High-performance chemical- and light-inducible recombinases in mammalian cells and mice
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Jacob Beal | Benjamin H. Weinberg | Wilson W. Wong | Nathan Tague | J. Beal | W. Wong | Yash Agarwal | Jang Hwan Cho | Yash Agarwal | Maciej Walkosz | Charina Ortega | Micaela Trexler | Billy Law | Justin Letendre | N. T. Hang Pham | Leidy D. Caraballo | William K. J. Benman | J. Cho | Charina Ortega | L. D. Caraballo | Justin H. Letendre | Nathan Tague | Micaela Trexler | W. Benman | N. T. H. Pham | Maciej Walkosz | B. Law | Jang Hwan Cho | Yash Agarwal | Maciej Walkosz | Charina Ortega | Micaela Trexler | Billy Law | William K. J. Benman | Jacob Beal | Wilson W. Wong | Jang Hwan Cho | Yash Agarwal | Maciej Walkosz | Charina Ortega | Micaela Trexler | Billy Law | Jacob Beal | Wilson W. Wong
[1] E. Petricoin,et al. Preinvasive and invasive ductal pancreatic cancer and its early detection in the mouse. , 2003, Cancer cell.
[2] Robert DeRose,et al. Rapid and orthogonal logic gating with a gibberellin-induced dimerization system. , 2012, Nature chemical biology.
[3] T. Lu,et al. Synthetic recombinase-based state machines in living cells , 2016, Science.
[4] G. Crabtree,et al. Engineering the ABA Plant Stress Pathway for Regulation of Induced Proximity , 2011, Science Signaling.
[5] Andras Nagy,et al. Cre recombinase: The universal reagent for genome tailoring , 2000, Genesis.
[6] Timothy S. Ham,et al. Design and Construction of a Double Inversion Recombination Switch for Heritable Sequential Genetic Memory , 2008, PloS one.
[7] R. Sprengel,et al. Split-Cre Complementation Indicates Coincident Activity of Different Genes In Vivo , 2009, PloS one.
[8] M. Yazawa,et al. A photoactivatable Cre-loxP recombination system for optogenetic genome engineering. , 2016, Nature chemical biology.
[9] Simon Pieraut,et al. Inducible control of gene expression with destabilized Cre , 2013, Nature Methods.
[10] Lei Yang,et al. Permanent genetic memory with >1 byte capacity , 2014, Nature Methods.
[11] Timothy K Lu,et al. Synthetic circuits integrating logic and memory in living cells , 2013, Nature Biotechnology.
[12] A. Enjalbert,et al. Regulation of Cre recombinase by ligand-induced complementation of inactive fragments. , 2003, Nucleic acids research.
[13] Adolfas K Gaigalas,et al. Assignment of the Number of Equivalent Reference Fluorophores to Dyed Microspheres. , 2016, Journal of research of the National Institute of Standards and Technology.
[14] P Chambon,et al. Regulation of Cre recombinase activity by mutated estrogen receptor ligand-binding domains. , 1997, Biochemical and biophysical research communications.
[15] T. Jacks,et al. Analysis of lung tumor initiation and progression using conditional expression of oncogenic K-ras. , 2001, Genes & development.
[16] Jacob Beal,et al. Bioengineering and Biotechnology Review Article Bridging the Gap: a Roadmap to Breaking the Biological Design Barrier , 2022 .
[17] Allan R. Jones,et al. A robust and high-throughput Cre reporting and characterization system for the whole mouse brain , 2009, Nature Neuroscience.
[18] Takanari Inoue,et al. Cellular Signaling Circuits Interfaced with Synthetic, Post-Translational, Negating Boolean Logic Devices , 2014, ACS synthetic biology.
[19] B. Hoffer,et al. Generalized tetracycline induced Cre recombinase expression through the ROSA26 locus of recombinant mice , 2009, Journal of Neuroscience Methods.
[20] L. Corrochano,et al. Transcriptional basis of enhanced photoinduction of carotenoid biosynthesis at low temperature in the fungus Neurospora crassa. , 2017, Research in microbiology.
[21] P. Angrand,et al. Regulation of Cre recombinase activity by the synthetic steroid RU 486. , 1996, Nucleic acids research.
[22] Helen H Yang,et al. Permanent genetic access to transiently active neurons via TRAP: targeted recombination in active populations. , 2013, Neuron.
[23] P. Chambon,et al. Conditional site-specific recombination in mammalian cells using a ligand-dependent chimeric Cre recombinase. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[24] W. Brown,et al. Accuracy and efficiency define Bxb1 integrase as the best of fifteen candidate serine recombinases for the integration of DNA into the human genome , 2013, BMC Biotechnology.
[25] Jacob Beal,et al. A Method for Fast, High-Precision Characterization of Synthetic Biology Devices , 2012 .
[26] K. Rutherford,et al. Large serine recombinase domain structure and attachment site binding , 2013, Critical reviews in biochemistry and molecular biology.
[27] T. Jacks,et al. Restoration of p53 function leads to tumour regression in vivo , 2007, Nature.
[28] Shandar Ahmad,et al. ASAView: Database and tool for solvent accessibility representation in proteins , 2003, BMC Bioinformatics.
[29] Johannes Söding,et al. The HHpred interactive server for protein homology detection and structure prediction , 2005, Nucleic Acids Res..
[30] F. Guo,et al. Structure of Cre recombinase complexed with DNA in a site-specific recombination synapse , 1997, Nature.
[31] Drew Endy,et al. Amplifying Genetic Logic Gates , 2013, Science.
[32] Christian Veltkamp,et al. A next-generation dual-recombinase system for time- and host-specific targeting of pancreatic cancer , 2014, Nature Medicine.
[33] Suzanne M. Hunt,et al. The PAS/LOV protein VIVID controls temperature compensation of circadian clock phase and development in Neurospora crassa. , 2007, Genes & development.
[34] Swapnil Bhatia,et al. A single-layer platform for Boolean logic and arithmetic through DNA excision in mammalian cells , 2017, Nature Biotechnology.
[35] Andreas Möglich,et al. Engineering of temperature- and light-switchable Cas9 variants , 2013, Nucleic acids research.