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Liu, David

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Liu

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Liu, David

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Now showing 1 - 3 of 3
  • Publication

    High-throughput continuous evolution of compact Cas9 variants targeting single-nucleotide-pyrimidine PAMs

    (Springer Science and Business Media LLC, 2022-09-08) Huang, Tony P.; Heins, Zachary J.; Miller, Shannon M.; Wong, Brandon G.; Balivada, Pallavi A.; Wang, Tina; Khalil, Ahmad S.; Liu, David R.; Liu, David

    Despite the availability of Cas9 variants with varied protospacer-adjacent motif (PAM) compatibilities, some genomic loci—especially those with pyrimidine-rich PAM sequences—remain inaccessible by high-activity Cas9 proteins. Moreover, broadening PAM sequence compatibility through engineering can increase off-target activity. With directed evolution, we generated four Cas9 variants that together enable targeting of most pyrimidine-rich PAM sequences in the human genome. Using phage-assisted noncontinuous evolution and eVOLVER-supported phage-assisted continuous evolution, we evolved Nme2Cas9, a compact Cas9 variant, into variants that recognize single-nucleotide pyrimidine-PAM sequences. We developed a general selection strategy that requires functional editing with fully specified target protospacers and PAMs. We applied this selection to evolve high-activity variants eNme2-T.1, eNme2-T.2, eNme2-C and eNme2-C.NR. Variants eNme2-T.1 and eNme2-T.2 offer access to N4TN PAM sequences with comparable editing efficiencies as existing variants, while eNme2-C and eNme2-C.NR offer less restrictive PAM requirements, comparable or higher activity in a variety of human cell types and lower off-target activity at N4CN PAM sequences.

  • Publication

    Phage-assisted evolution of an adenine base editor with improved Cas domain compatibility and activity

    (Springer Science and Business Media LLC, 2020-03-16) Richter, Michelle F.; Zhao, Kevin T.; Eton, Elliot; Lapinaite, Audrone; Newby, Gregory A.; Thuronyi, B W.; Wilson, Christopher; Koblan, Luke W.; Zeng, Jing; Bauer, Daniel E.; Doudna, Jennifer A.; Liu, David
  • Publication

    Evaluation and minimization of Cas9-independent off-target DNA editing by cytosine base editors

    (Springer Science and Business Media LLC, 2020-02-10) Doman, Jordan; Raguram, Aditya; Newby, Gregory; Liu, David