Patents by Inventor James Jefferson Smith

James Jefferson Smith has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20170298420
    Abstract: Methods of cleaving double-stranded DNA that can be recognized and cleaved by a rationally-designed, I-CreI-derived meganuclease are provided. Also provided are recombinant nucleic acids, cells, and organisms containing such recombinant nucleic acids, as well as cells and organisms produced using such meganucleases. Also provided are methods of conducting a custom-designed, I-CreI-derived meganuclease business.
    Type: Application
    Filed: March 28, 2017
    Publication date: October 19, 2017
    Applicant: Precision BioSciences, Inc.
    Inventors: Derek JANTZ, James Jefferson SMITH
  • Patent number: 9683257
    Abstract: Methods of cleaving double-stranded DNA that can be recognized and cleaved by a rationally-designed, I-CreI-derived meganuclease are provided. Also provided are recombinant nucleic acids, cells, and organisms containing such recombinant nucleic acids, as well as cells and organisms produced using such meganucleases. Also provided are methods of conducting a custom-designed, I-CreI-derived meganuclease business.
    Type: Grant
    Filed: June 26, 2014
    Date of Patent: June 20, 2017
    Assignee: Precision BioSciences, Inc.
    Inventors: Derek Jantz, James Jefferson Smith
  • Publication number: 20170106055
    Abstract: The invention relates to the field of molecular biology and recombinant nucleic acid technology. In particular, the invention relates to methods of treating patients with Duchenne Muscular Dystrophy comprising the removal of at least one exon from the dystrophin gene using engineered nucleases to restore the normal reading frame. Further disclosed are engineered nucleases suitable for using the methods.
    Type: Application
    Filed: March 12, 2015
    Publication date: April 20, 2017
    Inventors: Derek JANTZ, James Jefferson SMITH, Michael G. NICHOLSON
  • Publication number: 20170058295
    Abstract: Methods of making a targeted modification in a male fertility gene in the genome of a plant are disclosed. The methods involve contacting a plant cell with an engineered double-strand-break-inducing agent capable of inducing a double-strand break in a target sequence in the male fertility gene and identifying a cell comprising an alteration in the target sequence. Also disclosed are plants, plant cells, plant parts, and seeds comprising a male fertility gene with an alteration in a male fertility gene. Nucleic acid molecules comprising male fertility genes with at least one targeted modification therein, optimized nucleic acid molecules encoding endonucleases that are engineered double-strand-break-inducing agents and expression cassettes, host cells, and plants comprising one or more of the nucleic acid molecules are further disclosed.
    Type: Application
    Filed: October 11, 2016
    Publication date: March 2, 2017
    Inventors: DENNIS L. BIDNEY, Andrew Mark Cigan, Saverio Carl Falco, Huirong Gao, Derek Jantz, Michael Lassner, Keith S. Lowe, Leszek Aleksander Lyznik, James Jefferson Smith
  • Patent number: 9574208
    Abstract: Methods of making a targeted modification in a male fertility gene in the genome of a plant are disclosed. The methods involve contacting a plant cell with an engineered double-strand-break-inducing agent capable of inducing a double-strand break in a target sequence in the male fertility gene and identifying a cell comprising an alteration in the target sequence. Also disclosed are plants, plant cells, plant parts, and seeds comprising a male fertility gene with an alteration in a male fertility gene. Nucleic acid molecules comprising male fertility genes with at least one targeted modification therein, optimized nucleic acid molecules encoding endonucleases that are engineered double-strand-break-inducing agents and expression cassettes, host cells, and plants comprising one or more of the nucleic acid molecules are further disclosed.
    Type: Grant
    Filed: June 19, 2012
    Date of Patent: February 21, 2017
    Assignees: EI DU PONT DE NEMOURS AND COMPANY, PIONEER HI-BRED INTERNATIONAL INC
    Inventors: Dennis L. Bidney, Mark Cigan, Carl Falco, Huirong Gao, Derek Jantz, Mike Lassner, Keith Lowe, Leszek Aleksander Lyznik, James Jefferson Smith
  • Patent number: 9499837
    Abstract: Methods of making a targeted modification in a male fertility gene in the genome of a plant are disclosed. The methods involve contacting a plant cell with an engineered double-strand-break-inducing agent capable of inducing a double-strand break in a target sequence in the male fertility gene and identifying a cell comprising an alteration in the target sequence. Also disclosed are plants, plant cells, plant parts, and seeds comprising a male fertility gene with an alteration in a male fertility gene. Nucleic acid molecules comprising male fertility genes with at least one targeted modification therein, optimized nucleic acid molecules encoding endonucleases that are engineered double-strand-break-inducing agents and expression cassettes, host cells, and plants comprising one or more of the nucleic acid molecules are further disclosed.
    Type: Grant
    Filed: June 19, 2012
    Date of Patent: November 22, 2016
    Assignees: E.I. du Pont de Nemours and Company, Pioneer Hi-Bred International, Inc.
