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Enzymatic production of single-molecule FISH and RNA capture probes.

Imre GasparFrank WippichAnne Ephrussi
Published in: RNA (New York, N.Y.) (2017)
Arrays of singly labeled short oligonucleotides that hybridize to a specific target revolutionized RNA biology, enabling quantitative, single-molecule microscopy analysis and high-efficiency RNA/RNP capture. Here, we describe a simple and efficient method that allows flexible functionalization of inexpensive DNA oligonucleotides by different fluorescent dyes or biotin using terminal deoxynucleotidyl transferase and custom-made functional group conjugated dideoxy-UTP. We show that (i) all steps of the oligonucleotide labeling-including conjugation, enzymatic synthesis, and product purification-can be performed in a standard biology laboratory, (ii) the process yields >90%, often >95% labeled product with minimal carryover of impurities, and (iii) the oligonucleotides can be labeled with different dyes or biotin, allowing single-molecule FISH, RNA affinity purification, and Northern blot analysis to be performed.
Keyphrases
  • single molecule
  • living cells
  • nucleic acid
  • atomic force microscopy
  • high efficiency
  • pet imaging
  • high resolution
  • nitric oxide
  • quantum dots
  • computed tomography
  • high throughput
  • pet ct
  • recombinant human