Claims
- 1. A polymeric reagent for solid phase synthesis of oligomers which has a particulate polymeric moiety linked by a linking moiety to a nucleosidyl moiety wherein:
- (a) said polymeric moiety is a polymer which has cross-linked polymeric chains wherein the polymeric chains have from 0% to no more than 10% aromatic monomeric units and at least about 90% to 100% non-aromatic monomeric units within the polymeric chains and optionally have aromatic cross-links and which is derivatized with a reactive group --X.sub.1 which is selected from --X groups depicted in FIGS. 6a and 6b and wherein said polymer shows a maximum change in volume with change in solvent of less than about 100%;
- (b) said linking moiety is a bifunctional compound of formula Y.sub.1 -alk-Y.sub.2 wherein alk is a substantially straight-chained alkylene group of 5 to 80 carbon atoms and Y.sub.1 and Y.sub.2 are selected from --Y groups depicted in FIGS. 6a and 6b;
- (c) said nucleosidyl moiety is activated at its 3'--OH to have a --X.sub.2 group which is selected from --X groups depicted in FIGS. 6a and 6b; and
- (d) each of --X.sub.1 and Y.sub.1 and --X.sub.2 and Y.sub.2 are selected to give --X.sub.2 Y.sub.2 --groups selected from the --XY--groups depiected in FIGS. 6a and 6b.
- 2. A polymeric reagent according to claim 1 wherein polymeric moiety has a particle size of about 10 to about 100 microns and a pore size of about 60 .ANG. to about 2,000 .ANG..
- 3. A polymeric reagent according to claim 2 wherein said polymer is a hydroxylated methacrylic polymer.
- 4. A polymeric reagent according to claim 2 wherein said linking moiety is an alkylene diamine of about 5 to about 50 carbon atoms.
- 5. A polymeric reagent according to claim 4 wherein said linking moiety is an alkylene diamine of about 6 to about 18 carbon atoms.
- 6. A polymeric reagent according to claim 5 wherein said polymeric moiety is a methacrylic polymer.
- 7. A polymeric reagent according to claim 5 wherein said polymer is a hydroxylated methacrylic polymer.
- 8. A polymeric reagent according to claim 6 wherein said polymeric moiety is a methacrylic polymer.
- 9. A polymeric reagent according to claim 1 wherein said polymeric moiety is a copolymer of monoethylenically unsaturated aliphatic monomer selected from aliphatic esters of acrylic and of methacrylic acid and a polyethylenically unsaturated monomer selected from polyethylenically unsaturated esters of methacrylic acid, polyethylenically unsaturated esters of acrylic acid, and polyvinylidene monomers.
- 10. A polymeric reagent according to claim 9 wherein said polyethylenically unsaturated monomer is a polyvinylidene cross-linking monomer.
- 11. A polymeric reagent according to claim 10 wherein said polyvinylidene cross-linking monomer is divinylbenzene.
- 12. A polymeric reagent according to claim 10 wherein said monoethylenically saturated aliphatic monomer is an aliphatic ester of acrylic acid or an aliphatic ester of methacrylic acid.
- 13. A polymeric reagent according to claim 11 wherein said monoethylenically saturated aliphatic monomer is an aliphatic ester of acrylic acid or an aliphatic ester of methacrylic acid.
- 14. A polymeric reagent according to claim 9 wherein said polyethylenically unsaturated monomer is an ester of acrylic acid or an ester of methacrylic acid.
- 15. A polymeric reagent according to claim 14 wherein said monoethylenically saturated aliphatic monomer is an aliphatic ester of acrylic acid or an aliphatic ester of methacrylic acid.
- 16. A polymeric reagent according to claim 9 wherein said monoethylenically unsaturated aliphatic monomer is 2-hydroxyethyl methacrylate.
- 17. A polymeric reagent according to claim 16 wherein said polyethylenically unsaturated monomer is ethylene dimethacrylate.
