Claims
- 1. A polymer suitable for detecting, identifying or quantitating a target sequence, said polymer comprising;
a. a nucleobase sequence; b. a first arm segment and a second arm segment, wherein at least one of the first or second arm segments is linked to the nucleobase sequence through a flexible linkage; c. at least one linked donor moiety and at least one linked acceptor moiety, wherein said donor and acceptor moieties are linked to the polymer at positions which are at opposite ends of the nucleobase sequence.
- 2. The polymer of claim 1, wherein the nucleobase sequence is a probing nucleobase sequence.
- 3. The polymer of claim 1, wherein the polymer is a PNA.
- 4. A polymer suitable for detecting, identifying or quantitating a target sequence, said polymer comprising;
a. a first arm segment having a first and second end; b. a probing nucleobase sequence which is complementary or substantially complementary to the target sequence; c. a second arm segment which is embedded within the probing nucleobase sequence and which is complementary or substantially complementary to the first arm segment; d. a flexible linkage which links the second end of the first arm segment to the second end of the probing nucleobase sequence; e. a donor moiety linked to the first end of one of either of the first arm segment or the probing nucleobase sequence; and f. an acceptor moiety linked to the first end of the other of either of the first arm segment or the probing nucleobase sequence.
- 5. The polymer of claim 4, wherein the probing nucleobase sequence is 5-30 subunits in length and the first arm segment is 2-5 subunits in length.
- 6. The polymer of claim 4, wherein each of the PNA subunits of the polymer has the formula:
- 7. The polymer of claim 4, wherein each PNA subunit consists of a naturally occurring nucleobase attached to the aza nitrogen of the N-[2-(aminoethyl)]glycine backbone through a methylene carbonyl linkage.
- 8. The polymer of claim 4, wherein the flexible linkage consists of one or more linked compounds having the formula: —Y—(Om—(CW2)n)o—Z— wherein,
each Y is selected from the group consisting of: a single bond, —(CW2)p—, —C(O)(CW2)p—, —C(S)(CW2)p— and —S(O2)(CW2)p—; each Z is selected from the group consisting of: NH, NR2, S or O; each W is independently selected from the group consisting of: H, R2, —OR2, F, Cl, Br, I; wherein, each R2 is independently selected from the group consisting of: —CX3, —CX2CX3, —CX2CX2CX3, —CX2CX(CX3)2, and —C(CX3)3; each X is independently selected from the group consisting of H, F, Cl, Br or I; each m is independently 0 or 1; and each n, o and p are independently integers from 0 to 10.
- 9. The polymer of claim 8, wherein the flexible linkage consists of two linked compounds having the formula: —Y—(Om—(CW2)n)o—Z—, wherein, Y is —C(O)(CW2)p—, Z is NH, each W is H, m is 1, n is 2, o is 2and p is 1.
- 10. The polymer of claim 4, wherein the donor moiety is a fluorophore.
- 11. The polymer of claim 10, wherein the fluorophore is selected from the group consisting of 5(6)-carboxyfluorescein and its derivatives, 5-(2′-aminoethyl)-aminonaphthalene-1-sulfonic acid (EDANS), bodipy and its derivatives, rhodamine and its derivatives, Cy2, Cy3, Cy 3.5, Cy5, Cy5.5, texas red and its derivatives.
- 12. The polymer of claim 4, wherein the acceptor moiety is a quencher moiety.
- 13. The polymer of claim 12, wherein the quencher moiety is 4-((-4-(dimethylamino)phenyl)azo)benzoic acid (dabcyl).
- 14. The polymer of claim 4, wherein one or more spacer moieties link one or both of the donor and acceptor moieties to the end of the polymer to which it is linked.
- 15. The spacer moiety of claim 14, wherein the spacer moiety comprises one or more linked amino acid moieties.
- 16. The spacer moiety of claim 14, wherein the spacer moiety consists of one or more linked compounds having the formula: —Y—(Om—(CW2)n)o—Z—, wherein,
each Y is selected from the group consisting of: a single bond, —(CW2)p—, —C(O)(CW2)p—, —C(S)(CW2)p— and —S(O2)(CW2)p—; each Z is selected from the group consisting of: NH, NR2, S or O; each W is independently selected from the group consisting of: H, R2, —OR2, F, Cl, Br, I;
wherein, each R2 is independently selected from the group consisting of: —CX3, —CX2CX3, —CX2CX2CX3, —CX2CX(CX3)2, and —C(CX3)3; each X is independently selected from the group consisting of H, F, Cl, Br or I; each m is independently 0 or 1; and each n, o and p are independently integers from 0 to 10.
