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Thermo Scientific™ Pierce™ Magnetic RNA-Protein Pull-Down Kit
Description
Utilize a streamlined, robust method to enrich for protein-RNA interactions using end-labeled RNA as the bait with Thermo Scientific™ Pierce Magnetic RNA-Protein Pull-Down Kit.
Additional Information and Online Ordering
The Magnetic RNA-Protein Pull-Down Kit provides reagents to efficiently enrich RNA Binding Proteins (RBPs) using RNA end-labeled with desthiobiotin and streptavidin magnetic beads. The complete kit contains sufficient reagents for 20 RNA labeling reactions and 20 protein-RNA pull-down assays. This direct enrichment of the protein-RNA interaction provides an alternative to antibody capture of protein-RNA complexes or moieties incorporated into the nucleic acid. An added advantage to the kit is that it includes validated controls for both the labeling and pull-down assay. The kit is amenable to several downstream applications, including Western blotting and Mass Spectrometry (MS).
Highlights:
- Direct – capture ribonucleoprotein complexes directly with end-labeled RNA; does not use or require antibodies for pull-down
- Easy to use – no spin cups or centrifugation necessary for the enrichment of RBP; procedure streamlined for minimal hands-on time (less than 3 hours) after RNA labeling reaction
- Flexible – use in vitro transcribed RNA or synthetic RNA for labeling of various lengths and complexity; proteins successfully enriched using endogenous, over-expressed, and in vitro translated lysates
- Specific – low bead background; unrelated RNA or mutated RNA does not significantly enrich specified RBPs
- Economical – less expensive than purchasing commercially synthesized end-labeled RNA, magnetic beads, and reagents separately
- Complete – contains both labeling and enrichment modules with buffers necessary for assay; positive control RNA, negative control RNA, and RBP antibody included
Includes:
Complete kit contains the Pierce RNA 3'-End Desthiobiotinylation Kit, positive and negative RNA controls, nucleic-acid compatible streptavidin magnetic beads, and buffers for RBP enrichment and elution
Requires:
User-supplied RNA and lysate (experimental sample)
Recommended for:
- Mutational analysis
- Structure function analysis
- Identification of RNA:Protein interactions
- MS analysis of unknown RNA:protein binding pairs or complexes
Specifications
Specifications
| Capacity (Metric) | 1 mL |
| Kit Contents | 50 pmol of RNA per Reaction |
| Content And Storage | Sufficient For: 20 RNA-protein complex pull-down reactions Slurry: 10mg/mL, 1% solids • Pierce Nucleic Acid-Compatible Streptavidin Magnetic Beads, 1 mL (store at 4°C) • RNA Capture Buffer (1X), 10 mL (store at 4°C) • Tris (20 mM, pH 7.5), 5 mL (store at 4°C) • Protein-RNA Binding Buffer (10X), 1 mL (store at 4°C) • Wash Buffer (1X), 10 mL (store at 4°C) • Biotin Elution Buffer, 1.5 mL (store at 4°C) • HuR Monoclonal Antibody (Mouse), 50 μL (store at 4°C) • Positive RNA Control (AR RNA), 250 pmol (store at -20°C) • Negative RNA Control (polyA25 RNA), 250 pmol (store at -20°C) • Pierce RNA 3' End Desthiobiotinylation Kit (part number 20163; store at -20°C) |
| Product Line | Pierce |
| Quantity | 20 reactions kit |
| Type | RNA-Protein Pull Down Kit |
| Sufficient For | 20 Reactions |
| Format | Kit |
Frequently Asked Questions (FAQs)
Proteins isolated with the Magnetic RNA-Protein Pull-Down Kit cannot be detected by Coomassie or silver staining. Gels can be used for detection depending on the amount of total protein used in the experiment. If the protein of interest has an antibody available, it can usually be detected via western blotting. Finally, if the protein isolated is unknown, it can be analyzed by mass spectrometry.
The elution fraction is compatible with preparation of peptides. Samples may be processed using the Mass Spec Sample Prep Kit for Cultured Cells (Cat. No. 89840). Alternatively, the elution fraction may be separated by denaturing PAGE. Bands of interest can be excised, and digested using the In-Gel Tryptic Digestion Kit (Cat. No. 89871).
Here are the possible causes and solutions:
- Insufficient signal: Increase amount of secondary antibody; Use a more sensitive chemiluminescent detection (e.g., SuperSignal Dura or SuperSignal Femto Chemiluminescent Substrate).
- Poor antibody quality: Pre-screen antibody with cell lysate; Include cell lysate as a control on western blot.
- Protein was insufficient in lysate: Increase amount of sample; Identify alternate source of protein; Use a more concentrated lysate.
Here are possible causes and solutions:
- Binding reaction was not optimized: Optimize incubation time, temperature, salt and detergent for binding reactions.
- Insufficient washing stringency: Increase stringency of wash buffer; add salt and/or detergent.
- Ratio of labeled RNA to lysate was not optimized: Titrate labeled RNA with protein lysate; Reduce the concentration of lysate to ~2mg/mL.
Here are possible causes and solutions:
- Insufficient amount of target protein in the sample: Increase amount of sample.
- Sample was not compatible with the binding reaction: Buffer exchange sample using Zeba Desalting Columns.
- Binding reaction was not optimized: Optimize incubation time, temperature, salt and detergent for binding reactions; Titrate amount of labeled RNA to protein lysate; Use a more concentrated lysate.
- RNA binding protein had low affinity for labeled RNA: Add crosslinking reagent (e.g., UV, etc.) after protein has bound RNA.
For Research Use Only. Not for use in diagnostic procedures.