EP0857791B1

Method of analysis using signal amplification

Abstract

This record has no abstract on file.

EP0857791B1, drawing sheet 1
Sheet 1 of 18

Term

Term ended

Expired 17 December 2017, 8.8 years ago.

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

17 claims: 11 independent, 6 dependent

  1. 1
    A method of determining a molecule A containing a sequence SA of nucleobases, said molecule being capable of participating in a triple helical structure through said sequence SA comprising - providing a reaction mixture containing multiple probe molecules B containing a first segment B1 capable of participating in a triple helix structure with A through sequence SA and a segment B2, - incubating said reaction mixture at conditions resulting in the formation of branched triple helix structures and - determining the formation of branched triple helix structures using said segment B2.
  2. 4
    A method according to any of claims 1 to 3, characterised in that the determination of branched triple helix structures is made by means of a probe C containing a first segment C1 which can bind to segment B2 and a second segment C2 wherein either or both of C1 and C2 are capable of participating in a triple helix structure and determining the formation of triple helices using segment C2.
  3. 7
    A method according to any of the preceding claims, characterised in that one of segments B1 and B2 contains a nucleobase sequence of a non-natural backbone and the other contains a nucleobase sequence of a natural backbone.
  4. 8
    A method according to any of claims 4-6, characterised in that B1 and B2 contain a nucleobase sequence on a non-natural backbone and C1 and C2 contain a nucleobase sequence on a natural backbone.
  5. 9
    A method according to any of claims 1 to 3, characterised in that the formation of branched triple helix structures are made using a labelled probe C containing a nucleobase sequence complementary to B2.
  6. 10
    A method according to any of claims 7 and 8, characterised in that the non-natural backbone is a peptide bond containing backbone.
  7. 11
    A method according to any of claims 1 to 10, wherein one or more additional multiple probe molecules, D, E, are involved in the formation of multiple triple helix structures in form of branched triple helix structures, said additional probe molecules each containing a first segment which can bind to a segment of a different probe molecule and a second segment wherein either or both of said segments are capable of participating in a triple helix structure.
  8. 12
    A molecule containing a nucleobase sequence containing segments B1 and B2, wherein B1 contains a peptide bond containing backbone and B2 contains a natural backbone, and wherein said segments are covalently bound together directly or through a linker moiety, and wherein said binding is between the amino terminus of B1 and the 5' terminus of B2 or the carboxylic acid terminus of B1 and the 3' terminus of B2, and wherein said segments are both capable of participating in triple helix structures.
  9. 13
    A method for the determination of an analyte comprising - providing a reaction mixture with a molecule A containing a nucleobase sequence SA, said molecule being capable of forming a triple helix structure through said sequence SA and further being capable of binding to said analyte and multiple probe molecules B containing a first segment B1 capable of participating in a triple helix structure with A through said sequence SA and a second segment B2 - incubating said reaction mixture at conditions resulting in the formation of branched triple helix structures and - determining the formation of branched triple helix structures using said segment B2 as a measure for the analyte to be determined.
  10. 15
    Use of a molecule A and a molecule B for the formation of branched triple helix structures for the determination of an analyte, wherein molecule A contains a nucleobase sequence SA being capable of forming a triple helix structure and further being capable of binding to said analyte and to said molecules B, molecule B containing a first segment B1 being capable of participating in a triple helix structure with A through said sequence SA and a second segment B2 capable of participating in a triple helix structure.
  11. 17
    Use of a molecule B and a molecule C for the formation of branched triple helix structures for the determination of a molecule A containing a sequence SA of nucleobases being capable of participating in a triple helical structure through said sequence SA, molecule B containing a first segment B1 capable of participating in a triple helix structure with A through sequence SA and a segment B2 capable of further hybriziding, optionally capable of participating in a triple helix structure, and said molecule C containing a first segment C1 which can bind to segment B2 and a second segment C2 which can bind segment B1 of a further probe B, said probe molecules capable of being incorporated in an alternating way.