Claims
- 1. In a method for synthesizing a branched or multiply connected macromolecular structure comprising oligonucleotide units, the method of the type wherein separately synthesized oligonucleotide units are assembled into a branched or multiply connected macromolecular structure, an improvement comprising:providing one or more first oligonucleotide units having one or more haloalkylamino groups; providing one or more second oligonucleotide units having one or more thiol or phosphorothioate groups; and combining the one or more first oligonucleotide units with the one or more second oligonucleotide units so that the haloalkylamino groups react with the thiol or phosphorothioate groups to form thioalkylamino or thiophosphorylalkylamino bridges therebetween.
- 2. A branched or multiply connected macromolecular structure capable of specifically binding to a target molecule, the branched or multiply connected macromolecular structure comprising:a plurality of oligonucleotide units, at least one oligonucleotide unit comprising a target binding sequence that binds specifically and stably with the target molecule, and at least two oligonucleotide units comprising signal generation moieties capable of directly or indirectly generating a detectable signal in the presence of the target molecule, wherein said plurality of oligonucleotide units are connected to one another by one or more thioalkylamino, or thiophosphorylalkylamino bridges.
- 3. The branched or multiply connected macromolecular structure of claim 2, wherein said plurality of oligonucleotide units are covalently connected by at least one branch point by one or more thiophosphorylalkylamino bridges formed from either a haloalkylamino derivatized oligonucleotide and a 5′-phosphorothioate derivatized oligonucleotide or a haloalkylamino derivatized oligonucleotide and a 3′-phosphorothioate derivatized oligonucleotide.
- 4. The branched or multiply connected macromolecular structure of claim 2 having a comb structure.
- 5. The branched or multiply connected macromolecular structure of claim 2 wherein said target binding sequence ranges from 12 to 40 nucleotides in length.
- 6. The branched or multiply connected macromolecular structure of claim 2 wherein said signal generation moiety ranges from 12 to 50 nucleotides in length.
- 7. The branched or multiply connected macromolecular structure of claim 2 having from 2 to 20 signal generation moieties.
- 8. In a kit for detecting the presence of a target molecule in a sample, the kit of the type wherein a nucleic acid probe specific for the target molecule and a complexing buffer are provided, the improvement comprising:a nucleic acid probe comprising a plurality of covalently connected oligonucleotide units, at least one oligonucleotide unit comprising a target binding sequence that binds specifically and stably with the target molecule, and at least two oligonucleotide units comprising signal generation moieties capable of directly or indirectly generating a detectable signal in the presence of the target molecule, wherein said plurality of oligonucleotide units are connected to one another by one or more thioalkylamino or thiophosphorylalkylamino bridges.
- 9. The kit of claim 8, wherein said plurality of oligonucleotide units are covalently connected by at least one branch point by one or more thiophosphorylalkylamino bridges formed from either a haloalkylamino derivatized oligonucleotide and a 5′-phosphorothioate derivatized oligonucleotide or a haloalkylamino derivatized oligonucleotide and a 3′-phosphorothioate derivatized oligonucleotide.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation of co-pending provisional U.S. Patent Application Serial No. 60/009,918, filed Jan. 12, 1996, the specification of which is incorporated herein by reference in full.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
5424413 |
Hogan et al. |
Jun 1995 |
|
5681943 |
Letsinger et al. |
Oct 1997 |
|
Provisional Applications (1)
|
Number |
Date |
Country |
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60/009918 |
Jan 1996 |
US |