IL283835A

Direct oligonucleotide synthesis on cells and biomolecules

Abstract

This record has no abstract on file.

IL283835A, drawing sheet 1
Sheet 1 of 19

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

25 claims: 13 independent, 12 dependent

  1. 1
    A method of synthesizing on a viable cell an oligonucleotide with a predetermined sequence, the method comprising the steps of:a) providing an initiator with a free 3’-hydroxyl attached to a cell surface molecule of the cell or anchored in the cell surface membrane of the cell;b) repeating under biological conditions for a plurality of cycles the steps of (i) contacting the initiator or elongated fragments having free 3’-O-hydroxyls with a 3’-O-blocked nucleoside triphosphate and a template-independent DNA polymerase so that the initiator or elongated fragments are elongated by incorporation of a 3’-O-blocked nucleoside triphosphate to form 3’-O-blocked elongated fragments, and (ii) deblocking the elongated fragments to form elongated fragments having free 3’-hydroxyls, thereby synthesizing the oligonucleotide of predetermined sequence.
  2. 5
    The method of any one of the previous claims, wherein said biological conditions comprise buffered physiological salts at a pH in the range of from 6.8 to 7.8 and a temperature in the range of from 15°C to 41°C.
  3. 6
    The method of any one of the previous claims, wherein said viable cells are mammalian cells.
  4. 7
    The method of any one of the previous claims, wherein said initiator comprises an oligonucleotide having a lipophilic anchor covalently attached to a 5’ end, wherein the lipophilic anchor inserts stably into a cell surface membrane of said viable cell.
  5. 8
    A method of generating a cDNA library with cell-specific oligonucleotide barcodes, the method comprising the steps of:(a) synthesizing under biological conditions a unique oligonucleotide barcode on the cell surface membrane of each cell in a population of cells to form a population of barcoded cells;(b) isolating each barcoded cell in a reactor;(c) lysing barcoded cells in each reactor;(d) performing reverse-transcriptase polymerase chain reaction (RT-PCR) in each reactor to produce a cDNA library with cell-specific oligonucleotide barcodes.
  6. 11
    The method of any one of claims 8 to 10, wherein said reactors are micelles of a waterin-oil emulsion.
  7. 13
    The method of any one of claims 9 to 12, wherein said cDNAs from said reactors are combined and analyzed by high throughput DNA sequencing.
  8. 14
    A method of extending one or more native polynucleotides with a predetermined nucleotide sequence, comprising:providing one or more native polynucleotides in a reaction mixture under TdT reaction conditions, the native polynucleotides having free 3’-hydroxyls;and extending the one or more native polynucleotide with a predetermined sequence of nucleotides by repeated cycles of the steps (i) contacting the native polynucleotides or elongated native polynucleotides having free 3’-O-hydroxyls with a 3’-O-blocked nucleoside triphosphate and a TdT variant so that the native polynucleotides or elongated native polynucleotides are elongated by incorporation of a 3’-O-blocked nucleoside triphosphate to form 3’-O-blocked elongated native polynucleotides, and (ii) deblocking the elongated native polynucleotides to form elongated native polynucleotides having free 3’-hydroxyls, thereby synthesizing on the native polynucleotides a oligonucleotide of the predetermined sequence.
  9. 17
    The method of any one of claims 14 to 16, wherein each of said cycles further comprises splitting said native polynucleotides or elongated native polynucleotides among separate reaction mixtures in which said native polynucleotides or elongated elongated native polynucleotides are elongated by a different kind of nucleoside triphosphate to form said elongated native polynucleotides after which said elongated native polynucleotides of the separate reaction mixtures are combined.
  10. 18
    A method of generating cDNA libraries each with an oligonucleotide label, the method comprising the steps of:(a) capturing mRNA by hybridizing the mRNA to capture oligonucleotides attached to one or more solid supports, wherein the capture oligonucleotides are complementary to segments of the mRNA and wherein the capture oligonucleotides are attached to the one or more solid supports by 5-ends and have 3’-ends with free 3’-hydroxyls;(b) extending 3’-ends of the capture oligonucleotides with a reverse transcriptase using the captured mRNAs as templates to form cDNA libraries on the one or more solid supports;(c) synthesizing oligonucleotide labels on cDNAs of the one or more solid support by template-free enzymatic synthesis.
  11. 21
    The method of any one of claims 18 to 20, wherein said one or more solid supports is a solid surface with said capture oligonucleotides attached thereto, wherein said step of capturing includes capturing mRNA of a permeabilized tissue slice deposed on the solid surface to form a spatial cDNA library array that preserves the spatial distribution of cDNAs of the tissue slice.
  12. 22
    The method of any one or claims 18 to 21 wherein said step of synthesizing includes synthesizing at each of a plurality of different predetermined positions on said spatial cDNA library array a unique position tag to form position tag-cDNA conjugates^
  13. 24
    The method of any one of claims 21 to 23, wherein said solid surface includes binding compounds attached thereto for capturing predetermined non-nucleic acid ligands.