- 17. The polymer of claim 4, wherein the polymer is continuous from the N-terminus to the C-terminus and the first arm segment is oriented toward the N-terminus of the polymer and the probing nucleobase sequence is oriented toward the C-terminus of the polymer.
- 18. The polymer of claim 4, wherein the polymer is immobilized to a support.
- 19. A polymer suitable for detecting, identifying or quantitating a target sequence, said polymer comprising:
a. a probing nucleobase sequence having a first and second end and which is complementary or substantially complementary to the target sequence; b. a first arm segment having a first and second end; c. a second arm segment comprising a first and second end, wherein, at least a portion of the nucleobases sequence of the second arm segment is complementary to the nucleobase sequence of the first arm segment; d. a first flexible linkage which links the second end of the first arm segment to either of the first or second end of the probing nucleobase sequence; e. a second linkage which links the second end of the second arm segment to the other of either of the first or second end of the probing nucleobase sequence; f. a donor moiety linked to the first end of one of either of the first or second arm segments; and g. an acceptor moiety linked to the first end of the other of either of the first or the second arm segments.
- 20. The polymer of claim 19, wherein the second linkage consists of a single bond.
- 21. The polymer of claim 19, wherein the second linkage is a second flexible linkage.
- 22. The polymer of claim 19, wherein the probing nucleobase sequence is 5-30 subunits in length and each of the arm segments is independently 2-5 subunits in length.
- 23. The polymer of claim 19, wherein each of the PNA subunits of the polymer has the formula:
- 24. The polymer of claim 23, wherein each PNA subunit consists of a naturally occurring nucleobase attached to the aza nitrogen of the N-[2-(aminoethyl)]glycine backbone through a methylene carbonyl linkage.
- 25. The polymer of claim 19, wherein the first and second arm sequences are of equal subunit length and the nucleobase sequences of the first and second arm sequences are perfectly complementary.
- 26. The polymer of claim 19, wherein each of the first or second flexible linkages independently consist of one or more linked compounds having the formula: —Y—(Om—(CW2)n)o—Z—, wherein,
each Y is selected from the group consisting of: a single bond, —(CW2)p—, —C(O)(CW2)p—, —C(S)(CW2)p— and —S(O2)(CW2)p—; each Z is selected from the group consisting of: NH, NR2, S or O; each W is independently selected from the group consisting of: H, R2, —OR2, F, Cl, Br, I; wherein, each R2 is independently selected from the group consisting of: —CX3, —CX2CX3, —CX2CX2CX3, —CX2CX(CX3)2, and —C(CX3)3; each X is independently selected from the group consisting of H, F, Cl, Br or I; each m is independently 0 or 1; and each n, o and p are independently integers from 0 to 10.
- 27. The polymer of claim 26, wherein each of the first or second flexible linkages independently consists of one or more linked compounds having the formula: —Y—(Om—(CW2)n)o—Z—, wherein, Y is —C(O)(CW2)p—, Z is NH, each W is H, m is 1, n is 2, o is 2 and p is 1.
- 28. The polymer of claim 19, wherein the donor moiety is a fluorophore.
- 29. The polymer of claim 19, wherein the fluorophore is selected from the group consisting of 5(6)-carboxyfluorescein and its derivatives, 5-(2′-aminoethyl)-aminonaphthalene-1-sulfonic acid (EDANS), bodipy and its derivatives, rhodamine and its derivatives, Cy2, Cy3, Cy 3.5, Cy5, Cy5.5, texas red and its derivatives.
- 30. The polymer of claim 19, wherein the acceptor moiety is a quencher moiety.
- 31. The polymer of claim 19, wherein the quencher moiety is 4-((-4-(dimethylamino)phenyl)azo)benzoic acid (dabcyl).
- 32. The polymer of claim 19, wherein one or more spacer moieties link one or both of the donor and acceptor moieties to the first end of the arm segment.
- 33. The polymer of claim 32, wherein the spacer moiety consists of one or more amino acid moieties.
- 34. The polymer of claim 32, wherein the one or more spacer moieties consists of one or more linked compounds having the formula: —Y—(Om—(CW2)n)o—Z—, wherein,
each Y is selected from the group consisting of: a single bond, —(CW2)p—, —C(O)(CW2)p—, —C(S)(CW2)p— and —S(O2)(CW2)p—; each Z is selected from the group consisting of: NH, NR2, S or O; each W is independently selected from the group consisting of: H, R2, —OR2, F, Cl, Br, I; wherein, each R2 is independently selected from the group consisting of: —CX3, —CX2CX3, —CX2CX2CX3, —CX2CX(CX3)2, and —C(CX3)3; each X is independently selected from the group consisting of H, F, Cl, Br or I; each m is independently 0 or 1; and each n, o and p are independently integers from 0 to 10.
