IP Library Patent Application 13442236
Patent Application
App. No. 13/442,236

TEMPLATE DIRECTED SPLIT AND MIX SYNTHESIS OF SMALL MOLECULE LIBRARIES

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Quick Facts
Patent No.
US None
App. No.
13/442,236
Abstract

The invention combines the advantages of split and mix synthesis with the advantages of template directed synthesis. The method comprises the steps of: a) adding a linker molecule L to one or more reaction wells; b) adding a molecule fragment to each of said reaction wells; c) adding an oligonucleotide identifier to each of said reaction wells; d) subjecting said wells to conditions sufficient to allow said molecule fragments and said oligonucleotide identifiers to become attached to said linker molecule, or conditions sufficient for said molecule fragments to bind to other molecule fragments and sufficient for said oligonucleotide identifiers to bind to other oligonucleotide identifiers; e) combining the contents of said one or more reaction wells; and f) contacting the resulting bifunctional molecule(s) of step e) with one or more (oligonucleotide) templates each capable of hybridizing to at least one of the oligonucleotide identifiers added in step c).

Claims (12)

1 . A method for synthesizing an encoded molecule comprising the steps of:

a) Adding a linker molecule L to one or more reaction wells;

b) Adding a molecule fragment to each of said reaction wells;

c) Adding an oligonucleotide identifier to each of said reaction wells;

d) Subjecting said wells to:

conditions sufficient to allow said molecule fragments and said oligonucleotide identifiers to become attached to said linker molecule, or

conditions sufficient for said molecule fragments to bind to other molecule fragments and sufficient for said oligonucleotide identifiers to bind to other oligonucleotide identifiers;

e) Combining the contents of said one or more reaction wells;

wherein at least one reactive group of the linker molecule L reacts with a reactive group in the molecule fragment, or with a reactive group in the oligonucleotide;

wherein at least one reactive group of the molecule fragments reacts with a reactive group in the linker molecule L, or with a reactive group in another molecule fragment,

wherein at least one reactive group of the oligonucleotide identifiers reacts with a reactive group in the linker L, or with a reactive group in another oligonucleotide identifier; and

wherein the oligonucleotide identifier added to each well in step c) identifies the molecule fragment added to the same well in step b).