CHO-K1 Human CTR&RAMP2 CRE-Luc Cell Line

CHO-K1 Human CTR&RAMP2 CRE-Luc Cell Line

Cat. No: RQP71545

Size: 1 vial of frozen cells (>1E6 per vial in 1 mL)

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Product Info
Description
Biological Information
Assay Data
Cell Culture
Cat. No RQP71545
Product Name CHO-K1 Human CTR&RAMP2 CRE-Luc Cell Line
Product Type Receptor Cell Lines
Product Description CHO-K1 Human CTR&RAMP2 CRE-Luc Cell Line is a clonally stable cell line constructed using lentiviral technology,constitutively expressing the Human CTR and RAMP2 gene.
Culture Properties Adherent
Stability 32passages (in-house test, that not means the cell line will be instable beyond the passages we tested.)
Mycoplasma Status Negative
Culture Medium F12K+10%FBS+5 μg/ml Puromycin+5 μg/ml Blasticidin+600 μg/ml Hygromycin B
Freeze Medium 90% FBS+10% DMSO
Storage Conditions Liquid nitrogen immediately upon delivery
Transducer Gs
Application Functional assay for CTR

 

 

For research use only. Not intended for human or animal clinical trials, therapeutic or diagnostic use.

 

The Calcitonin Gene-Related Peptide (CGRP) family comprises CGRP itself, calcitonin (CT), adrenomedullin (AM), and islet amyloid polypeptide (AMY). Three types of amylin receptors have been identified: AMY1, AMY2, and AMY3.

Amylin receptors belong to the Class B family of GPCRs; they exist as heterodimeric complexes formed by the association of a calcitonin receptor (CTR) with a Receptor Activity-Modifying Protein (RAMP). The CTR component of this receptor possesses the canonical GPCR structure: seven interconnected transmembrane α-helices that transduce extracellular signals into intracellular cytoplasmic signaling cascades. There are three types of RAMPs (RAMP1, RAMP2, and RAMP3), which share 31% amino acid sequence identity and possess similar basic structures. RAMPs are critical accessory proteins responsible for trafficking the CTR to the cell membrane and modulating its ligand specificity; they can alter the pharmacology, function, and cellular trafficking of specific GPCRs.

In mammalian cells, activation of amylin receptors has been shown to elevate cAMP levels and is believed to be associated with the stimulation of Gs proteins and adenylyl cyclase. In the presence of RAMPs, the binding affinity of the receptor for amylin can be modulated. The heterodimeric structures formed by CTR in association with either RAMP1 or RAMP3 are thought to facilitate amylin binding and mediate physiological functions within the brain. Activation of AMY3 stimulates the G protein Gαs, which in turn regulates adenylyl cyclase (AC), subsequently leading to an increase in intracellular cAMP. The binding of cAMP to the regulatory subunits (R2) of Protein Kinase A (PKA) induces the dissociation of the tetrameric PKA holoenzyme, resulting in the activation of the catalytic subunits of PKA. PKA, activated by cAMP, participates in regulating the activity of ERK1/2. Activation of the ERK1/2 pathway may lead to an uneven distribution of Ca²⁺, triggering dysfunction of the endoplasmic reticulum and mitochondria, and ultimately resulting in cell death. Furthermore, cAMP-mediated stimulation of AKT leads to the subsequent expression of the transcription factor c-Fos.



The CHO-K1 Human CTR&RAMP2 CRE-Luc Cell Line model effectively simulates the in vivo CTR&RAMP2  signal transduction process, the principle is illustrated in the figure below.



Figure 1. Schematic diagram of the CHO-K1 Human CTR&RAMP2 CRE-Luc Cell Line model

Target Class GPCR
Sub Family Class B1(Secretin)
Family-1 Calcitonin
Gene Name-1 CTR
Gene Aliases-1 CT-R;CALCR
Gene ID-1 799
Accession Number-1 NM_001742.4
UniProt Number-1 P30988
Protein Name-1 Calcitonin receptor
Protein Aliases-1 CT-R
Family -2 Receptor (G protein-coupled) activity modifying proteins
Gene Name-2 RAMP2
Gene Aliases-2 N/A
Gene ID-2 10266
Accession Number-2 NM_005854.3
UniProt Number-2 O60895
Protein Name-2 Receptor activity-modifying protein 2
Protein Aliases-2 Calcitonin-receptor-like receptor activity-modifying protein 2 (CRLR activity-modifying protein 2)
Target Species Human
Host cell CHO-K1

Figure 2. Recombinant CTR&RAMP2 CRE-Luc CHO-K1 constitutively expressing CTR&RAMP2.

Figure 3.Dose Reponse of CTR/RAMP2 Agonists in CTR&RAMP2 CRE-Luc CHO-K1(C53).

Figure 4. HTFR CAMP Assay with CTR&RAMP2 CRE-Luc CHO-K1(C53).

 

Cell Resuscitation
1)Rapidly thaw the frozen cells in a 37 °C water bath for approximately 60 seconds. Once thawed (which may take slightly less or more than 60 seconds), immediately transfer the cell suspension from the cryovial into a 15 mL centrifuge tube containing 10 mL of pre-warmed CHO-K1 Human CTR&RAMP2 CRE-Luc Cell Line complete culture medium.
2)Centrifuge cells at 1000 rpm for 5 min to remove medium, then resuspend cells in 5 mL of pre-warmed complete medium.
3)Transfer the cell suspension into a T25 culture flask and incubate at 37 °C with 5% CO₂.
4)After approximately 24–36 hours, replace the medium or passage the cells to remove non-adherent dead cells.


Subculturing procedure
1)When the cell density reaches the appropriate confluency for passaging, wash the cells with PBS, then add 1 mL trypsin to detach the cells. When more than 80% of the cells detach upon gently tapping the culture flask, add complete culture medium to terminate digestion. Gently pipette to obtain a single-cell suspension, transfer to a 15 mL centrifuge tube, and centrifuge at 1000 rpm for 5 minutes.

2)Discard supernatant after centrifugation. Resuspend cells in fresh medium to a single-cell suspension and transfer to a new culture flask for continued growth.


Cell Freezing
After trypsinization and centrifugation of cells from each T75 flask or 10 cm culture dish, discard the supernatant. Add 2 mL of cryopreservation medium (90% FBS + 10% DMSO), gently resuspend thoroughly, and aliquot into two cryovials. Immediately place the cryovials into a controlled-rate freezing container (e.g., Nalgene 5100-0001), fill with isopropanol to the indicated level, and store at −80 °C. After 24 hours, transfer the cryovials to liquid nitrogen for long-term storage.

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