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Multiplex Genome Engineering Using CRISPR/Cas Systems

Le Cong; F. Ann Ran; David Cox; Shuailiang Lin; Robert P. J. Barretto; Naomi Habib; Patrick D. Hsu; Xuebing Wu · Science · 2013

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Functional elucidation of causal genetic variants and elements requires precise genome editing technologies. The type II prokaryotic CRISPR (clustered regularly interspaced short palindromic repeats)/Cas adaptive immune system has been shown to facilitate RNA-guided site-specific DNA cleavage. We engineered two different type II CRISPR/Cas systems and demonstrate that Cas9 nucleases can be directed by short RNAs to induce precise cleavage at endogenous genomic loci in human and mouse cells. Cas9 can also be converted into a nicking enzyme to facilitate homology-directed repair with minimal mutagenic activity. Lastly, multiple guide sequences can be encoded into a single CRISPR array to enable simultaneous editing of several sites within the mammalian genome, demonstrating easy programmability and wide applicability of the RNA-guided nuclease technology.

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APA 7

Cong, L, Ran, F. A, Cox, D, Lin, S, Barretto, R. P. J, Habib, N, Hsu, P. D, & Wu, X. (2013). Multiplex Genome Engineering Using CRISPR/Cas Systems. https://doi.org/10.1126/science.1231143

MLA

Cong, Le, et al. "Multiplex Genome Engineering Using CRISPR/Cas Systems." 2013. https://doi.org/10.1126/science.1231143.

Chicago

Cong, Le, F. Ann Ran, David Cox, Shuailiang Lin, Robert P. J. Barretto, Naomi Habib, Patrick D. Hsu, and Xuebing Wu. 2013. "Multiplex Genome Engineering Using CRISPR/Cas Systems.". https://doi.org/10.1126/science.1231143.

Harvard

Cong, L. et al. 2013, Multiplex Genome Engineering Using CRISPR/Cas Systems, Science, available at: https://doi.org/10.1126/science.1231143 [Accessed 8 Aug. 2026].

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Title
Multiplex Genome Engineering Using CRISPR/Cas Systems
Author / contributors
Le Cong; F. Ann Ran; David Cox; Shuailiang Lin; Robert P. J. Barretto; Naomi Habib; Patrick D. Hsu; Xuebing Wu
Publisher
Science
Publication year
2013
Language
English

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