- 35. The polymer of claim 19, wherein the polymer is immobilized to a support.
- 36. A method for the detection, identification or quantitation of a target sequence, said method comprising the steps of:
a. contacting the sample with a polymer comprising:
(i). a probing nucleobase sequence; (ii). a first arm segment and a second arm segment, wherein at least one of the first or second arm segments is linked to the probing nucleobase sequence through a flexible linkage; (iii). at least one linked donor moiety and at least one linked acceptor moiety, wherein said donor and acceptor moieties are linked to the polymer at positions which are at opposite ends of the probing nucleobase sequence. b. detecting, identifying or quantitating the hybridization of the polymer to the target sequence, under suitable hybridization conditions, wherein the presence, absence or amount of target sequence present in the sample can be correlated with a change in detectable signal associated with at least one donor or acceptor moiety of the polymer.
- 37. A method for the detection, identification or quantitation of a target sequence, said method comprising the steps of:
a. contacting the sample with a polymer comprising:
(i). a first arm segment having a first and second end; (ii). a probing nucleobase sequence having a first and second end wherein the probing nucleobase sequence is complementary or substantially complementary to the target sequence; (iii). a second arm segment which is embedded within the probing nucleobase sequence and which is complementary or substantially complementary to the first arm segment; (iv). a flexible linkage which links the second end of the first arm segment to the second end of the probing nucleobase sequence; (v) a donor moiety linked to the first end of one of either of the first arm segment or the probing nucleobase sequence; (vi). an acceptor moiety linked to the first end of the other of either of the first arm segment or the probing nucleobase sequence; and b. detecting, identifying or quantitating the hybridization of the polymer to the target sequence, under suitable hybridization conditions, wherein the presence, absence or amount of target sequence present in the sample can be correlated with a change in detectable signal associated with at least one donor or acceptor moiety of the polymer.
- 38. The method of claim 37, wherein the method is used to detect target sequence in a closed tube (homogeneous) assay.
- 39. The method of claim 38, wherein the method is used to detect a nucleic acid comprising a target sequence wherein said nucleic acid has been synthesized or amplified in a reaction occurring in the closed tube (homogeneous) assay.
- 40. The method of claim 37, wherein the method is used to detect a target sequence in a living cell or tissue.
- 41. The method of claim 37, wherein the sample is contacted with one or more blocking probes to thereby suppress the binding of the polymer to a non-target sequence.
- 42. The method of claim 37, wherein the method is used to detect, identify, or quantitate the presence or amount of an organism or virus in the sample.
- 43. The method of claim 37, wherein the method is used to detect, identify, or quantitate the presence or amount of one or more species of an organism in the sample.
- 44. The method of claim 37, wherein the method is used to determine the effect of antimicrobial agents on the growth of one or more microorganisms in the sample.
- 45. The method of claim 37, wherein the method is used to determine the presence or amount of a taxonomic group of organisms in the sample.
- 46. The method of claim 37, wherein the method is used to diagnose a condition of medical interest.
- 47. The method of claim 37, wherein the target sequence is immobilized to a surface.
- 48. The method of claim 37, wherein the polymer is immobilized to a surface.
- 49. The method of claim 48, wherein the polymer is one of many polymers which are immobilized on an array to which the sample is contacted.
- 50. A method for the detection, identification or quantitation of a target sequence in a sample, said method comprising the steps of:
a. contacting the sample with a polymer comprising:
(i). a probing nucleobase sequence having a first and second end wherein nucleobase sequence is complementary or substantially complementary to the target sequence; (ii). a first arm segment comprising a first and second end; (iii). a second arm segment comprising a first and second end, wherein, at least a portion of the nucleobases of the second arm segment are complementary to the nucleobase sequence of the first arm segment; (iv). a first flexible linkage which links the second end of the first arm segment to either of the first or second end of the probing nucleobase sequence; (v). a second linkage which links the second end of the second arm segment to the other of either of the first or second end of the probing nucleobase sequence; (vi). a donor moiety linked to the first end of one of either of the first or second arm segments; and (vii). an acceptor moiety linked to the first end of the other of either of the first or the second arm segments; and b. detecting, identifying or quantitating the hybridization of the polymer to the target sequence, under suitable hybridization conditions, wherein the presence, absence or amount of target sequence present in the sample can be correlated with a change in detectable signal associated with at least one donor or acceptor moiety of the polymer.
