EP1533386B1

Method for gene identification signature (GIS) analysis

Abstract

This record has no abstract on file.

EP1533386B1, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Expired 13 September 2024, 2 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

34 claims: 13 independent, 21 dependent

  1. 1
    An isolated oligonucleotide comprising at least one ditag, wherein the ditag consists of two joined first and second sequence tags of a full-length cDNA or a full-length sequence of a gene, wherein:(i) the first tag consists of the 5' terminus sequence of 8-16 bp and the second tag consists of the 3' terminus sequence of 8-16 bp of said full length cDNA or full length sequence of the gene wherein the gene is a bacterial genome: or, (ii) the first tag consists of the 5' terminus sequence of 16-20 bp and the second tag consists of the 3' terminus of 16-20 bp of said full length cDNA or full-length sequence of the gene wherein the gene is more complex than a bacterial genome, preferably the human genome, and wherein the portion of said full length cDNA or full-length sequence of the gene which is between the 5' terminus sequence and the 3' terminus sequence is not included in the ditag.
  2. 5
    The oligonucleotide of claims 1-4, wherein the ditag is obtained by splicing the 5' terminus and the 3' terminus in presence of at least one restriction enzyme and the size of the sequence tags is determined by the restriction enzyme used.
  3. 9
    The oligonucleotide of claims 1-8, wherein the ditag comprises 34-38 nucleotides.
  4. 10
    The oligonucleotide of claims 1-9, wherein the first and second tags have the same number of nucleotides.
  5. 11
    The oligonucleotide of claims 1-10, wherein the first and second tags have a different number of nucleotides.
  6. 12
    The oligonucleotide of claims 1-11, wherein the oligonucleotide consists of 1 to 1000 ditags.
  7. 13
    A vector comprising the oligonucleotide of claims 1-12.
  8. 14
    A vector which has the sequence indicated in SEQ ID NO:18 for use in the method according to claims 18-34.
  9. 16
    A cDNA library, wherein every cDNA clone of the library comprises at least one oligonucleotide as defined in claims 1-12
  10. 18
    A method for preparing at least one oligonucleotide comprising at least one ditag comprising:producing at least one nucleic acid molecule flanked by two adapters, wherein each adapter comprises at least one restriction site;cleaving the nucleic acid molecule by adding at least one restriction enzyme recognizing the restriction site at its 5' terminus and 3' terminus to extract a 5' tag and a 3' tag of said nucleic acid molecule, respectively;and generating at least one ditag by ligating the 5' tag to the 3' tag.
  11. 21
    The method of claims 18-20, wherein the oligonucleotide comprising the at least one ditag flanked by the adapters is inserted into a vector.
  12. 22
    The method of claims 18-21, wherein the nucleic acid molecule is full-length cDNA, or the full-length sequence of a gene.
  13. 23
    The method of claims 18-22, further comprising the step of determining the nucleotide sequence of the at least one ditag to detect gene expression.
  14. 24
    The method of claims 18-23, further comprising the steps of:determining the sequence of the at least one ditag;and comparing the ditag nucleotide sequence to a database comprising genomic sequences whereby matching 5' and 3' termini sequences are identified.
  15. 30
    A method for genome mapping, comprising:preparing at least one oligonucleotide comprising at least one ditag, the ditag comprising two joined first and second sequence tags of a full-length cDNA of a gene, wherein: (i) the first tag comprises the 5' terminus sequence of 8-16 bp and the second tag comprises the 3' terminus sequence of 8-16 bp of said full length cDNA of the gene, wherein the gene is a bacterial genome, or, (ii) the first tag comprises the 5' terminus sequence of 16-20 bp and the second tag comprises the 3' terminus of 16-20 bp of said full length cDNA of the gene, wherein the gene is more complex than a bacterial genome, preferably the human genome the full-length cDNA corresponding to the full-length of a gene;mapping each of the two tags of the at least one ditag on the genome;and defining the structural region of the corresponding gene between the two tags on the genome map, wherein the region being defined includes exons and introns of the gene.
  16. 31
    A method of gene discovery comprising:preparing at least one oligonucleotide comprising at least one ditag, the ditag comprising two joined first and second sequence tags of a full-length cDNA, wherein: (i) the first tag comprises the 5' terminus sequence of 8-16 bp and the second tag comprises the 3' terminus sequence of 8-16 bp of said full length cDNA of the gene, wherein the gene is a bacterial genome, or, (ii) the first tag comprises the 5' terminus sequence of 16-20 bp and the second tag comprises the 3' terminus of 16-20 bp of said full length cDNA of the gene, wherein the gene is more complex than a bacterial genome, preferably the human genome the full-length cDNA corresponding to the full-length of a gene;determining the sequence of the at least one ditag and comparing the sequence of the at least one ditag with a genome and a gene database;wherein detecting matching of the 5' and 3' termini tags with the genome but detecting no match with the gene database indicates a new gene.
  17. 33
    A method for recovering full-length cDNA comprising:preparing, from a full-length cDNA library, at least one oligonucleotide comprising at least one ditag, the ditag comprising two joined first and second sequence tags of a full-length cDNA from the library, wherein: (i) the first tag comprises the 5' terminus sequence of 8-16 bp and the second tag comprises the 3' terminus sequence of 8-16 bp of said full length cDNA of the gene, wherein the gene is a bacterial genome, or (ii) the first tag comprises the 5' terminus sequence of 16-20 bp and the second tag comprises the 3' terminus of 16-20 bp of said full length cDNAof the gene, wherein the gene is more complex than a bacterial genome, preferably the human genome ;sequencing the obtained oligonucleotide ditag;and recovering the full-length cDNA corresponding to the ditag of interest from the full-length cDNA library by PCR or directly from target RNA samples by RT-PCR.
  18. 34
    A method for quantifying the transcriptional activity of a gene comprising:preparing, from a full-length cDNA library, at least one oligonucleotide comprising at least one ditag, the ditag comprising two joined first and second sequence tags of a full-length cDNA from the library, wherein: (i) the first tag comprises the 5' terminus sequence of 8-16 bp and the second tag comprises the 3' terminus sequence of 8-16 bp of said full length cDNA of the gene, wherein the gene is a bacterial genome, or (ii) the first tag comprises the 5' terminus sequence of 16-20 bp and the second tag comprises the 3' terminus of 16-20 bp of said full length cDNA of the gene, wherein the gene is more complex than a bacterial genome, preferably the human genome, sequencing the obtained oligonucleotide ditag;and determining the frequency of the sequenced ditag which corresponds to the transcriptional activity of the gene.