Reusable initiators for synthesizing nucleic acids
The invention provides improved methods for synthesizing polynucleotides, such as DNA and RNA, using renewable initiators coupled to a solid support. Using the methods of the invention, specific sequences of polynucleotides can be synthesized de novo, base by base, in an aqueous environment, without the use of a nucleic acid template.
1. A composition comprising a solid support and renewable nucleic acid initiator comprising an oligonucleotide having a 5′ end coupled to the solid support and a renewable sequence-specific cleavage element, the renewable nucleic acid initiator serving as a substrate for template-independent nucleic acid synthesis.
2. The composition of claim 1 wherein the oligonucleotide comprises a 5′-amine, 5′-hydroxyl, 5′-phosphate, 5′-sulfhydryl, or 5′-benzaldehyde group coupled to the solid support comprising formyl, chloromethyl, epoxide, amine, thiol, alkene, or terminal C—F bonds.
3. The composition of claim 1 wherein the oligonucleotide is irreversibly coupled to the solid support.
4. The composition of claim 1 wherein the renewable sequence-specific cleavage element is incorporated into the oligonucleotide after the 5′ end has been irreversibly coupled to the solid support.
5. The composition of claim 4 , wherein the renewable sequence-specific cleavage element is incorporated enzymatically.
6. The composition of claim 1 , wherein the renewable sequence-specific cleavage element comprises a poly-U tract.
7. The composition of claim 1 , wherein the support-coupled oligonucleotide comprises an index element between its support coupled 5′ end and the renewable sequence-specific cleavage element to act as a template during oligonucleotide strand synthesis from a 3′ end of the support-coupled oligonucleotide.