F
Feng Zhang
Researcher at Fudan University
Publications - 2715
Citations - 225233
Feng Zhang is an academic researcher from Fudan University. The author has contributed to research in topics: Medicine & Biology. The author has an hindex of 172, co-authored 1278 publications receiving 181865 citations. Previous affiliations of Feng Zhang include Cincinnati Children's Hospital Medical Center & Nanjing Medical University.
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Parvalbumin neurons and gamma rhythms enhance cortical circuit performance
TL;DR: Optogenetics opens the door to a new kind of informational analysis of brain function, permitting quantitative delineation of the functional significance of individual elements in the emergent operation and function of intact neural circuitry.
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Genome-scale transcriptional activation by an engineered CRISPR-Cas9 complex
Silvana Konermann,Mark D. Brigham,Alexandro E. Trevino,Julia Joung,Omar O. Abudayyeh,Clea Barcena,Patrick D. Hsu,Naomi Habib,Jonathan S. Gootenberg,Hiroshi Nishimasu,Osamu Nureki,Feng Zhang +11 more
TL;DR: Structural-guided engineering of a CRISPR-Cas9 complex to mediate efficient transcriptional activation at endogenous genomic loci is described and the potential of Cas9-based activators as a powerful genetic perturbation technology is demonstrated.
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Rationally Engineered Cas9 Nucleases With Improved Specificity
TL;DR: In this paper, the authors used structure-guided protein engineering to improve the specificity of Streptococcus pyogenes Cas9 (SpCas9) using targeted deep sequencing and unbiased whole-genome off-target analysis to assess Cas9-mediated DNA cleavage in human cells.
Double Nicking by RNA-Guided CRISPR Cas9 for Enhanced Genome Editing Specificity
F. Ann Ran,Patrick D. Hsu,Chie Yu Lin,Jonathan S. Gootenberg,Silvana Konermann,Alexandro E. Trevino,David A. Scott,Azusa Inoue,Shogo Matoba,Yi Zhang,Feng Zhang +10 more
TL;DR: It is demonstrated that using paired nicking can reduce off-target activity by 50- to 1,500-fold in cell lines and to facilitate gene knockout in mouse zygotes without sacrificing on-target cleavage efficiency.
Journal ArticleDOI
Nucleic acid detection with CRISPR-Cas13a/C2c2
Jonathan S. Gootenberg,Omar O. Abudayyeh,Jeong Wook Lee,Patrick Essletzbichler,Aaron J. Dy,Aaron J. Dy,Julia Joung,Vanessa Verdine,Nina M. Donghia,Nichole M. Daringer,Catherine A. Freije,Catherine A. Freije,Cameron Myhrvold,Cameron Myhrvold,Roby P. Bhattacharyya,Jonathan Livny,Aviv Regev,Aviv Regev,Eugene V. Koonin,Deborah T. Hung,Pardis C. Sabeti,James J. Collins,Feng Zhang +22 more
TL;DR: A Cas13a-based molecular detection platform, termed Specific High-Sensitivity Enzymatic Reporter UnLOCKing (SHERLOCK), is used to detect specific strains of Zika and Dengue virus, distinguish pathogenic bacteria, genotype human DNA, and identify mutations in cell-free tumor DNA.