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  • Large-scale de novo DNA syn... Large-scale de novo DNA synthesis: technologies and applications
    Kosuri, Sriram; Church, George M Nature methods, 05/2014, Volume: 11, Issue: 5
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    For over 60 years, the synthetic production of new DNA sequences has helped researchers understand and engineer biology. Here we summarize methods and caveats for the de novo synthesis of DNA, with ...
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  • Next-Generation Digital Inf... Next-Generation Digital Information Storage in DNA
    Church, George M.; Gao, Yuan; Kosuri, Sriram Science, 09/2012, Volume: 337, Issue: 6102
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    Digital information is accumulating at an astounding rate, straining our ability to store and archive it. DNA is among the most dense and stable information media known. The development of new ...
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  • A Logic-Gated Nanorobot for... A Logic-Gated Nanorobot for Targeted Transport of Molecular Payloads
    Douglas, Shawn M.; Bachelet, Ido; Church, George M. Science (American Association for the Advancement of Science), 02/2012, Volume: 335, Issue: 6070
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    We describe an autonomous DNA nanorobot capable of transporting molecular payloads to cells, sensing cell surface inputs for conditional, triggered activation, and reconfiguring its structure for ...
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  • Rapidly evolving homing CRI... Rapidly evolving homing CRISPR barcodes
    Kalhor, Reza; Mali, Prashant; Church, George M Nature methods, 02/2017, Volume: 14, Issue: 2
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    We present an approach for engineering evolving DNA barcodes in living cells. A homing guide RNA (hgRNA) scaffold directs the Cas9-hgRNA complex to the DNA locus of the hgRNA itself. We show that ...
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  • A Deep Learning Approach to... A Deep Learning Approach to Antibiotic Discovery
    Stokes, Jonathan M.; Yang, Kevin; Swanson, Kyle ... Cell, 02/2020, Volume: 180, Issue: 4
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    Due to the rapid emergence of antibiotic-resistant bacteria, there is a growing need to discover new antibiotics. To address this challenge, we trained a deep neural network capable of predicting ...
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  • Cas9 as a versatile tool fo... Cas9 as a versatile tool for engineering biology
    Mali, Prashant; Esvelt, Kevin M; Church, George M Nature methods, 10/2013, Volume: 10, Issue: 10
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    RNA-guided Cas9 nucleases derived from clustered regularly interspaced short palindromic repeats (CRISPR)-Cas systems have dramatically transformed our ability to edit the genomes of diverse ...
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  • Unified rational protein en... Unified rational protein engineering with sequence-based deep representation learning
    Alley, Ethan C; Khimulya, Grigory; Biswas, Surojit ... Nature methods, 12/2019, Volume: 16, Issue: 12
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    Rational protein engineering requires a holistic understanding of protein function. Here, we apply deep learning to unlabeled amino-acid sequences to distill the fundamental features of a protein ...
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  • Genetically encoded sensors... Genetically encoded sensors enable real-time observation of metabolite production
    Rogers, Jameson K.; Church, George M. Proceedings of the National Academy of Sciences - PNAS, 03/2016, Volume: 113, Issue: 9
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    Engineering cells to produce valuable metabolic products is hindered by the slow and laborious methods available for evaluating product concentration. Consequently, many designs go unevaluated, and ...
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