Patents by Inventor Paul Mitsis

Paul Mitsis 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).

  • Patent number: 9556479
    Abstract: Compositions that include polymerases with features for improving entry of nucleotide analogues into active site regions and for coordinating with the nucleotide analogues in the active site region are provided. Methods of making the polymerases and of using the polymerases in sequencing and DNA replication and amplification as well as kinetic models of polymerase activity and computer-implemented methods of using the models are also provided.
    Type: Grant
    Filed: November 11, 2014
    Date of Patent: January 31, 2017
    Assignee: Pacific Biosciences of California, Inc.
    Inventors: David K. Hanzel, Geoff Otto, Paul Peluso, Thang Pham, David R. Rank, Paul Mitsis, Fred Christians, Arekadiusz Bibillo, Insil Park, Sonya Clark, John Lyle
  • Publication number: 20150184239
    Abstract: Compositions that include polymerases with features for improving entry of nucleotide analogues into active site regions and for coordinating with the nucleotide analogues in the active site region are provided. Methods of making the polymerases and of using the polymerases in sequencing and DNA replication and amplification as well as kinetic models of polymerase activity and computer-implemented methods of using the models are also provided.
    Type: Application
    Filed: November 11, 2014
    Publication date: July 2, 2015
    Inventors: David K. Hanzel, Geoff Otto, Paul Peluso, Thang Pham, David R. Rank, Paul Mitsis, Fred Christians, Arekadiusz Bibillo, Insil Park, Sonya Clark, John Lyle
  • Patent number: 8921086
    Abstract: Compositions that include polymerases with features for improving entry of nucleotide analogues into active site regions and for coordinating with the nucleotide analogues in the active site region are provided. Methods of making the polymerases and of using the polymerases in sequencing and DNA replication and amplification as well as kinetic models of polymerase activity and computer-implemented methods of using the models are also provided.
    Type: Grant
    Filed: December 21, 2006
    Date of Patent: December 30, 2014
    Assignee: Pacific Biosciences of California, Inc.
    Inventors: David K. Hanzel, Geoff Otto, Paul Peluso, Thang Pham, David R. Rank, Paul Mitsis, Fred Christians, Arek Bibillo, Insil Park, Sonya Clark, John Lyle
  • Publication number: 20110059505
    Abstract: Compositions that include polymerases with features for improving entry of nucleotide analogues into active site regions and for coordinating with the nucleotide analogues in the active site region are provided. Methods of making the polymerases and of using the polymerases in sequencing and DNA replication and amplification as well as kinetic models of polymerase activity and computer-implemented methods of using the models are also provided.
    Type: Application
    Filed: June 8, 2010
    Publication date: March 10, 2011
    Inventors: David K. Hanzel, Geoff Otto, Devon Murphy, Paul Peluso, Thang Pham, David R. Rank, Paul Mitsis, Fred Christians, Arek Bibillo, Insil Park, Sonya Clark, John Lyle
  • Patent number: 7892797
    Abstract: The present invention provides methods, formulation and kits for the synthesis of long nucleic acid fragments. An improved PCR method is provided for amplifying long DNA fragments. In particular, a single thermostable DNA polymerase is used for the rapid amplification of over 10 kb long DNA fragments. Also provided is a method for extending long complementary DNA strands using this single enzyme formulation.
    Type: Grant
    Filed: May 5, 2008
    Date of Patent: February 22, 2011
    Assignee: GE Healthcare Bio-Sciences Corp.
    Inventors: Paul Mitsis, Anuradha Sekher, Gyanendra Kumar
  • Publication number: 20100105109
    Abstract: Improved processes for the amplification of target DNA sequences in the form of single or double stranded circular DNA molecules, especially those present in colony and plaque extracts, using multiple specific and/or random sequence oligonucleotide primers are disclosed. The product of this amplification is used for analysis by restriction enzyme digestion or DNA sequencing and other analyses that involve hybridization. Kits containing components for use in the method are also described. Also described are further uses of this amplified DNA in sequencing, genotyping and haplotyping, and other molecular biology applications.
    Type: Application
    Filed: March 18, 2008
    Publication date: April 29, 2010
    Applicant: GE Healthcare Bio-Sciences Corp.
    Inventors: Haiguang Xiao, John R. Nelson, Galina Chernaya, Haiying Wang, Paul Mitsis, Gyanendra Kumar, Carl F. Fuller, Yuyang Christine Cai
  • Publication number: 20090170167
    Abstract: The present invention provides methods, formulation and kits for the synthesis of long nucleic acid fragments. An improved PCR method is provided for amplifying long DNA fragments. In particular, a single thermostable DNA polymerase is used for the rapid amplification of over 10 kb long DNA fragments. Also provided is a method for extending long complementary DNA strands using this single enzyme formulation.
    Type: Application
    Filed: May 5, 2008
    Publication date: July 2, 2009
    Applicant: GE HEALTHCARE BIO-SCIENCES CORP.
    Inventors: PAUL MITSIS, ANURADHA SEKHER, GYANENDRA KUMAR
  • Patent number: 7393640
    Abstract: The present invention describes methods of using terminal-phosphate-labeled nucleotides in the presence of a manganese salt to enhance their substrate properties towards various enzymes. Particularly described are methods of detecting a nucleic acid in a sample, based on the use of terminal-phosphate-labeled nucleotides as substrates for nucleic acid polymerases, in the presence of a manganese salt. Further provided are manganese complexes of terminal-phosphate-labeled nucleotides as well as terminal-phosphate-labeled nucleotides with new linkers with enhanced substrate properties.
    Type: Grant
    Filed: February 5, 2004
    Date of Patent: July 1, 2008
    Assignee: GE Healthcare Bio-Sciences Corp.
    Inventors: Shiv Kumar, Mark McDougall, Anup Sood, John Nelson, Carl Fuller, John Macklin, Paul Mitsis
  • Publication number: 20070196846
    Abstract: Compositions that include polymerases with features for improving entry of nucleotide analogues into active site regions and for coordinating with the nucleotide analogues in the active site region are provided. Methods of making the polymerases and of using the polymerases in sequencing and DNA replication and amplification as well as kinetic models of polymerase activity and computer-implemented methods of using the models are also provided.
    Type: Application
    Filed: December 21, 2006
    Publication date: August 23, 2007
    Applicant: Pacific Biosciences of California, Inc.
    Inventors: David Hanzel, Geoff Otto, Devon Murphy, Paul Peluso, Thang Pham, David Rank, Paul Mitsis
  • Publication number: 20040241716
    Abstract: The present invention describes methods of using terminal-phosphate-labeled nucleotides in the presence of a manganese salt to enhance their substrate properties towards various enzymes. Particularly described are methods of detecting a nucleic acid in a sample, based on the use of terminal-phosphate-labeled nucleotides as substrates for nucleic acid polymerases, in the presence of a manganese salt. Further provided are manganese complexes of terminal-phosphate-labeled nucleotides as well as terminal-phosphate-labeled nucleotides with new linkers with enhanced substrate properties.
    Type: Application
    Filed: February 5, 2004
    Publication date: December 2, 2004
    Inventors: Shiv Kumar, Mark McDougall, Anup Sood, John Nelson, Carl Fuller, John Macklin, Paul Mitsis