Bio-Connect

Notch1 Pathway Reporter Kit (Human)

Research Use Only
79503
BPS Bioscience
Product group Assays
Price on request
Packing Size
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Overview

  • Supplier
    BPS Bioscience
  • Product Name
    Notch1 Pathway Reporter Kit (Human)
  • Delivery Days Customer
    7
  • Certification
    Research Use Only
  • Scientific Description
    Notch Pathway Reporter kit is designed for monitoring the activity of the Notch signaling pathway in cultured cells. The kit contains a transfection-ready expression vector for Human NOTCH1 that has a deletion of the entire extracellular domain, leaving the transmembrane and intracellular domains intact (Notch1DE). Inside the cells, the NOTCH1 DE is cleaved by gamma-secretase and active NOTCH1 NICD is released into the nucleus. The kit also contains CSL (CBF1/RBP-Jk) luciferase reporter vector, which is a Notch pathway-responsive reporter. This reporter contains the firefly luciferase gene under the control of multimerized CSL responsive elements upstream of a minimal promoter. The CSL (CBF1/RBP-Jk) reporter is premixed with constitutively expressing Renilla (sea pansy) luciferase vector, which serves as an internal positive control for transfection efficiency. The kit also includes a non-inducible firefly luciferase vector premixed with constitutively-expressing Renilla luciferase vector as a negative control. The non-inducible luciferase vector contains a firefly luciferase gene under the control of a minimal promoter, but without any additional response elements. The negative control is critical for determining pathway specific effects and background luciferase activity. This kit contains the expression vector for Human Notch1DE. We also offer the Mouse Notch1DE expression vector (BPS Bioscience #60509), as well as a Mouse Notch1 NICD expression vector, which is constitutively active without processing by gamma-secretase (BPS Bioscience #79504).
  • Storage Instruction
    -20°C
  • UNSPSC
    41116133

References

  • Lu FM et al. (1996). Proc. Natl. Acad. Sci. USA 93(11): 5663-5667.
  • Kanungo et al (2008). J.Neurochem. 106 2236.