    Inventors: Dennis Bidney, Andrew Mark Cigan, Saverio Carl Falco, Huirong Gao, Derek Jantz, Mike Lassner, Keith Lowe, Leszek A Lyznik, James Jefferson Smith
  • Patent number: 9434931
    Abstract: Disclosed are rationally-designed, non-naturally-occurring meganucleases in which a pair of enzyme subunits having specificity for different recognition sequence half-sites are joined into a single polypeptide to form a functional heterodimer with a non-palindromic recognition sequence. The invention also relates to methods of producing such meganucleases, and methods of producing recombinant nucleic acids and organisms using such meganucleases.
    Type: Grant
    Filed: September 18, 2015
    Date of Patent: September 6, 2016
    Assignee: Precision BioSciences, Inc.
    Inventors: James Jefferson Smith, Derek Jantz
  • Publication number: 20160222417
    Abstract: Disclosed are rationally-designed, non-naturally-occurring meganucleases in which a pair of enzyme subunits having specificity for different recognition sequence half-sites are joined into a single polypeptide to form a functional heterodimer with a non-palindromic recognition sequence. The invention also relates to methods of producing such meganucleases, and methods of producing recombinant nucleic acids and organisms using such meganucleases.
    Type: Application
    Filed: April 19, 2016
    Publication date: August 4, 2016
    Inventors: James Jefferson SMITH, Derek JANTZ
  • Patent number: 9340777
    Abstract: Disclosed are rationally-designed, non-naturally-occurring meganucleases in which a pair of enzyme subunits having specificity for different recognition sequence half-sites are joined into a single polypeptide to form a functional heterodimer with a non-palindromic recognition sequence. The invention also relates to methods of producing such meganucleases, and methods of producing recombinant nucleic acids and organisms using such meganucleases.
    Type: Grant
    Filed: September 18, 2015
    Date of Patent: May 17, 2016
    Assignee: Precision BioSciences, Inc.
    Inventors: James Jefferson Smith, Derek Jantz
  • Publication number: 20160017372
    Abstract: Methods of inserting genes into defined locations in the chromosomal DNA of cultured mammalian cell lines which are subject to gene amplification are disclosed. In particular, sequences of interest (e.g., genes encoding biotherapeutic proteins) are inserted proximal to selectable genes in amplifiable loci, and the transformed cells are subjected to selection to induce co-amplification of the selectable gene and the sequence of interest. The invention also relates to meganucleases, vectors and engineered cell lines necessary for performing the methods, to cell lines resulting from the application of the methods, and use of the cell lines to produce protein products of interest.
    Type: Application
    Filed: July 22, 2015
    Publication date: January 21, 2016
    Inventors: Derek JANTZ, James Jefferson SMITH, Michael G. NICHOLSON
  • Publication number: 20160002671
    Abstract: Disclosed are rationally-designed, non-naturally-occurring meganucleases in which a pair of enzyme subunits having specificity for different recognition sequence half-sites are joined into a single polypeptide to form a functional heterodimer with a non-palindromic recognition sequence. The invention also relates to methods of producing such meganucleases, and methods of producing recombinant nucleic acids and organisms using such meganucleases.
    Type: Application
    Filed: September 18, 2015
    Publication date: January 7, 2016
    Inventors: James Jefferson SMITH, Derek JANTZ
  • Publication number: 20160002615
    Abstract: Disclosed are rationally-designed, non-naturally-occurring meganucleases in which a pair of enzyme subunits having specificity for different recognition sequence half-sites are joined into a single polypeptide to form a functional heterodimer with a non-palindromic recognition sequence. The invention also relates to methods of producing such meganucleases, and methods of producing recombinant nucleic acids and organisms using such meganucleases.
    Type: Application
    Filed: September 18, 2015
    Publication date: January 7, 2016
    Inventors: James Jefferson SMITH, Derek JANTZ
  • Publication number: 20150337335
    Abstract: Disclosed are rationally-designed, non-naturally-occurring meganucleases in which a pair of enzyme subunits having specificity for different recognition sequence half-sites are joined into a single polypeptide to form a functional heterodimer with a non-palindromic recognition sequence. The invention also relates to methods of producing such meganucleases, and methods of producing recombinant nucleic acids and organisms using such meganucleases.
    Type: Application
    Filed: May 28, 2015
    Publication date: November 26, 2015
    Inventors: James Jefferson SMITH, Derek JANTZ
  • Publication number: 20150315556
    Abstract: Targeted transcriptional effectors (transcription activators and transcription repressors) derived from meganucleases are described. Also described are nucleic acids encoding same, and methods of using same to regulate gene expression. The targeted transcriptional effectors can comprise (i) a meganuclease DNA-binding domain lacking endonuclease cleavage activity that binds to a target recognition site; and (ii) a transcription effector domain.
