Nova Patents
EP3299463A2

Enzymatic encoding

Abstract

Disclosed is a method for obtaining a bifunctional complex comprising a display molecule part and a coding part wherein a nascent bifunctional complex comprising a chemical reaction site and priming site for enzymatic addition of a tag is reacted at the chemical reaction site with one or more reactants, and provided with respective tag(s) identifying the reactant(s) at the priming site using one or more enzymes.

EP3299463A2, drawing sheet 1
Sheet 1 of 270

Term

Term ended

Projected expiry passed 30 October 2023, 2.9 years ago.

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38 claims: 2 independent, 36 dependent

  1. 1
    A method for alternating, parallel synthesis of a combinatorial library comprising different bifunctional complexes, each bifunctional complex comprising a molecule part and a double stranded oligonucleotide coding part identifying the molecule part, said method comprising the steps of i) providing a scaffold "X" linked to an oligonucleotide "x" identifying scaffold "X" in each of a plurality of different reaction compartments;ii) providing a plurality of different reactants;iii) providing a plurality of different oligonucleotides, each oligonucleotide identifying a different reactant;iv) reacting a different reactant with scaffold "X" in each different reaction compartment, thereby generating different molecule parts;v) connecting oligonucleotide "x" with an oligonucleotide "a" identifying the reactant having reacted or is to be reacted in said different reaction compartments, thereby generating different oligonucleotide coding parts comprising oligonucleotide "x";and vi) making the different oligonucleotide coding parts comprising oligonucleotide "x" double stranded by a process comprising a polymerase extension reaction wherein the different molecule parts are small, non-polymeric molecules with a molecular weight of less than 1000 Da.
  2. 17
    A split-and-mix method for generating a library of bifunctional complexes comprising a molecule part and a double stranded oligonucleotide coding part, which method comprises the steps of:providing, in separate compartments, nascent bifunctional complexes, each comprising a chemical reaction site and a oligonucleotide reaction site for addition of an oligonucleotide;performing a round of reaction in each compartment comprising, in any order, a reaction between the chemical reaction site and one or more reactants to provide a new chemical reaction site, and an addition of one or more respective oligonucleotides identifying the one or more reactants at the oligonucleotide reaction site to provide a new oligonucleotide reaction site;pooling together the content of two or more compartments and subsequently splitting the pooled contents into an array of compartments for a new round of reaction;performing the new round of reaction in each compartment comprising, in any order, a reaction between the new chemical reaction site and one or more reactants to provide a reactant specific reaction product, and an addition of one or more respective oligonucleotides identifying the one or more reactants at the new oligonucleotide reaction site, obtaining the library of bifunctional complexes in which each member of the library comprises a molecule part comprising a reactant specific reaction product and a double stranded oligonucleotide coding part comprising respective oligonucleotides which code for the identity of each of the reactants that have participated in the formation of the reactant specific reaction product, wherein the molecule parts of the library are small, non-polymeric molecules with a molecular weight of less than 1000 Da;and wherein the double stranded oligonucleotide coding part is generated by a polymerase extension reaction in combination with chemical or enzymatic ligation of the oligonucleotides.