Patents Assigned to Good Start Genetics, Inc.
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Patent number: 8976049Abstract: The present invention generally relates to storing sequence read data. The invention can involve obtaining a plurality of sequence reads from a sample, identifying one or more sets of duplicative sequence reads within the plurality of sequence reads, and storing only one of the sequence reads from each set of duplicative sequence reads in a text file using nucleotide characters.Type: GrantFiled: August 22, 2014Date of Patent: March 10, 2015Assignee: Good Start Genetics, Inc.Inventors: Caleb Kennedy, Niru Chennagiri
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Patent number: 8847799Abstract: The present invention generally relates to storing sequence read data. The invention can involve obtaining a plurality of sequence reads from a sample, identifying one or more sets of duplicative sequence reads within the plurality of sequence reads, and storing only one of the sequence reads from each set of duplicative sequence reads in a text file using nucleotide characters.Type: GrantFiled: June 2, 2014Date of Patent: September 30, 2014Assignee: Good Start Genetics, Inc.Inventors: Caleb J. Kennedy, Niru Chennagiri
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Publication number: 20140255931Abstract: The invention relates to assembly of sequence reads. The invention provides a method for identifying a mutation in a nucleic acid involving sequencing nucleic acid to generate a plurality of sequence reads. Reads are assembled to form a contig, which is aligned to a reference. Individual reads are aligned to the contig. Mutations are identified based on the alignments to the reference and to the contig.Type: ApplicationFiled: April 11, 2014Publication date: September 11, 2014Applicant: GOOD START GENETICS, INC.Inventors: Gregory Porreca, Caleb Kennedy
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Patent number: 8812422Abstract: The invention provides a system and method for describing polymorphisms or genetic variants based on information about mutations and relationships among them. The invention uses object-oriented concepts to describe variants as variant objects and relations among those variants as variant relation object, each object being an instance of an abstract class of genomic feature and able to contain any number of other objects. Information about genetic disorders is stored in association with the object that represents the pathogenic variant. Genetic test results are used to access corresponding objects to provide a report based on variants or polymorphisms in a patient's genetic material.Type: GrantFiled: November 2, 2012Date of Patent: August 19, 2014Assignee: Good Start Genetics, Inc.Inventors: Marcia M. Nizzari, Benjamin H. Breton, David L. Tefft, Xavier S. Haurie
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Patent number: 8778609Abstract: The invention generally relates to methods for analyzing nucleic acids. In certain aspects, methods of the invention involve obtaining a sample including a nucleic acid template. A plurality of molecular inversion probes are tiled across a portion of the template. The probes are designed such that immediately adjacent probes hybridize to opposite strands of the nucleic acid template and probes on the same strand hybridize to the template in an overlapping manner. A region between targeting arms of a plurality of the molecular inversion probes is filled-in with nucleotides, and the filled-in region of a plurality of the probes is analyzed to obtain sequence information about the nucleic acid template.Type: GrantFiled: March 14, 2014Date of Patent: July 15, 2014Assignee: Good Start Genetics, Inc.Inventor: Mark Umbarger
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Patent number: 8738300Abstract: The invention relates to assembly of sequence reads. The invention provides a method for identifying a mutation in a nucleic acid involving sequencing nucleic acid to generate a plurality of sequence reads. Reads are assembled to form a contig, which is aligned to a reference. Individual reads are aligned to the contig. Mutations are identified based on the alignments to the reference and to the contig.Type: GrantFiled: June 12, 2012Date of Patent: May 27, 2014Assignee: Good Start Genetics, Inc.Inventors: Gregory Porreca, Caleb J. Kennedy
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Publication number: 20140129201Abstract: The invention provides a method for validating a genetic test by introducing a simulated mutation into sequence reads. By editing the information in one or more sequence read files, a set of sequence reads can be manipulated to represent an expected genotype. An analysis of those sequence reads produces an observed genotype and concordance between the expected and observed genotypes validates the analysis. Thus, the invention provides methods for validating new genetic tests.Type: ApplicationFiled: October 1, 2013Publication date: May 8, 2014Applicant: GOOD START GENETICS, INC.Inventors: Caleb Kennedy, Gregory Porreca, Mark Umbarger
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Publication number: 20140127688Abstract: Methods and systems for determining if a sample has been contaminated with other genetic material, for example, from another sample in a parallel workflow. The methods and systems compare measured allele fractions to predetermined distributions of allele fractions in order to calculate a likelihood that the sample has been contaminated.Type: ApplicationFiled: November 6, 2013Publication date: May 8, 2014Applicant: GOOD START GENETICS, INC.Inventors: Mark Umbarger, Gregory Porreca
