EP3000883B1

Methods and devices for nucleic acids synthesis

Abstract

This record has no abstract on file.

EP3000883B1, drawing sheet 1
Sheet 1 of 18

Term

5.1 yearsleft in the term

Expires 10 November 2031.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

14 claims: 6 independent, 8 dependent

  1. 1
    A method for producing at least one target polynucleotide having a predefined sequence, the method comprising:a. providing a first and a second support-bound, single-stranded, template oligonucleotides, wherein each has a predefined sequence and is bound to a first and a second feature of a support, respectively, wherein the first template oligonucleotide comprises at its 5' end sequence complementarity to a 5' end of the second template oligonucleotide;b. generating a first and a second construction oligonucleotides complementary to the first and second template oligonucleotides, respectively, in a chain extension reaction, wherein the first construction oligonucleotide comprises at its 3' end sequence complementarity to a 3' end of the second construction oligonucleotide;c. providing a support-bound, single-stranded, anchor oligonucleotide at a select feature, wherein a 5' end of the anchor oligonucleotide comprises sequence complementarity to a 5' end of the first construction oligonucleotide;and d. hybridizing the first and second construction oligonucleotides to the anchor oligonucleotide.
  2. 7
    A method for synthesizing a target polynucleotide having a predefined sequence, the method comprising:a. providing an anchor support comprising a plurality of features, wherein each feature comprises a support-bound, single-stranded, anchor oligonucleotide, wherein a 5' end of the anchor oligonucleotide comprises sequence complementarity to a 5' end of a first construction oligonucleotide;b. providing a first support having a plurality of features, wherein each feature comprises a support-bound, single-stranded, template oligonucleotide, each template oligonucleotide having a predefined sequence;c. generating the first construction oligonucleotide by polymerase extension, using the template oligonucleotide as template on the first support;d. positioning the first support and the anchor support such that each feature of the first support is aligned to a corresponding feature of the anchor support;e. releasing the first construction oligonucleotide in a solution and hybridizing the first construction oligonucleotide to a corresponding anchor oligonucleotide on the anchor support;and f. optionally repeating steps b-e with a second support having a second template oligonucleotide, for generating a second construction oligonucleotide to be hybridized to the anchor support, wherein the first and the second construction oligonucleotides have 3' end complementarity, thereby generating a target polynucleotide.
  3. 10
    The method of any one of claims 1-9 wherein each template oligonucleotide has a primer binding site at its 3' end, wherein optionally the primer binding site is a universal primer binding site.
  4. 12
    The method of any one of claims 1-11 wherein the first and second template oligonucleotides are synthesized or spotted on the support, and are optionally immobilized on the support at their 3' end, wherein the support preferably is a microarray device.
  5. 13
    The method of any one of claims 1-12 comprising:providing N number of support-bound, single-stranded, template oligonucleotides thereby generating the first construction oligonucleotide comprising at its 3' end sequence complementarity to the 3' end of the second construction oligonucleotide, and a Nth construction oligonucleotide comprising at its 3' end sequence complementarity to a 3' end of a (N-1)th construction oligonucleotide;wherein preferably the N construction oligonucleotides span the entire sequence of the target polynucleotide without gaps.
  6. 14
    The method of any one of claims 2-13 wherein the step of releasing allows diffusion of the construction oligonucleotide towards the anchor oligonucleotide, optionally in the presence of a porous membrane allowing for substantially vertical diffusion of the construction oligonucleotide towards the anchor oligonucleotide, wherein preferably the porous membrane decreases lateral diffusion of the construction oligonucleotide.