Claims
- 1. An asymmetric benzoxanthene dye compound having the formula:
- 2. The compound of claim 1 wherein one of Y1 and Y2 is oxygen and the other is hydroxyl.
- 3. The compound of claim 1 wherein:
X1 is selected from the group consisting of carboxylic acid, sulfonic acid, and —CH2OH; X2 and X5 taken separately are selected from the group consisting of hydrogen, chlorine, fluorine, and lower alkyl; and X3 and X4 taken separately are selected from the group consisting of hydrogen, chlorine, fluorine, lower alkyl carboxylic acid, sulfonic acid, and linking group.
- 4. The compound of claim 1 wherein X2 and X5 are chlorine.
- 5. The compound of claim 1 wherein X1 is carboxylic acid.
- 6. The compound of claim 1 wherein one of X3 or X4 is linking group, the other being hydrogen.
- 7. The compound of claim 1 wherein one of X1 or X5 is selected from the group consisting of carboxylic acid, sulfonic acid, and —CH2OH.
- 8. The compound of claim 1 wherein one of R1-R3 is fluorine.
- 9. The compound of claim 8 wherein R3 is fluorine.
- 10. The compound of claim 1 wherein:
one of Y1 and Y2 is oxygen and the other is hydroxyl; R1 is a chlorine; R3 is a fluorine; R2 and R4-R8 are hydrogen; and R9 is substituted phenyl wherein X1 is carboxyl, X2 and X5 are chlorine, and one of X3 and X4 is carboxyl and the other is hydrogen.
- 11. The compound of claim 1 wherein:
one of Y1 and Y2 is oxygen and the other is hydroxyl; R1 and R3 are fluorine; R2 and R4-R8 are hydrogen; and R9 is substituted phenyl wherein X1 is carboxyl, X2 and X5 are chlorine, and one of X3 and X4 is carboxyl and the other is hydrogen
- 12. The compound of claim 1 wherein:
one of Y1 and Y2 is oxygen and the other is hydroxyl; R1 is methoxy, R2 is chlorine, R3 is fluorine; R4-R8 are hydrogen; and R9 is substituted phenyl wherein X1 is carboxyl, X2 and X5 are chlorine, and one of X3 and X4 is carboxyl and the other is hydrogen
- 13. The compound of claim 1 wherein:
one of Y1 and Y2 is oxygen and the other is hydroxyl; R3 is fluorine; R1, R2, and R4-R8 are hydrogen; and R9 is substituted phenyl wherein X1 is carboxyl, X2 and X5 are chlorine, and one of X3 and X4 is carboxyl and the other is hydrogen.
- 14. The compound of claim 1 wherein:
one of Y1 and Y2 is oxygen and the other is hydroxyl; R1-R8 are hydrogen; and R9 is substituted phenyl wherein X1 is carboxyl, X2 and X5 are chlorine, and one of X3 and X4 is carboxyl and the other is hydrogen.
- 15. The compound of claim 1 wherein:
one of Y1 and Y2 is oxygen and the other is hydroxyl; R1 is chlorine; R2R8 are hydrogen; and R9 is substituted phenyl wherein X1 is carboxyl, X2 arid X5 are chlorine, and one of X3 and X4 is carboxyl and the other is hydrogen.
- 16. The compound of claim 1 wherein:
one of Y1 and Y2 is oxygen and the other is hydroxyl; R1 is methoxy; R2 is chlorine; R3-R8 are hydrogen; and R9 is substituted phenyl wherein X1 is carboxyl, X2 and X5 are chlorine, and one of X3 and X4 is carboxyl and the other is hydrogen.
- 17. A phosphoramidite compound having the formula:
- 18. The compound of claim 17 wherein B2 and B3 taken together form an alkene chain containing up to 5 carbon atoms in the principle chain and a total of up to 10 carbon atoms with both terminal valence bonds of said chains being attached to the nitrogen atom; or B2 and B3 taken together with the nitrogen atom form a saturated nitrogen heterocycle which contains one or more heteroatoms selected from the group consisting of nitrogen, oxygen, and sulfur.