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Publication number: 20130337447Abstract: Aspects of the invention relates to methods and compositions that are useful to reduce bias and increase the reproducibility of multiplex analysis of genetic loci. In some configurations, predetermined preparative steps and/or nucleic acid sequence analysis techniques are used in multiplex analyses for a plurality of genetic loci in a plurality of samples.Type: ApplicationFiled: July 2, 2013Publication date: December 19, 2013Applicant: Good Start Genetics, Inc.Inventors: Gregory J. Porreca, Mark Umbarger
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Publication number: 20130324417Abstract: The present invention generally relates to determining the clinical significance of a variant nucleic acid sequence. The invention can involve sequencing a nucleic acid to generate at least one sequence read, identifying a variant sequence within the sequence read, determining the equivalent insertion/deletion region (EIR) of the variant sequence, identifying a functional region including at least a portion of the EIR, and associating the EIR with the identified functional region, thereby to determine the clinical significance of the variant.Type: ApplicationFiled: June 4, 2012Publication date: December 5, 2013Applicant: Good Start Genetics, Inc.Inventors: Caleb Kennedy, Mark Umbarger, Greg Porreca
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Publication number: 20130288901Abstract: The invention generally relates to methods for analyzing nucleic acids to identify novel mutations associated with diseases. In certain embodiments, methods of the invention involve obtaining nucleic acid from a subject having a disease, identifying at least one mutation in the nucleic acid, and comparing the mutation to a database of mutations known to be associated with the disease, wherein mutations that do not match to the database are identified as novel mutations.Type: ApplicationFiled: September 14, 2012Publication date: October 31, 2013Applicant: GOOD START GENETICS, INC.Inventors: Caleb J. Kennedy, Mark Umbarger, Gregory Porreca
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Publication number: 20130274146Abstract: The invention generally relates to methods of performing a capture reaction. In certain embodiments, the method involves obtaining a nucleic acid, fragmenting the nucleic acid, and capturing a target sequence on the nucleic acid fragment using a capture moiety, such as a molecular inversion probe.Type: ApplicationFiled: April 17, 2012Publication date: October 17, 2013Applicant: GOOD START GENETICS, INC.Inventors: Mark Umbarger, Gregory Porreca, Charles Towne, George Church
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Publication number: 20130268206Abstract: The invention relates to assembly of sequence reads. The invention provides a method for identifying a mutation in a nucleic acid involving sequencing nucleic acid to generate a plurality of sequence reads. Reads are assembled to form a contig, which is aligned to a reference. Individual reads are aligned to the contig. Mutations are identified based on the alignments to the reference and to the contig.Type: ApplicationFiled: June 12, 2012Publication date: October 10, 2013Applicant: Good Start Genetics, Inc.Inventors: Gregory Porreca, Caleb J. Kennedy
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Publication number: 20120164630Abstract: The invention generally relates to methods for maintaining the integrity and identification of a nucleic acid template in a multiplex sequencing reaction. In certain embodiments, methods of the invention involve obtaining a template nucleic acid, incorporating a pair of sequence identifiers into the template, and sequencing the template.Type: ApplicationFiled: April 7, 2011Publication date: June 28, 2012Applicant: GOOD START GENETICS, INC.Inventors: Gregory Porreca, Mark Umbarger, George Church
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Publication number: 20120165202Abstract: Aspects of the invention relates to methods and compositions that are useful to reduce bias and increase the reproducibility of multiplex analysis of genetic loci. In some configurations, predetermined preparative steps and/or nucleic acid sequence analysis techniques are used in multiplex analyses for a plurality of genetic loci in a plurality of samples.Type: ApplicationFiled: April 30, 2010Publication date: June 28, 2012Applicant: GOOD START GENETICS, INC.Inventors: Gregory Porreca, Uri Laserson, Jin Billy Li, E. Robert Wassman
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Patent number: 8209130Abstract: The invention relates to assembly of sequence reads. The invention provides a method for identifying a mutation in a nucleic acid involving sequencing nucleic acid to generate a plurality of sequence reads. Reads are assembled to form a contig, which is aligned to a reference. Individual reads are aligned to the contig. Mutations are identified based on the alignments to the reference and to the contig.Type: GrantFiled: April 4, 2012Date of Patent: June 26, 2012Assignee: Good Start Genetics, Inc.Inventors: Caleb Kennedy, Gregory J. Porreca