EP1231284A2

Method for serial analysis of gene expression

Abstract

Serial analysis of gene expression, SAGE, a method for the rapid quantitative and qualitative analysis of transcripts is provided. Short defined sequence tags corresponding to expressed genes are isolated and analyzed. Sequencing of over 1,000 defined tags in a short period of time (e.g., hours) reveals a gene expression pattern characteristic of the function of a cell or tissue. Moreover, SAGE is useful as a gene discovery tool for the identification and isolation of novel sequence tags corresponding to novel transcripts and genes.

EP1231284A2, drawing sheet 1
Sheet 1 of 19

Term

Term ended

Projected expiry passed 12 September 2016, 10 years ago.

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35 claims: 17 independent, 18 dependent

  1. 1
    A method for making a tag which identifies a complementary deoxyribonucleic acid (cDNA) oligonucleotide, comprising:providing a complementary deoxyribonucleic acid (cDNA) oligonucleotide comprising a 5' and 3' end;cleaving said cDNA oligonucleotide with a restriction enzyme at a first restriction endonuclease site to provide cDNA fragments;isolating the 5' or 3' end of said cDNA oligonucleotide;linking an oligonucleotide linker to an isolated cDNA fragment comprising the 5' or 3' end of said cDNA oligonucleotide, wherein the oligonucleotide linker comprises a recognition site for a second restriction endonuclease enzyme which cleaves at a site distant from the recognition site;andcleaving the isolated cDNA fragment with the second restriction endonuclease enzyme to provide a tag which identifies a cDNA oligonucleotide.
  2. 4
    A method of making a defined sequence tag which identifies a complementary deoxyribonucleic acid (cDNA) oligonucleotide, comprising the steps of:cleaving a cDNA sample with a first restriction endonuclease, wherein the endonuclease cleaves the cDNA at a defined position relative to the 5' or 3' terminus of the cDNA thereby producing defined sequence tags;isolating the defined sequence tags;ligating an oligonucleotide linker to the defined sequence tags, wherein the oligonucleotide linker comprises a recognition site for a second restriction endonuclease which cleaves at a site outside of its recognition sequence;cleaving the defined sequence tags with the second restriction endonuclease at the site outside of its recognition sequence to provide defined sequence tags having a defined length.
  3. 7
    The method of any of claims 4 to 6 wherein the cDNA comprises a means for capture.
  4. 10
    The method of any of claims 4 to 9, wherein the second restriction endonuclease is a type IIS endonuclease.
  5. 12
    A method of identifying a first nucleotide sequence with a second nucleotide sequence, comprising the steps of:preselecting a first nucleotide sequence which has a defined position in a messenger RNA;comparing the first nucleotide sequence to a database of nucleotide sequences;selecting a second nucleotide sequence in the database which matches the first nucleotide sequence;determining that the second nucleotide sequence occurs at the defined position in its messenger RNA, wherein a first nucleotide sequence is identified with a second nucleotide sequence which shares a defined position and a common nucleotide sequence.
  6. 15
    The method of any of claims 12 to 14, wherein the first nucleotide sequence is derived from an organism and the first nucleotide sequence is shorter than the length required based on sequence alone to uniquely identify it with a nucleotide sequence in a database of sequences comprising all of the organism's transcripts.
  7. 16
    A method of identifying a first mRNA molecule or a first cDNA molecule derived from the first mRNA molecule with a known sequence in a database, comprising the step of:matching a first nucleotide sequence which is located at a defined position in a first mRNA or first cDNA molecule to a second nucleotide sequence in a database consisting of mRNA and/or cDNA sequences which occur at the defined position in their respective mRNA or cDNA molecules, whereby the first nucleotide sequence is identified with a known sequence in the database.
  8. 20
    The method of any of claims 16 to 19, wherein the step of matching is performed using a computer.
  9. 21
    The method of any of claims 16 to 20, wherein the database of mRNA and/or cDNA sequences which occur at the defined position in their respective mRNA or cDNA molecules are stored in a pointer file.
  10. 23
    The method of any of claims 16 to 22, wherein the first nucleotide sequence is derived from an organism and the first nucleotide sequence is shorter than the length required based on sequence alone to uniquely identify it with a nucleotide sequence in a database of sequences comprising all of the organism's transcripts.
  11. 24
    A method of identifying a short nucleotide sequence tag with a cDNA clone in a library comprising the steps of:hybridising (1) an oligonucleotide comprising the nucleotide sequence of a short nucleotide sequence tag located at a defined position in a first mRNA molecule to (2) a cDNA clone in a library;determining that the nucleotide sequence is located at the defined position in the cDNA clone, whereby the short nucleotide sequence tag is identified as corresponding to a second mRNA molecule from which the cDNA clone was copied.
  12. 27
    The method of any of claims 24 to 26, wherein the tag is 6-7 bp in length.
  13. 28
    The method of any of claims 24 to 26, wherein the tag is 9-10 bp in length.
  14. 29
    The method of any of claims 24 to 26, wherein the tag is 13 bp in length.
  15. 30
    A method of identifying a first mRNA molecule or a first cDNA molecule derived from the first mRNA molecule with a known sequence in a database, comprising the step of:matching a first nucleotide sequence which is located at a defined position in a first mRNA or first cDNA molecule, wherein the defined position is 3' of the 3'-most cleavage site of a restriction endonuclease or 5' of the 5'-most cleavage site of a restriction endonuclease site in the first mRNA or first cDNA molecule, to a second nucleotide sequence in a database;determining that the second nucleotide sequence in the database is located at the defined position in its respective mRNA or cDNA molecule, whereby the first nucleotide sequence is identified with a known sequence in the database.
  16. 34
    The method of any of claims 30 to 33, wherein the step of matching is performed using a computer.
  17. 35
    A method of identifying a cDNA molecule which is not represented in a database, comprising the steps of:preselecting a first nucleotide sequence which has a predefined position in a messenger RNA;comparing the first nucleotide sequence to a database of nucleotide sequences;if no nucleotide sequences are found in the database which both match the first nucleotide sequence and occur at the defined position in an mRNA, then hybridising an oligonucleotide comprising the first nucleotide sequence to a cDNA clone in a library;anddetermining that the first nucleotide sequence is located at the defined position in the cDNA clone, whereby a cDNA is identified which was not present in the database.
Independent claims17