- 19. The compound of claim 18 wherein:
B1 is selected from the group consisting of methyl, β-cyanoethyl or 4-nitrophenylethyl; B2 and B3 taken separately are selected from the group consisting of isopropyl, t-butyl, isobutyl, and sec-butyl; and B2 and B3 taken together is morpholino.
- 20. The compound of claim 17 wherein X and Y taken together is
- 21. The compound of claim 17 wherein X and Y taken together is
- 22. A phosphoramidite compound having the formula:
- 23. The compound of claim 22 wherein the linkage is
- 24. The compound of claim 22 wherein the linkage is
- 25. The compound of claim 22 wherein the linkage is
- 26. The compound of claim 22 wherein B is selected from the group consisting of uracil, cytosine, deazaadenine, and deazaguanosine.
- 27. A compound having the formula:
- 28. The compound of claim 27 wherein R3 is fluorine.
- 29. The compound of claim 27 wherein Y2 is hydroxyl.
- 30. A labeled nucleotide having the formula:
- 31. The labeled nucleotide of claim 30 wherein B is selected from the group consisting of uracil, cyosine, deazaadenine, and deazaguanosine.
- 32. The labeled nucleotide of claim 30 wherein the linkage is
- 33. The labeled nucleotide of claim 30 wherein both W1 and W2 are H; and W3 is
- 34. The labeled nucleotide of claim 30 wherein W1 is H; W2 is OH; and W3 is
- 35. A labeled polynucleotide containing a nucleotide having the formula:
- 36. The labeled polynucleotide of claim 35 wherein B is selected from the group consisting of uracil, cytosine, deazaadenine, and deazaguanosine.
- 37. The labeled polynucleotide of claim 35 wherein the linkage is
- 38. A method of polynucleotide sequencing comprising the steps of:
forming a mixture of a first, a second, a third, and a forth class of polynucleotides such that:
each polynucleotide in the first class includes a 3′-terminal dideoxyadenosine and is labeled with a first dye; each polynucleotide in the second class includes a 3′-terminal dideoxcytidine and is labeled with a second dye; each polynucleotide in the third class includes a 3′-terminal dideoxyguanosine and is labeled with a third dye; and each polynucleotide in the forth class includes a 3′-terminal dideoxythymidine and is labeled with a forth dye; wherein one of the first, second, third, or forth dyes is the asymmetric benzoxanthene dye of claim 1;the other of the dyes being spectrally resolvable from the asymmetric benzoxanthene dye and from each other, electrophoretically separating the polynucleotides thereby forming bands of similarly sized polynucleotides; illuminating the bands with an illumination beam capable of causing the dyes to fluoresce; and identifying the classes of the polynucleotides in the bands by the fluorescence spectrum of the dyes.
- 39. The method of claim 38 wherein the other of the dyes are selected from the group consisting of 6-carboxyfluorescein, 6-carboxy-4,7,2′,7′-tetrachlorofluorescein, and 6carboxy-4,7,2′,4′,5′,7′-hexachlorofluorescein.
- 40. A method of fragment analysis comprising:
forming a labeled polynucleotide fragment, the fragment being labeled with the dye compound of claim 1;subjecting the labeled polynucleotide fragment to a size-dependent separation process; and detecting the labeled polynucleotide fragment subsequent to the separation process.
- 41. The method of claim 40 wherein the size-dependent separation process is electrophoresis and the detecting is by fluorescence.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of application serial No. 09/495,111, filed Feb. 1, 2000, U.S. Pat. No. 6,303,775, which is a continuation of application serial No. 08/626,085, filed Apr. 1, 1996, U.S. Pat. No. 6,020,481, both of which are incorporated herein by reference.
Continuations (2)
|
Number |
Date |
Country |
Parent |
09495111 |
Feb 2000 |
US |
Child |
09976842 |
Oct 2001 |
US |
Parent |
08626085 |
Apr 1996 |
US |
Child |
09495111 |
Feb 2000 |
US |