EP1546118A2

Compositions and methods for detection and isolation of phosphorylated molecules

Abstract

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Projected expiry passed 2 May 2023, 3.4 years ago.

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73 claims: 16 independent, 57 dependent

  1. 1
    Claims of equivalent WO 2004042347 A2 CLAIMS What is claimed is:1. A binding solution comprising: a) a BAPTA metal chelating moiety;b) a salt comprising trivalent metal ions;and, c) an acid.
  2. 2
    A binding solution comprising:a) a phosphate-binding compound having formula (A)m(L)n(B) wherein A is a chemical moiety, L is a linker, B is a metal-chelating moiety, m is an integer from 1 to 4 and n is an integer from 0 to 4;b) a salt comprising trivalent metal ions;and, c) an acid.
  3. 19
    20. A method for binding a phosphorylated target molecule in a sample, said method comprising the steps of:i) contacting said sample with a binding solution according to any one of claims 1-19;and, ii) incubating said sample and said binding solution for sufficient time to allow said phosphate-binding compound to associate with said phosphorylated target molecule whereby said phosphorylated target molecule is bound.
  4. 24
    25. A method for detecting a phosphorylated target molecule in a sample immobilized on a membrane, said method comprising the steps of:i) optionally electrophoretically separating said sample on a gel;ii) immoblilizing said sample to a membrane;iii) optionally contacting said membrane of step ii) with a fixing solution;iv) contacting said membrane of step iii) with a binding solution according to any one of Claims 2-19, wherein said binding solution comprises;a) a phosphate-binding compound having formula (A)m(L)n(B) wherein A is a chemical moiety, L is a linker, B is a metal-chelating moiety, m is an integer from 1 to 4 and n is an integer from 0 to 4;b) a salt comprising metal ions;and, c) an acid;v) incubating said membrane of step iv) and said binding solution for sufficient time to allow said phosphate-binding compound to associate with said phosphorylated target molecule;and, vi) visualizing said compound whereby said phosphorylated target molecule is detected.
  5. 31
    32. A method for detecting a phosphorylated target molecule in a sample immobilized on a gel, said method comprising the steps of:i) immobilizing said sample on a gel;ii) optionally contacting said gel of step i) with a fixing solution;iii) contacting said gel of step ii) with a binding solution according to any one of claims 2-19, wherein said binding solution comprises;a) a compound having formula (A)m(L)n(B) wherein A is a chemical moiety, L is a linker, B is a metal-chelating moiety, m is an integer from 1 to 4 and n is an integer from 0 to 4;b) a salt comprising metal ions;and, c) an acid;iv) incubating said gel of step iii) and said binding solution for sufficient time to allow said compound to associate with said phosphorylated target molecule;and, v) visualizing said compound whereby said phosphorylated target molecule is detected.
  6. 40
    41. A method for detecting a phosphorylated target molecule in a sample immobilized on a matrix, said method comprising the steps of:i) immobilizing said sample on an matrix;ii) contacting said matrix of step i) with a binding solution according to any one of Claims 2-19, wherein said binding solution comprises;a) a phosphate-binding compound having formula (A)m(L)n(B) wherein A is a chemical moiety, L is a linker, B is a metal-chelating moiety, m is an integer from 1 to 4 and n is an integer from 0 to 4;b) a salt comprising metal ions;and, c) an acid;iii) incubating said matrix of step ii) and said binding solution for sufficient time to allow said compound to associate with said phosphorylated target molecule;and, iv) visualizing said compound whereby said phosphorylated target molecule is detected.
  7. 47
    48. A method for isolating phosphorylated target molecules from a sample, said method comprising the steps of:i) contacting said sample with a binding solution according to any one claims 1 - 19;and, ii) incubating said sample of step i) and said binding solution for sufficient time to allow said compound to associate with said phosphorylated target molecule to form a ternary complex;and, iii) separating said complex from said sample whereby said phosphorylated target molecules are isolated.
  8. 54
    55. A method for isolating phosphorylated target molecules from a sample, said method comprising the steps of:i) charging a matrix comprising a metal-chelating moiety selected from the group consisting of Formula IV with a salt comprising trivalent metal ions;ii) equilibrating said matrix with an acidic binding buffer, iii) adding said sample to said matrix wherein said phosphorylated target molecules are bound to said matrix of step ii);iv) eluting said phosphorylated target molecules from said matrix with a base solution whereby said phosphorylated target molecules are isolated.
  9. 61
    62. A kit for binding a phosphorylated target molecule in a sample, said kit comprising:i) a binding solution according to any one of Claims 1 -19;and, ii) wherein said kit optionally includes molecular weight markers that comprise phosphorylated and non-phosphorylated polypeptides.
  10. 67
    68. A matrix comprising an immobilized phosphate-binding compound according to- Formula (A)m(L)n(B) wherein A is a chemical moiety, L is a linker, B is a metal chelating moiety according to Formula IV, m is an interger from 1 to 4 and n is an interger from 0 to 4.
  11. 68
    69. A compound having formula (A)m(L)n(B) wherein A is a label, L is a linker, m is an integer from 1 to 4, n is an integer from 0 to 4 and B is a metal-chelating moiety comprising Formula IV wherein said compounds are selected from the group consisting of Compound 6, Compound 7, Compound 9, Compound 10, Compound 11 , 10 Compound 15, Compound 17, Compound 18, Compound 19, Compound 23, Compound 24, H Compound 25 Compound 26 and wherein R is -(CH 2 CO 2 R 13 ) 2 and R 13 is independently hydrogen or a salt.
  12. 69
    70. A compound comprising a metal-chelating moiety according to Formula IV that is - agarose Compound 14, or agarose Compound 13 wherein R 19 is -(CH 2 CO 2 R 13 ) 2 and R 13 is independently hydrogen or a salt.
  13. 70
    71. A compound comprising a metal-chelating moiety according to Formula IV wherein X is H or F;R 20 is H, methyl or phenyl;R 21 is CH 3 , Ph, -CH=CH-Ph, (CH=CH) 2 -Ph, 2-pyrrolyl, or -CH 2 CH 2 CO 2 Na;and R 19 is -(CH 2 CO 2 R 13 ) 2 and R 13 is independently hydrogen or a salt.
  14. 71
    72. A ternary complex comprising a trivalent gallium ion, a phosphorylated target molecule and a phosphate-binding compound according to formula (A)m(L)n(B) wherein A is a chemical moiety, L is a linker, B is a metal chelating moiety, m is an interger from 1 to 4 and n is an interger from 0 to 4.
  15. 72
    73. A ternary complex comprising a BAPTA chelating moiety, a trivalent gallium ion and a phosphorylated target molecule.
  16. 73
    74. A phosphorylated target molecule determined by combining a sample comprising a phosphorylated target molecule with a binding solution according to any one of claims 1-19.
Independent claims16