- 51. The method of claim 50, wherein the second linkage is a single bond.
- 52. The method of claim 50, wherein the second linkage is a second flexible linkage.
- 53. The method of claim 50, wherein the method is used to detect target sequence in a closed tube (homogeneous) assay.
- 54. The method of claim 53, wherein the method is used to detect a nucleic acid comprising a target sequence wherein said nucleic acid has been synthesized or amplified in a reaction occurring in the closed tube (homogeneous) assay.
- 55. The method of claim 50, wherein the method is used to detect a target sequence in a living cell or tissue.
- 56. The method of claim 50, wherein the sample is contacted with one or more blocking probes to thereby suppress the binding of the polymer to a non-target sequence.
- 57. The method of claim 50, wherein the method is used to detect, identify, or quantitate the presence or amount of an organism or virus in the sample.
- 58. The method of claim 50, wherein the method is used to detect, identify, or quantitate the presence or amount of one or more species of an organism in the sample.
- 59. The method of claim 50, wherein the method is used to determine the effect of antimicrobial agents on the growth of one or more microorganisms in the sample.
- 60. The method of claim 50, wherein the method is used to determine the presence or amount of a taxonomic group of organisms in the sample.
- 61. The method of claim 50, wherein the method is used to diagnose a condition of medical interest.
- 62. The method of claim 50, wherein the target sequence is immobilized to a support.
- 63. The method of claim 50, wherein the polymer is immobilized to a support.
- 64. The method of claim 64, wherein the polymer is one of many polymers which are immobilized on an array to which the sample of interest is contacted.
- 65. An array comprising at least two support bound polymers suitable for detecting, identifying or quantitating a target sequence, wherein each polymer comprises;
a. a first arm segment of PNA subunits having a first and second end; b. a probing nucleobase sequence of PNA subunits having a first and second end wherein the probing nucleobase sequence is complementary or substantially complementary to the target sequence; c. a second arm segment of PNA subunits which is embedded within the probing nucleobase sequence and is complementary or substantially complementary to the first arm segment; d. a flexible linkage which links the second end of the first arm segment to the second end of the probing nucleobase sequence; e. a donor moiety linked to the first end of one of either of the first arm segment or the probing nucleobase sequence; and f. an acceptor moiety linked to the first end of the other of either of the first arm segment or the probing nucleobase sequence.
- 66. An array comprising at least two support bound polymers suitable for detecting, identifying or quantitating a target sequence, each polymer comprising;
a. a probing nucleobase sequence having a first and second end, wherein the probing nucleobase sequence is complementary or substantially complementary to the target sequence; b. a first arm segment comprising a first and second end; c. a second arm segment comprising a first and second end, wherein, at least a portion of the nucleobases of the second arm segment are complementary to the nucleobase sequence of the first arm segment; d. a first flexible linkage which links the second end of the first arm segment to either of the first or second end of the probing nucleobase sequence; e. a second linkage which links the second end of the second arm segment to the other of either of the first or second end of the probing nucleobase sequence; f. a donor moiety linked to the first end of one of either of the first or second arm segments; and g. an acceptor moiety linked to the first end of the other of either of the first or the second arm segments.
- 67. A kit suitable for performing an assay which detects the presence, absence or amount of target sequence in a sample, wherein said kit comprises:
a. at least one polymer having:
(i). a probing nucleobase sequence; (ii). a first arm segment and a second arm segment, wherein at least one of the first or second arm segments is linked to the probing nucleobase sequence through a flexible linkage; (iii). at least one linked donor moiety and at least one linked acceptor moiety, wherein said donor and acceptor moieties are linked to the polymer at positions which are at opposite ends of the probing nucleobase sequence. b. other reagents or compositions necessary to perform the assay.
- 68. The kit of claim 67, wherein the kit is used to detect organisms in food, beverages, water, pharmaceutical products, personal care products, dairy products or environmental samples.
- 69. The kit of claim 67, wherein the kit is used to examine clinical samples such as clinical specimens or equipment, fixtures and products used to treat humans or animals.
CROSS REFERENCE TO RELATED APPLICATIONS:
[0001] This application is a continuation-in-part of U.S. application Ser. No. 08/958532 filed on Oct. 27, 1997.
Divisions (1)
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Number |
Date |
Country |
Parent |
09179298 |
Oct 1998 |
US |
Child |
09888341 |
Jun 2001 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
08958532 |
Oct 1997 |
US |
Child |
09179298 |
Oct 1998 |
US |