Le Cong

Affiliations: 
2014 Biology: Medical Sciences, Division of Harvard University, Cambridge, MA, United States 
 2017 Biology, Bioengineering, McGovern Institute Massachusetts Institute of Technology, Cambridge, MA, United States 
 2017 Zhang Lab, Regev Lab Broad Institute (MIT/Harvard) 
 2018- Pathology, Genetics, Wu Tsai Neuroscience Institute Stanford University, Palo Alto, CA 
Website:
https://profiles.stanford.edu/186687
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"Le Cong"
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SNBCP

Parents

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Feng Zhang grad student MIT (Neurotree)
George  M. Church grad student 2014 Harvard
 (Genome Engineering Technology and Its Application in Mammalian Cells.)
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Publications

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Marsiglia J, Vaalavirta K, Knight E, et al. (2024) Computationally guided high-throughput engineering of an anti-CRISPR protein for precise genome editing in human cells. Cell Reports Methods. 4: 100882
Hebert JD, Xu H, Tang YJ, et al. (2024) Modeling the genomic complexity of human cancer using Cas12a mice. Biorxiv : the Preprint Server For Biology
Wang X, Xu G, Johnson WA, et al. (2023) Long sequence insertion via CRISPR/Cas gene-editing with transposase, recombinase, and integrase. Current Opinion in Biomedical Engineering. 28
Wang C, Xia Q, Zhang Q, et al. (2022) CRISPR-Cas12a System With Synergistic Phage Recombination Proteins for Multiplex Precision Editing in Human Cells. Frontiers in Cell and Developmental Biology. 9: 719705
Wang C, Qu Y, Cheng JKW, et al. (2022) dCas9-based gene editing for cleavage-free genomic knock-in of long sequences. Nature Cell Biology. 24: 268-278
Wang C, Cheng JKW, Zhang Q, et al. (2021) Microbial single-strand annealing proteins enable CRISPR gene-editing tools with improved knock-in efficiencies and reduced off-target effects. Nucleic Acids Research
Nidetz NF, McGee MC, Tse LV, et al. (2019) Adeno-associated viral vector-mediated immune responses: Understanding barriers to gene delivery. Pharmacology & Therapeutics. 107453
Luan B, Xu G, Feng M, et al. (2019) Combined Computational-Experimental Approach to Explore Molecular Mechanism of SaCas9 with Broadened DNA Targeting Range. Journal of the American Chemical Society
Cleary B, Cong L, Cheung A, et al. (2017) Efficient Generation of Transcriptomic Profiles by Random Composite Measurements. Cell
Cong L. (2017) CRISPR: Groundbreaking technology for RNA-guided genome engineering. Analytical Biochemistry
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