| Field | Specification |
|---|---|
| Mfr No | |
| Product Type | |
| Reporter | |
| Selection Marker | Blasticidin, Hygromycin, Puromycin, Zeocin |
| Shipping | |
| Species |
Background
NR3C2 encodes the mineralocorticoid receptor (MR), a ligand-activated nuclear receptor that mediates the effects of the hormone aldosterone. Upon ligand binding, MR translocates to the nucleus and regulates target genes through hormone response elements. MR is central to water and electrolyte balance, blood pressure regulation, and the control of inflammation and fibrosis in the kidney and cardiovascular system. Although MR shares response elements with the glucocorticoid receptor, it drives MR-specific outputs such as upregulation of EGFR. Progesterone and estrogen normally act as MR antagonists, but certain MR mutations convert progesterone into an agonist, causing early-onset hypertension that can worsen in pregnancy. MR dysregulation is broadly linked to hypertension.
Product Description & Applications
The NR3C2 Reporter Lentivirus is a transcription-factor reporter system for robust detection of mineralocorticoid receptor transcriptional activity in mammalian cells. The construct uses tandem repeats of the NR3C2 response element derived from the EGFR promoter to specifically monitor MR activity, coupled to a minimal promoter driving a fluorescent or luminescent reporter. A constitutively expressed selection marker and optional secondary reporter support stable polyclonal reporter cell lines with readout by microscopy, flow cytometry, or luminometry.
Stable lentiviral integration provides consistent reporter expression in dividing and post-mitotic cells, including primary and cryopreserved cultures, avoiding transient-transfection variability. Particles are purified by PEG precipitation and sucrose gradient centrifugation and transduce difficult-to-transfect cells, supporting research on aldosterone signaling, blood pressure regulation, and hypertension.
About This Product
This reporter lentivirus places a BFP2, d2GFP, EGFP, Firefly Luc, Gaussia Luc, GFP, GFP + Firefly Luc, mCherry, Renilla Luc, RFP, RFP + Firefly Luc reporter gene under the control of tandem consensus response elements specific for the NR3C2 transcription factor, coupled to a minimal TATA-box promoter and a proprietary upstream enhancer that maximizes signal-to-noise. The constitutively expressed selection marker (Blasticidin, Hygromycin, Puromycin, Zeocin) and/or secondary reporter enables stable polyclonal cell line generation and flexible readout by fluorescence microscopy, flow cytometry, or luminometry.
Stable integration via the lentiviral backbone ensures consistent, clonally representative reporter expression in dividing and post-mitotic target cells — including primary T cells, macrophages, organoids, and cryopreserved material — eliminating the variability inherent to transient transfection. The self-inactivating LTR design and third-generation packaging minimize insertional mutagenesis risk and ensure biosafety classification at BSL-2.
Can't find the lentiviral construct you need, or want to adjust key design elements? Contact us to discuss custom LV design and optional add-ons.
Common customization requests
- Insert / payload: replace the gene/sequence, swap to a different isoform, add mutations, or optimize cloning features.
- Expression design: change promoter (e.g., CMV/EF1α/PGK), add enhancers, or adjust regulatory elements.
- Reporters: add/swap GFP/RFP/mCherry/luciferase (single or dual reporters where applicable).
- Selection markers: add/swap puromycin/blasticidin/neomycin or fluorescent selection options.
- Vector format: switch between OE, shRNA, CRISPR (sgRNA/Cas systems), or control vectors (where supported).
Add-ons you can request
- Control viruses: empty vector, non-targeting shRNA, reporter-only controls, or matched backbone controls.
- Packaging / format: concentration options, aliquoting, or custom fill volume for screening workflows.
- Documentation: construct map/sequence confirmation package (as available) and batch documentation.
What to include in your request
- Target cell type/model (cell line or primary cells) and intended readout (reporter, knockdown, OE, etc.)
- Insert sequence (FASTA) or reference ID, plus any required tags/mutations
- Promoter, reporter, and selection marker preferences
- Desired scale and preferred format (aliquots / concentration requests)
Email us at support@biohippo.com or use the Talk to a Scientist request form.