    Type: Application
    Filed: April 6, 2015
    Publication date: November 5, 2015
    Inventors: Derek JANTZ, Michael G. NICHOLSON, James Jefferson SMITH
  • Publication number: 20150184194
    Abstract: Methods of making a targeted modification in a male fertility gene in the genome of a plant are disclosed. The methods involve contacting a plant cell with an engineered double-strand-break-inducing agent capable of inducing a double-strand break in a target sequence in the male fertility gene and identifying a cell comprising an alteration in the target sequence. Also disclosed are plants, plant cells, plant parts, and seeds comprising a male fertility gene with an alteration in a male fertility gene. Nucleic acid molecules comprising male fertility genes with at least one targeted modification therein, optimized nucleic acid molecules encoding endonucleases that are engineered double-strand-break-inducing agents and expression cassettes, host cells, and plants comprising one or more of the nucleic acid molecules are further disclosed.
    Type: Application
    Filed: June 19, 2012
    Publication date: July 2, 2015
    Applicants: E.I. DU PONT DE NEMOURS AND COMPANY, PIONEER HI-BRED INTERNATIONAL, INC.
    Inventors: Dennis L. Bidney, Mark Cigan, Carl Falco, Huirong Gao, Derek Jantz, Mike Lassner, Keith Lowe, Leszek Aleksander Lyznik, James Jefferson Smith
  • Publication number: 20150135345
    Abstract: Rationally-designed LAGLIDADG meganucleases and methods of making such meganucleases are provided. In addition, methods are provided for using the meganucleases to generate recombinant cells and organisms having a desired DNA sequence inserted into a limited number of loci within the genome, as well as methods of gene therapy, for treatment of pathogenic infections, and for in vitro applications in diagnostics and research.
    Type: Application
    Filed: August 19, 2014
    Publication date: May 14, 2015
    Inventors: James Jefferson SMITH, Derek JANTZ, Homme W. HELLINGA
  • Publication number: 20150050655
    Abstract: Methods of cleaving double-stranded DNA that can be recognized and cleaved by a rationally-designed, I-CreI-derived meganuclease are provided. Also provided are recombinant nucleic acids, cells, and organisms containing such recombinant nucleic acids, as well as cells and organisms produced using such meganucleases. Also provided are methods of conducting a custom-designed, I-CreI-derived meganuclease business.
    Type: Application
    Filed: June 26, 2014
    Publication date: February 19, 2015
    Inventors: Derek JANTZ, James Jefferson SMITH
  • Publication number: 20140179005
    Abstract: Methods of inserting genes into defined locations in the chromosomal DNA of cultured mammalian cell lines which are subject to gene amplification are disclosed. In particular, sequences of interest (e.g., genes encoding biotherapeutic proteins) are inserted proximal to selectable genes in amplifiable loci, and the transformed cells are subjected to selection to induce co-amplification of the selectable gene and the sequence of interest. The invention also relates to meganucleases, vectors and engineered cell lines necessary for performing the methods, to cell lines resulting from the application of the methods, and use of the cell lines to produce protein products of interest.
    Type: Application
    Filed: November 27, 2013
    Publication date: June 26, 2014
    Applicant: PRECISION BIOSCIENCES, INC.
    Inventors: Derek JANTZ, James Jefferson SMITH, Michael G. NICHOLSON
  • Publication number: 20140020131
    Abstract: Methods of making a targeted modification in a male fertility gene in the genome of a plant are disclosed. The methods involve contacting a plant cell with an engineered double-strand-break-inducing agent capable of inducing a double-strand break in a target sequence in the male fertility gene and identifying a cell comprising an alteration in the target sequence. Also disclosed are plants, plant cells, plant parts, and seeds comprising a male fertility gene with an alteration in a male fertility gene. Nucleic acid molecules comprising male fertility genes with at least one targeted modification therein, optimized nucleic acid molecules encoding endonucleases that are engineered double-strand-break-inducing agents and expression cassettes, host cells, and plants comprising one or more of the nucleic acid molecules are further disclosed.
    Type: Application
    Filed: June 19, 2012
    Publication date: January 16, 2014
    Applicants: E.I. du Pont de Nemours and Company, Pioneer Hi-Bred International, Inc.
    Inventors: Dennis L. Bidney, Andrew Mark Cigan, Saverio Carl Falco, Huirong Gao, Derek Jantz, Mike Lassner, Keith Lowe, Leszek Aleksander Lyznik, James Jefferson Smith
  • Publication number: 20140010797
    Abstract: Targeted transcriptional effectors (transcription activators and transcription repressors) derived from meganucleases are described. Also described are nucleic acids encoding same, and methods of using same to regulate gene expression. The targeted transcriptional effectors can comprise (i) a meganuclease DNA-binding domain lacking endonuclease cleavage activity that binds to a target recognition site; and (ii) a transcription effector domain.
    Type: Application
    Filed: September 19, 2012
    Publication date: January 9, 2014
    Applicant: DUKE UNIVERSITY
    Inventors: Derek JANTZ, Michael G. NICHOLSON, James Jefferson SMITH