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Vector-Based RNAi |
Vector-based RNAi involves the use of plasmids or viral vectors to deliver small hairpin RNAs (shRNAs) instead of synthetic short interfering RNAs (siRNAs) into cells, enabling stable and long-term gene silencing. This technique offers significant advantages for studying gene function, validating gene targets, and conducting functional genomics research. You can use RNAi vector technologies to regulate gene inhibition with inducible RNAi expression, select for a pure population of cells stably expressing an RNAi sequence, and control gene expression in vivo with tissue-specific promoters.
To help you achieve successful and efficient gene knockdown in your experiments, we offer our own RNAi vectors along with protocols and workflow recommendations. Benefits of using RNAi vectors include:
Pol II miR RNAi and shRNA vectors are both tools used for gene silencing via RNAi, but they operate through slightly different mechanisms and offer distinct advantages.
Pol II miR RNAi vectors are designed to express miRNA mimics under the control of a Pol II promoter, which allows for regulated expression in a tissue-specific or inducible manner. These vectors harness the natural miRNA processing pathway, leading to efficient and precise gene silencing.
In contrast, shRNA vectors express shRNAs under the control of either Pol III or Pol II promoters. The shRNAs are processed into siRNAs by cellular machinery, leading to targeted mRNA degradation and gene silencing.
While both systems are effective for stable gene knockdown, the choice between them depends on the specific requirements of the experiment. Pol II miR RNAi vectors offer more flexibility in expression control and mimic natural miRNA pathways, whereas shRNA vectors can provide robust and direct knockdown of target genes.
| Pol II miR RNAi | shRNA vectors | |
|---|---|---|
| Description | microRNA-adapted inserts for more efficient processing of the RNAi molecule | Traditional short hairpin inserts for transient or long-term RNAi |
| Promoter type | Pol II | Pol III |
| # shRNA per vector | Polycistronic expression of miR-adapted shRNAs (chaining) | Single shRNA expression per promoter |
| Expression tracking | Co-expression of GFP allows expression to be tracked | Delivery can be tracked with a separate cassette but not by shRNA expression |
| Vector compatibility | Compatible with most Gateway destination vectors | Compatible with BLOCK-iT destination vectors |
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Highly efficient delivery of Pol II miR RNAi expression vectors or shRNA vectors helps achieve significant levels of knockdown. Optimizing transfection or transduction, controlling for experimental variability, and using a powerful transfection reagent vastly improves the chances for RNAi success. The use of positive and negative controls also helps in the assessment of your experiments. Here are some tips to help optimize delivery conditions for RNAi vector success:
Technical inquires:
Our Technical Application Scientists are available to help assist you at techsupport@thermofisher.com
Ordering & Order Status inquires:
If you have questions about pre-designed RNAi orders and order status, please contact us at genomicorders@thermofisher.com
If you have any questions about Custom RNAi orders and order status, please contact us at RNAiSupport@thermofisher.com
For Research Use Only. Not for use in diagnostic procedures.