Methods for haplotyping genomic DNA

Chemistry: molecular biology and microbiology – Measuring or testing process involving enzymes or... – Involving nucleic acid

Reexamination Certificate

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

C536S023100, C536S024300

Reexamination Certificate

active

07972791

ABSTRACT:
The present invention provides a novel method for specifically isolating and separating large segments of genomic DNA that can subsequently be used to determine a genomic haplotype. The invention relies on using a solid phase having a flat surface arrayed with oligonucleotides designed to specifically hybridize to each particular haplotype of an individual sample, e.g., oligonucleotides designed to specifically hybridize with each of the two HLA-B haplotypes, HLA-A, HLA-C, HLA-DR, HLA-DQ, and the like. The genomic DNA is contacted and hybridized to the arrayed oligonucleotides to form a genomic DNA/oligonucleotide complex. The excess genomic DNA is washed away and the haplotype separated genomic DNA is denatured from the oligonucleotide probe and collected. The method of the present invention allows for the separation of genomic DNA fragments of between approximately 2 to about 4 megabases (Mb). Separation of the haplotypes of large genomic DNA fragments allows for linkage analysis of other HLA alleles and polymorphisms, microsatellite, SNPs, and the like across a large span of the HLA region, including HLA-A, -B, -C, and HLA-DRB1 regions. This linkage analysis is particularly useful when HLA typing for an individual with limited family HLA typing available.

