EP4421185A2

Method for spatial tagging and analysing nucleic acids in a biological specimen

Abstract

The present invention relates to methods for spatial tagging of nucleic acid molecules in a biological specimen and in particular to a method comprising: (a) providing a solid substrate on which multiple species of capture probes are immobilized such that each species occupies a distinct position on the solid substrate, wherein said probes are for a primer extension reaction and wherein each species of said capture probes comprise a nucleic acid molecule comprising: (i) a cleavage domain for releasing the capture probe from the surface of the solid substrate, (ii) a positional domain that corresponds to the position of the capture probe on the solid substrate, and (iii) a capture domain; (b) contacting said solid substrate with a biological specimen; and (c) releasing said capture probes from the surface of the solid substrate under conditions that allow nucleic acids of the biological specimen to hybridise to the capture domain in said capture probes and simultaneously and/or subsequently extending said capture probes using the nucleic acid molecules hybridised to the capture probes as extension templates to produce extended probes thereby spatially tagging the nucleic acids of the biological specimen, wherein step (c) comprises contacting said solid substrate with an aqueous reaction mixture comprising: (i) a polymerase enzyme capable of extending said capture probes using the nucleic acid molecules hybridised to the capture probes as extension templates; and (ii) means for releasing said capture probes from the surface of the solid substrate.

EP4421185A2, drawing sheet 1
Sheet 1 of 7

Term

11.1 yearsto projected expiry

Projected expiry 17 November 2037, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

16 claims: 13 independent, 3 dependent

  1. 1
    A method for spatially tagging nucleic acids of a biological specimen comprising:(a) providing a solid substrate comprising captures probes comprising a first species of capture probes and a second species of capture probes immobilized such that both the first species and the second species of capture probes occupies a distinct position on the solid substrate, wherein the capture probes of the first species and the second species are a primer for an extension reaction and wherein: the capture probes of the first and second species comprises a nucleic acid molecule comprising: (i) a cleavage domain for releasing the capture probes from the surface of the solid substrate, and (ii) a positional domain that corresponds to the position of the capture probes on the solid substrate, and wherein the first species of capture probes comprises a capture domain comprising a poly(T) DNA oligonucleotide;and the second species of capture probes comprise a capture domain for a target nucleic acid;(b) contacting the solid substrate with the biological specimen;and (c) simultaneously releasing the capture probes from the surface of the solid substrate under conditions that allow a nucleic acid of the biological specimen to hybridise to the capture domains of the capture probes and extending the capture probes using the nucleic acid hybridised to the capture probes as extension templates to produce extended capture probes, wherein step (c) comprises contacting said solid substrate with an aqueous reaction mixture comprising: (i) a polymerase enzyme capable of extending the capture probes using the nucleic acid hybridised to the capture probes as an extension template to produce the extended capture probes;and (ii) a means for releasing the capture probes from the surface of the solid substrate.
  2. 4
    The method of any one of claims 1 to 3, wherein the polymerase enzyme is a reverse transcriptase enzyme, optionally wherein the reverse transcriptase enzyme is selected from a list consisting of M-MLV, MuLV, AMV and HIV reverse transcriptase enzymes and a derivative or a mutant thereof, preferably wherein the derivative is a sequence-modified derivative, optionally wherein the reverse transcriptase enzyme comprises a polypeptide sequence as set forth in SEQ ID NO:2 or a polypeptide sequence that has at least 80% sequence identity thereto, optionally wherein the reverse transcriptase enzyme is encoded by a nucleotide sequence comprising a sequence as set forth in SEQ ID NO: 1 or a nucleotide sequence that has at least 80% sequence identity thereto.
  3. 5
    The method of any one of claims 1 to 4, wherein the method further comprises a step of synthesizing a complementary strand of the extended capture probes to produce double-stranded extended capture probes, optionally wherein the method further comprises a step of amplifying the extended capture probes and/or the double-stranded extended capture probes.
  4. 6
    The method of any one of claims 1 to 5, wherein the method further comprises a step of analysing the extended capture probes and/or the double-stranded extended capture probes and/or amplicons thereof, wherein the step of analysing the extended capture probes and/or the double-stranded extended capture probes and/or amplicons thereof comprises analysing the sequences of the extended capture probes and/or the double-stranded extended capture probes and/or amplicons thereof.
  5. 8
    The method of any one of claims 1 to 7, further comprising a step of labelling the extended capture probes generated in step (c) and/or the complementary strands and/or the amplicons thereof, wherein the labelling step may be contemporaneous with, or subsequent to, the extending step.
  6. 9
    The method of any one of claims 1 to 8, wherein the capture probes further comprise an amplification domain.
  7. 10
    The method of any one of claims 1 to 9, wherein the positional domain of the capture probes comprises a barcode sequence and wherein the positional domain of the first species of capture probes and the second species of capture probes is the same at the distinct position on the solid substrate.
  8. 11
    The method of any one of claims 1 to 10, wherein the poly(T) capture domain comprising a poly-T DNA oligonucleotide comprises at least 10 deoxythymidine residues and/or comprises a random or degenerate oligonucleotide sequence.
  9. 12
    The method of any one of claims 1 to 11, wherein the solid substrate comprises an array, optionally, wherein the array is a bead array.
  10. 13
    The method of any one of claims 1 to 12, wherein the capture probes are immobilized on the solid substrate in a random arrangement, optionally wherein the method further comprises a step of performing a nucleic acid detection reaction on the solid substrate to determine the positional domain sequence of the randomly located capture probes on the solid substrate.
  11. 14
    The method of any one of claims 1 to 13, wherein the biological specimen is a tissue section, optionally wherein the tissue section is prepared using a fixed tissue, e.g., a formalin-fixed paraffin-embedded (FFPE) tissue, or deep frozen tissue.
  12. 15
    The method of any one of claims 1 to 14, further comprising a step of permeabilizing and/or fixing the biological specimen after contacting the specimen with the solid substrate and prior to step (c).
  13. 16
    The method of any one of claims 7 to 15, wherein the biological specimen is imaged using light, bright field, dark field, phase contrast, fluorescence, reflection, interference or confocal microscopy or a combination thereof.