K1773

Thermo Scientific™ GeneBLAzer™ NTSR1 CHO-K1 DA Assay Kit

Manufacturer: Thermo Scientific™

Select a Size

Pack Size SKU Availability Price
Each of 1 K1773-Each-of-1 In Stock ₹ 98,736.24

K1773 - Each of 1

₹ 98,736.24

In Stock

Quantity

1

Base Price: ₹ 98,736.24

GST (18%): ₹ 17,772.523

Total Price: ₹ 1,16,508.763

Accession Number

NM_002531

Cell State

Division-Arrested Cells

Detection Method

Fluorescence

Population Status

Pool of Stable Cells

Protein Family

GPCR (G-Protein Coupled Receptors)

Readout

End Point

Target Entry

NTSR1

System Type

GeneBLAzer™

Assay Entry

Cell-based beta lactamase reporter gene

Content And Storage

LiveBLAzer™-FRET B/G Loading Kit, Solution D and other materials are required separately; please refer to the protocol.Includes:• GeneBLAzer™ NTSR1 CHO-K1 DA cells• LiveBLAzer™-FRET B/G Loading Kit, 70 μg• Solution D• GeneBLAzer™ NTSR1 CHO-K1 DA Assay Protocol• LiveBLAzer™-FRET B/G Loading Protocol• Certificate of AnalysisThe GeneBLAzer™ NTSR1 CHO-K1 DA cells are shipped on dry ice and should be stored in liquid nitrogen immediately upon receipt.

Gene Symbol

NTSR1

Product Line

GeneBLAzer™

Quantity

1 Kit

Reporter Gene

BLA (Beta-Lactamase)

Cell Line

U2OS

Druggable Target

GPCR

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Description

  • The GeneBLAzer™ NTSR1 CHO-K1 DA cells contain the human Neurotensin Receptor 1 (NTSR1) stably integrated into the GeneBLAzer™ Gqo5-NFAT-bla CHO-K1 cell line
  • CellSensor™ NFAT-bla CHO-K1 cells (Cat
  • No
  • K1078) contain a beta-lactamase reporter gene under control of the NFAT response element
  • The GeneBLAzer™ NTSR1 CHO-K1 DA cells have been functionally validated for Z' factor and EC50 concentrations of established ligands
  • In addition, GeneBLAzer™ NTSR1 CHO-K1 DA cells have been tested for assay performance under variable conditions
  • These data are found in the Validation & Assay Performance Summary for each product
  • Division Arrested cells are irreversibly division arrested using a low-dose treatment of Mitomycin C, and have no apparent toxicity or change in cellular signal transduction.