Marianna Romito, Elizabeth Rivers, Giandomenico Turchiano, Georges Blattner, Winston Vetharoy, Dariusz Ladon, Geoffroy Andrieux, Fang Zhang, Marta Zinicola, Diego Leon-Rico, Giorgia Santilli, Adrian J. Thrasher, Alessia Cavazza“... blood disorders. Here the authors develop a CRISPR/Cas9-based genome editing strategy that allows...”
Publicado 2020
Enlace del recurso
article -
810por Pietro Giuseppe Mazzara, Sharon Muggeo, Mirko Luoni, Luca Massimino, Mattia Zaghi, Parisa Tajalli-Tehrani Valverde, Simone Brusco, Matteo Jacopo Marzi, Cecilia Palma, Gaia Colasante, Angelo Iannielli, Marianna Paulis, Chiara Cordiglieri, Serena Gea Giannelli, Paola Podini, Cinzia Gellera, Franco Taroni, Francesco Nicassio, Marco Rasponi, Vania Broccoli“... and demonstrate potential correction of the phenotype by CRISPR based editing....”
Publicado 2020
Enlace del recurso
article -
811por J. Mathieu, D. Detraux, D. Kuppers, Y. Wang, C. Cavanaugh, S. Sidhu, S. Levy, A. M. Robitaille, A. Ferreccio, T. Bottorff, A. McAlister, L. Somasundaram, F. Artoni, S. Battle, R. D. Hawkins, R. T. Moon, C. B. Ware, P. J. Paddison, H. Ruohola-Baker“.... Here, the authors performed a CRISPR-based screen to identify genes that promote exit from naïve...”
Publicado 2019
Enlace del recurso
article -
812por Weipeng Zhang, Wei Ding, Yong-Xin Li, Chunkit Tam, Salim Bougouffa, Ruojun Wang, Bite Pei, Hoyin Chiang, Pokman Leung, Yanhong Lu, Jin Sun, He Fu, Vladimir B Bajic, Hongbin Liu, Nicole S. Webster, Pei-Yuan Qian“... diversity in the oceans by more than 20% and revealing new biosynthetic gene clusters and CRISPR-Cas systems....”
Publicado 2019
Enlace del recurso
article -
813por Ryan S. Soderquist, Lorin Crawford, Esther Liu, Min Lu, Anika Agarwal, Grace R. Anderson, Kevin H. Lin, Peter S. Winter, Merve Cakir, Kris C. Wood“... of BCL-2 family members, and using a CRISPR screen find BCL-w and BFL-1 to mediate resistance to BH3...”
Publicado 2018
Enlace del recurso
article -
814por Ian P. Winters, Shin-Heng Chiou, Nicole K. Paulk, Christopher D. McFarland, Pranav V. Lalgudi, Rosanna K. Ma, Leszek Lisowski, Andrew J. Connolly, Dmitri A. Petrov, Mark A. Kay, Monte M. Winslow“..., the authors present a CRISPR/Cas9-based platform to simultaneously investigate multiple activating point...”
Publicado 2017
Enlace del recurso
article -
815por Aamir Mir, Julia F. Alterman, Matthew R. Hassler, Alexandre J. Debacker, Edward Hudgens, Dimas Echeverria, Michael H. Brodsky, Anastasia Khvorova, Jonathan K. Watts, Erik J. Sontheimer“...Resistance of gRNA to ubiquitous ribonucleases is required for CRISPR-Cas9-based therapeutics. Here...”
Publicado 2018
Enlace del recurso
article -
816por Haitao Chen, Yan Zeng, Yongzhi Yang, Lingli Huang, Bolin Tang, He Zhang, Fei Hao, Wei Liu, Youhan Li, Yanbin Liu, Xiaoshuang Zhang, Ru Zhang, Yesheng Zhang, Yongxin Li, Kun Wang, Hua He, Zhongkai Wang, Guangyi Fan, Hui Yang, Aike Bao, Zhanhuan Shang, Jianghua Chen, Wen Wang, Qiang Qiu“... assembly of the autotetraploid genome and a CRISPR/Cas9-based transgene-free genome editing protocol....”
Publicado 2020
Enlace del recurso
article -
817“... reactivation. Clustered regularly interspaced short palindromic repeat(s) (CRISPR)-mediated knockout of EZH2...”
Enlace del recurso
article -
818por Mayara S. Bertolini, Miguel A. Chiurillo, Noelia Lander, Anibal E. Vercesi, Roberto Docampo“... the CRISPR/Cas9 system (i.e., clustered regularly interspaced short palindromic repeats with Cas9), we...”
Publicado 2019
Enlace del recurso
article -
819“... regularly interspaced short palindromic repeat (CRISPR)/Cas9-mediated knockouts in primary fibroblasts...”
Enlace del recurso
article -
820por Daniel Heinzer, Merve Avar, Daniel Patrick Pease, Ashutosh Dhingra, Jiang-An Yin, Elke Schaper, Berre Doğançay, Marc Emmenegger, Anna Spinelli, Kevin Maggi, Andra Chincisan, Simon Mead, Simone Hornemann, Peter Heutink, Adriano Aguzzi“... yielded 54 novel regulators of PrPC, 9 of which were confirmed by CRISPR interference as robust regulators...”
Publicado 2021
Enlace del recurso
article