Plant Genome Editing Using FnCpf1 and LbCpf1 Nucleases at Redefined and Altered PAM Sites.

[1]  Junhao Fu,et al.  A ‘new lease of life’: FnCpf1 possesses DNA cleavage activity for genome editing in human cells , 2017, Nucleic acids research.

[2]  Jian‐Kang Zhu,et al.  Multiplex Gene Editing in Rice Using the CRISPR-Cpf1 System. , 2017, Molecular plant.

[3]  Feng Zhang,et al.  Engineered Cpf1 variants with altered PAM specificities increase genome targeting range , 2017, Nature Biotechnology.

[4]  T. Mockler,et al.  Precise insertion and guided editing of higher plant genomes using Cpf1 CRISPR nucleases , 2017, Scientific Reports.

[5]  Hao Li,et al.  Generation of targeted mutant rice using a CRISPR‐Cpf1 system , 2017, Plant biotechnology journal.

[6]  Tao Zhang,et al.  A CRISPR–Cpf1 system for efficient genome editing and transcriptional repression in plants , 2017, Nature Plants.

[7]  Beum-Chang Kang,et al.  CRISPR/Cpf1-mediated DNA-free plant genome editing , 2017, Nature Communications.

[8]  Ya-ping Fu,et al.  Targeted mutagenesis in rice using CRISPR-Cpf1 system. , 2017, Journal of genetics and genomics = Yi chuan xue bao.

[9]  E. M. DeGennaro,et al.  Multiplex gene editing by CRISPR-Cpf1 through autonomous processing of a single crRNA array , 2016, Nature Biotechnology.

[10]  H. Kaya,et al.  Efficient targeted mutagenesis of rice and tobacco genomes using Cpf1 from Francisella novicida , 2016, Scientific Reports.

[11]  Ines Fonfara,et al.  The CRISPR-associated DNA-cleaving enzyme Cpf1 also processes precursor CRISPR RNA , 2016, Nature.

[12]  A. Regev,et al.  Cpf1 Is a Single RNA-Guided Endonuclease of a Class 2 CRISPR-Cas System , 2015, Cell.