
Ordering Information
| Product Name | Catalog # | UNIT | Price | Qty | FAVORITES | |
fibrillin-1 Lentiviral Activation Particles (h) | sc-401449-LAC | 200 µl | $455.00 |
FBN1 encodes fibrillin-1, a major extracellular matrix glycoprotein that assembles into microfibrils and supports elastic fiber architecture in connective tissues. Fibrillin-1 contributes to tissue mechanics and matrix organization, and it modulates signaling by sequestering latent TGF-β complexes and influencing downstream SMAD-dependent transcriptional programs. Through these structural and signaling roles, FBN1 impacts cell–matrix interactions, mechanotransduction, and extracellular matrix remodeling. Genetic and functional perturbation of FBN1 is strongly linked to heritable connective tissue phenotypes and dysregulated TGF-β pathway activity, making it a key target for mechanistic studies in vascular, musculoskeletal, and ocular biology.
fibrillin-1 Lentiviral Activation Particles (h) address this need by packaging the complete synergistic activation mediator (SAM) transcriptional activation system into transduction-ready, high-titer lentiviral particles, enabling efficient FBN1 upregulation across a broader range of human cell types.
fibrillin-1 Lentiviral Activation Particles (h) deliver all functional components of the synergistic activation mediator (SAM) system via lentiviral transduction. The system comprises three particle preparations co-transduced into target cells: one encoding catalytically inactive dCas9 (D10A and N863A mutations) fused to the VP64 transactivation domain with a blasticidin resistance gene; one encoding the MS2-p65-HSF1 fusion protein with a hygromycin resistance gene; and one encoding a target-specific 20 nt sgRNA fused to two MS2 RNA aptamers with a puromycin resistance gene. Following lentiviral transduction and genomic integration of the expression cassettes, the SAM components are stably expressed and assemble at the target locus within the proximal promoter region upstream of the FBN1 transcriptional start site, where VP64, p65, and HSF1 act cooperatively to recruit endogenous transcriptional machinery and drive sustained upregulation of endogenous fibrillin-1 expression. The use of nuclease-inactive dCas9 avoids the introduction of double-strand DNA breaks and preserves the native FBN1 genomic locus and regulatory architecture.
The lentiviral format offers several practical advantages: stable genomic integration supports heritable activation across cell divisions; high-titer particle preparations eliminate the need for in-house viral production; and compatibility with primary, non-dividing, and transfection-resistant cell types expands experimental accessibility. Successful transduction can be confirmed and enriched through triple antibiotic selection using puromycin, hygromycin, and blasticidin.
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.