REFERENCES:
patent: 598651 (1898-02-01), Hunicke-Smith
patent: 4401796 (1983-08-01), Itakura
patent: 4458066 (1984-07-01), Caruthers
patent: 4500707 (1985-02-01), Caruthers
patent: 4582788 (1986-04-01), Erlich
patent: 4835098 (1989-05-01), Orr et al.
patent: 5175082 (1992-12-01), Jeffreys
patent: 5468613 (1995-11-01), Erlich et al.
patent: 5482836 (1996-01-01), Cantor et al.
patent: 5607646 (1997-03-01), Okano et al.
patent: 5629149 (1997-05-01), Santamaria et al.
patent: 5759778 (1998-06-01), Li et al.
patent: 5807679 (1998-09-01), Kamb
patent: 5851769 (1998-12-01), Gray et al.
patent: 5972604 (1999-10-01), Santamaria et al.
patent: 5985563 (1999-11-01), Hyldig-Nielsen et al.
patent: 6013440 (2000-01-01), Lipshutz et al.
patent: 6093370 (2000-07-01), Yasuda et al.
patent: 6268133 (2001-07-01), Nisson et al.
patent: 6306643 (2001-10-01), Gentalen et al.
patent: 6444461 (2002-09-01), Knapp et al.
patent: 6576448 (2003-06-01), Weissman et al.
patent: 6594432 (2003-07-01), Chen et al.
patent: 6596487 (2003-07-01), Raees et al.
patent: 6638717 (2003-10-01), Perrin et al.
patent: 6844154 (2005-01-01), Landers
patent: 6953686 (2005-10-01), Ramasubramanyan
patent: 7097974 (2006-08-01), Stahler et al.
patent: 7262030 (2007-08-01), Chen
patent: 7300755 (2007-11-01), Petersdorf et al.
patent: 7320862 (2008-01-01), Stahler et al.
patent: 7615350 (2009-11-01), Petersdorf et al.
patent: 2001/0051712 (2001-12-01), Drysdale et al.
patent: 2002/0081598 (2002-06-01), Evans et al.
patent: 2003/0096231 (2003-05-01), Landers
patent: 2003/0165823 (2003-09-01), Cronin et al.
patent: 2004/0185453 (2004-09-01), Myerson et al.
patent: 2004/0224331 (2004-11-01), Cantor et al.
patent: 2004/0241697 (2004-12-01), Hager
patent: 2005/0009020 (2005-01-01), Distler
patent: 2006/0008826 (2006-01-01), Liu
patent: 2006/0046251 (2006-03-01), Sampson et al.
patent: 2006/0078938 (2006-04-01), Evans et al.
patent: 2008/0076130 (2008-03-01), Guo
patent: 2008/0090733 (2008-04-01), Dapprich et al.
patent: 2008/0125324 (2008-05-01), Petersdorf et al.
patent: 2009/0099035 (2009-04-01), Petersdorf et al.
patent: WO 00/79006 (2000-12-01), None
Blasczyk R., HLA Diagnostic Sequencing—Conception, Application and Automation. J. of Laboratory Medicine 27(9/10) : 359-368 (Oct. 2003).
Ding et al., Direct molecular haplotyping of long-range genomic DNA with M1-PCR. PNAS 100 (13) :7449-7453 (Jun. 2003).
Michalatos- Beloin et al., Molecular haplotyping of genetic markers 10 kb apart by allele-specific long-range PCR. Nucleic Acids Research 24 (23) : 4841-4843 (1996).
Mullighan et al., A rapid method of haplotyping HFE mutations and linkage disequilibrium in a Caucasoid population. Gut 42 : 566-569 (1998).
Saiki et al., Genetic analysis of amplified DNA with immobilized sequence-specific oligonucleotide probes. PNAS 86(16) : 6230-6234 (1989).
Fanning GC et al. Polymerase chain reaction haplotyping using 3′ mismatches in the forward and reverse primers: application to the biallelic polymorphisms of tumor necrosis factor and lymphotoxin α. Tissue Antigens. 1997; 50(1): 23-31.
Wooley AT et al. Direct haplotyping of kilobase-size DNA using carbon nanotube probes. Nature Biotechnology. Jul. 2000; 18(7): 760-763.
Gyllensten U. Ch. 36 in PCT Protocols: A Guide to Methods and Applications. Eds. Innis et al. Academic Press, San Diego, CA. (1990).
Triglia T and Kemp DJ. Large fragments ofPlasmodium falciparumDNA can be stable when cloned in yeast artificial chromosomes. Molecular and Biochemical Parasitology. 1991; 44: 207-211.
Kaname T and Huxley C. Isolation and subcloning of large fragments from BACs and PACs. BioTechniques. Aug. 2001; 31(2): 273, 276-8.
Ito T et al. Sequence-specific DNA purification by triplex affinity capture. PNAS 89: 495-498 (Jan. 1992).
Guo Z et al. Long-range multilocus haplotype phasing of the MHC. PNAS 103 (18): 6964-6969 (May 2, 2006).
Guo Z et al. Oligonucleotide arrays for high-throughput SNPs detection in the MHC Class I genes: HLA-B as a model system. Genome Research 12: 447-457 (2001).
Kandpal R P et al. Selective enrichment of a large size genomic DNA fragment by affinity capture: an approach for gene mapping. Nucleic Acids Research 18 (7): 1789-1795 (1990).
Guo Z et al. Oligonucleotide arrays for high resolution HLA typing. Reviews in Immunogenetics 1: 220-230 (1999).
Ryskov A P et al. Purification of large native DNA fragments enriched in globin gene sequences. Gene 3: 81-85 (1978).
Kim J H et al. Solid-phase genetic engineering with DNA immobilized on a gold surface. J. of Biotechnology 96: 213-221 (2002).
Kandpal R P et al. Chromosome fishing: an affinity capture method for selective enrichment of large genomic DNA fragments. Methods in Enzymology 216: 39-54 (1992).
U.S. Appl. No. 10/018,112, filed Oct. 28, 2002, Petersdorf et al.
U.S. Appl. No. 11/517,956, filed Sep. 7, 2006, Petersdorf et al.
Gou et al.; “Long-range multilocus haplotype phasing of the MHC”Proc. Natl. Acad. Sci.103:6964-6969 (2006).
Gou et al.; Online Supporting Information for: “Long-range multilocus haplotype phasing of the MHC”Proc. Natl. Acad. Sci.103:6964-6969 (2006).
Flomenberg et al.; “Impact of HLA class I and class II high-resolution matching on outcomes of unrelated donor bone marrow transplantation: HLA-C mismatching is associated with a strong adverse effect on transplantation outcome”Blood104(7):1923-1930 (2004).
Gentalen et al.; “A novel method for determining linkage between DNA sequences: hybridization to paired probe arrays”Nucleic Acids Research27(6):1485-1491 (1999).
The MHC Sequencing Consortium; “Complete sequence and gene map of a human major histocompatibility complex”Nature401:921-923 (1999).
Gou et al.; “Enhanced discrimination of single nucleotide polymorphisms by artificial mismatch hybridization”Nature Biotech15:331-335 (1997).
Fernandez-Vina et al.; “Population diversity of B-locus alleles observed by high-resolution DNA typing”Tissue Antigens45(3):153-168 (1995).Abstract only.
Petersdorf et al.; “A comprehensive approach for typing the alleles of the HLA-B locus by automated sequencing”Tissue Antigens46:73-85 (1995).
Gou et al.; “Direct fluorescence analysis of genetic polymorphisms by hybridization with oligonucleotide arrays on glass supports”Nucl Acids Res22(24):5456-5465 (1994).
Begovich et al.; “Polymorphism, recombination, and linkage disequilibrium within the HLA class II region”J. Immunology148(1):249-258 (1992).
Maskos et al.; “Oligonucleotide hybridisatIons on glass supports: a novel linker for oligonucleotide synthesis and hybridisation properties of oligonucleotides synthesised in situ”Nucl Acids Res20(7):1679-1684 (1992).
Bjorkman et al.; “Structure of the human

LandOfFree

Say what you really think

Search LandOfFree.com for the USA inventors and patents. Rate them and share your experience with other people.

Rating

Methods for haplotyping genomic DNA does not yet have a rating. At this time, there are no reviews or comments for this patent.

If you have personal experience with Methods for haplotyping genomic DNA, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Methods for haplotyping genomic DNA will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFUS-PAI-O-2691995

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.