This protocol provides researchers with a new tool to monitor the fidelity of transcription in multiple model organisms.
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Method Article
This protocol provides researchers with a new tool to monitor the fidelity of transcription in multiple model organisms.
Accurate transcription is required for the faithful expression of genetic information. Surprisingly though, little is known about the mechanisms that control the fidelity of transcription. To fill this gap in scientific knowledge, we recently optimized the circle-sequencing assay to detect transcription errors throughout the transcriptome of Saccharomyces cerevisiae, Drosophila melanogaster, and Caenorhabditis elegans. This protocol will provide researchers with a powerful new tool to map the landscape of transcription errors in eukaryotic cells so that the mechanisms that control the fidelity of transcription can be elucidated in unprecedented detail.
The genome provides a precise biological blueprint of life. To implement this blueprint correctly, it is important for the genome to be transcribed with great precision. However, transcription is unlikely to be error free. For example, RNA polymerases have long been known to be error-prone in vitro1,2, and recently it was shown that they commit errors in vivo as well3,5,6, particularly when confronted with DNA damage7,8,
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1. Preparation
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Like all massively parallel sequencing approaches, each C-seq experiment produces an unwieldy, large dataset. For first-time users, it can be difficult to handle these datasets; thus, it is recommended that all users contact an experienced bio-informatician prior to the experimentation. On average, the expectation is that users will generate approximately 55–70 Giga bases (Gbases) per run on most massively parallel sequencing platforms. For this protocol, typically, 12–30 samples were mul.......
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Here, we describe an optimized protocol for the preparation of C-seq libraries for the detection of transcription errors in Saccharomyces cerevisiae, Drosophila melanogaster, and Caenorhabditis elegans. This protocol has numerous advantages over existing protocols, as well as alternative techniques.
Over the past 15 years, numerous reporter systems have been developed that rely on luciferase7,8 or Cre-Lox rec.......
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The authors have nothing to disclose.
This publication was made possible by funding from grant T32ES019851 (to C. Fritsch), R01AG054641, and an AFAR young investigator grant (to M. Vermulst).
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| Name | Company | Catalog Number | Comments |
|---|---|---|---|
| RiboPure RNA purification kit | ThermoFisher | AM1926 | Total RNA purification |
| Genelute mRNA purification kit | Sigma-Aldrich | MRN70-1KT | mRNA purification |
| Nuclease-free Water | Ambion | AM9937 | Elution and dilution |
| Ambion RNase III | ThermoFisher | AM2290 | RNA fragmentation |
| T4 RNA Ligase 1 (ssRNA Ligase) | New England Biolabs | M0204S | RNA circularization |
| Ribolock | ThermoFisher | EO0381 | RNase inhibitor |
| SuperScript III Reverse Transcriptase | ThermoFisher | 18080044 | Rolling circle reverse transcription |
| 10 mM dNTP mix | ThermoFisher | 18427013 | Rolling circle reverse transcription |
| Random hexamers (50 ng/µL) | ThermoFisher | N8080127 | Rolling circle reverse transcription |
| NEB Second Strand Synthesis Module | New England Biolabs | E6111S | Second Strand Synthesis |
| NEBNext Ultra DNA Library Prep Kit for Illumina | New England Biolabs | E7370S | cDNA library preparation |
| NEB Next index primers | NEB | E7335S | Multiplex PCR primers |
| Oligo Clean & Concentrator | Zymo Research | D4061 | Clean up of RNA and DNA samples |
| DynaMag-2 Magnet | ThermoFisher | 12321D | Magnetic bead purification |
| AMPure XP beads | Beckman Coulter | A63881 | Magnetic bead purification |
| Eppendorf 5424 Microcentrifuge | FisherScientific | 05-403-93 | centrifugation |
| INCU-Shaker 10 L | Benchmark Scientific | H1010 | Cell culture |
| T100 Thermal Cycler | BIO RAD | 1861096 | Medium to High temperature cycling conditions |
| PTC-200 Thermal Cycler | GMI | 8252-30-0001 | Low temperature cycling conditions |
| RNase Away | Molecular Bioproducts | 700S-11 | Sterilization |
| 50 mL Centrifuge Tube | Corning | 430290 | Nuclease-free |
| 15 mL Centrifuge Tube | Corning | 430052 | Nuclease-free |
| Eppendorf tubes | USA Scientific | 1615-5500 | Nuclease-free |
| 4200 Tapestation System | Agilent | G2991AA | Nucleotide analysis instrument for quality control of RNA and single stranded DNA samples |
| High Sensitivity RNA Screen Tape | Agilent | 5067-5579 | Quality control of RNA and single stranded DNA samples |
| RNA ScreenTape Sample Buffer | Agilent | 5067-5577 | Quality control of RNA and single stranded DNA samples |
| RNA ScreenTape Ladder | Agilent | 5067-5578 | Quality control of RNA and single stranded DNA samples |
| 2100 Bioanalyzer Instrument | Agilent | G2939BA | Double stranded DNA quality control |
| High Sensitivity DNA Kit | Agilent | 5067-4626 | Quality control for double stranded cDNA samples |
| Water Bath | VWR | 462-0244 | Incubation |
| NanoDrop 2000/2000C Spectrophotometer | ThermoFisher | ND-2000C | Determination of RNA concentration |
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