- 18. A polymeric reagent for solid phase synthesis of oligomers which has a particulate polymeric moiety linked by a linking moiety to a nucleosidyl moiety wherein
- (a) said polymeric moiety has a particle size of from about 10 to about 200 microns, has a pore size of from about 60 .ANG. to about 2,000 .ANG., has a macroreticular structure and is selected from methacrylic polymers derivatized with a reactive group --X.sub.1 which is selected from the X groups of FIGS. 6a and 6b;
- (b) said linking moiety is a bifunctional compound of formula Y.sub.1 -alk-Y.sub.2 wherein alk is a substantially straight chained alkylene group of 5 to 80 carbon atoms and Y.sub.1 and Y.sub.2 are selected from --Y groups of FIGS. 6a and 6b; and
- (c) said nucleosidyl moiety is activated at its 3'--OH to have a group --X.sub.2 which is selected from the X groups of FIGS. 6a and 6b;
- wherein X.sub.1 and Y.sub.1 are selected so as to react to form a conjugation pair --X.sub.1 Y.sub.1 -- which is selected from --XY-- groups depicted in FIGS. 6a and 6b and X.sub.2 and Y.sub.2 are selected so as to react to form a conjugation pair --X.sub.2 Y.sub.2 -- which is selected from --XY groups depicted in FIGS. 6a and 6b.
- 19. A polymeric reagent according to claim 18 wherein X.sub.1, X.sub.2, Y.sub.1, Y.sub.2 are selected from the groups below:
- (a) if Y.sub.1 or Y.sub.2 is --SH, then X.sub.1 or X.sub.2 and the product --X.sub.1 Y.sub.1 -- or --X.sub.2 Y.sub.2 -- are as follows:
- ______________________________________X.sub.1 or X.sub.2 X.sub.1 Y.sub.1 or X.sub.2 Y.sub.2______________________________________ ##STR1## ##STR2## ##STR3## ##STR4##RSS SS ##STR5## ##STR6## ##STR7## ##STR8##______________________________________
- (b) if Y.sub.1 or Y.sub.2 is --NH.sub.2, then X.sub.1 or X.sub.2 and the product --X.sub.1 Y.sub.1 -- or --X.sub.2 Y.sub.2 -- are as follows:
- ______________________________________X.sub.1 or X.sub.2 X.sub.1 Y.sub.1 or X.sub.2 Y.sub.2______________________________________ ##STR9## ##STR10## ##STR11## ##STR12## ##STR13## NC ##STR14## ##STR15## ##STR16## NHCH.sub.2 CHOH ##STR17## NHCH.sub.2 CHNH.sub.2SCN ##STR18##______________________________________
- and
- (c) if Y.sub.1 or Y.sub.2 is --OH, then X.sub.1 or X.sub.2 and the product --X.sub.1 Y.sub.1 -- or --X.sub.2 Y.sub.2 -- are as follows:
- ______________________________________X.sub.1 or X.sub.2 X.sub.1 Y.sub.1 or X.sub.2 Y.sub.2______________________________________ ##STR19## ##STR20## ##STR21## ##STR22## ##STR23## OCH.sub.2 CHOH______________________________________
- wherein X is halogen and R is an organic radical.
- 20. A polymeric reagent according to claim 19 wherein said --X.sub.1 is epoxide, --Y.sub.1 and Y.sub.2 are amino and --X.sub.2 is ethyl-3-dimethylaminopropyl carbodiimide.
- 21. A polymeric reagent according to claim 20 wherein said polymeric moiety is a copolymer of 2-hydroxyethylmethacrylate and ethylene dimethacrylate.
Parent Case Info
This application is a continuation of U.S. Ser. No. 08/231,900, filed Apr. 22, 1994, now abandoned, which is a continuation of U.S. Ser. No. 07/781,329, filed Oct. 13, 1991, now abandoned, which is a continuation-in-part of U.S. Ser. No. 07/605,849, filed Oct. 26, 1990, now abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (2)
Number |
Date |
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0168623 |
Dec 1981 |
JPX |
9401446 |
Jan 1994 |
WOX |
Non-Patent Literature Citations (2)
Entry |
Ikehara et al. eds., "The Synthesis of Polynucleotides," Adv. Carbohydrate Chem. and Biochem., 36, 135-213 (1979); pp. 135, 204-213 supplied. |
Caruthers, "DNA Synthesis for Nonchemists: The Phosphoramidite Method on Silica Supports," Ch. 3 in Synthesis and Applications of DNA and RNA, Narang ed., Academic Press, 1987, New York, pp. 47-94; pp. 47 and 52-55 supplied. |
Continuations (2)
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231900 |
Apr 1994 |
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Parent |
781329 |
Oct 1991 |
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Continuation in Parts (1)
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605849 |
Oct 1990 |
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