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Creative Biolabs

Human CHO-K1/GLP1R/Gα15 Stable Cell Line

[CAT#: NCL20120080CR]

Leukotriene B4 Receptor Stable Cell Line

Species:
Human
Applications:
GPCR Screening
Cell Types:
Other Cells

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Product Overview

Description

The dihydroxy-leukotriene, leukotriene B4 (LTB4) is a member of the G protein-coupled receptor (GPCR) family, in a subfamily of GPCRs that includes receptors for chemokines and other chemotactic factors. Recently, a second, lower affinity receptor for LTB4 (BLT2) has also been cloned, with broader ligand specificity for various eicosanoids. LTB4 stimulates neutrophil chemotaxis and secretion but may also affect immunomodulation, contraction of certain smooth muscles via an indirect mechanism and activation of the nuclear transcription factor PPARα (peroxisome proliferation activated receptor alpha). Chemotaxis, the principal effects of LTB4 and related dihydroxy-acids on leukocytes, occurs via activation of BLT1 receptors.

Cell Types

Other Cells

Applications

GPCR Screening

Research Areas

GPCR

Species

Human
Properties

Size

>1x10^6 Cells

Form

Frozen cells

Culture Medium

Ham's F12, 10% FBS, 400 μg/ml G418, 100 μg/ml Hygromycin B

Freeze Medium

45% culture medium, 45% FBS, 10% DMSO

Receptor

LTB4R

Family

Leukotriene receptor

Strain

LTB4/Gα15 Cell Line

Cell Purity

>95%

Shipping

Dry ice

Storage

Liquid nitrogen immediately upon delivery

Handling Advice

Avoid inhalation. Avoid contact with eyes, skin, and clothing. Avoid prolonged or
repeated exposure.

Research Use Only

For research use only, not for diagnostic or therapeutic use.

Warnings

Store under recommended storage conditions (liquid nitrogen). Do not expose to high temperature. After expiration, discard all remaining reagents.
Target Details

Target

LTB4R

Official Name

LTB4R

Alternative Names

BLT1 receptor; leukotriene B4 receptor; LTB4; P2RY7; GPR16; CMKRL1; BLTR; P2Y7; LTB4R1; BLT-1; BLT1; LTB4-R 1; LTB4-R1; leukotriene B4 receptor; leukotriene B4 receptor 1; mBLTR; Ltb4r1

Gene ID

1241(Human)

Uniprot ID

Q15722(Human)
References

1. Montagna, E., Crux, S., Luckner, M., Herber, J., Colombo, A. V., Marinković, P.,.. & Sgobio, C. (2019). In vivo Ca2+ imaging of astrocytic microdomains reveals a critical role of the amyloid precursor protein for mitochondria. Glia, 67(5), 985-998. 2. Xu, Y., Wu, X., Wang, S., Yang, C., Li, Y., & Cao, Y. (2019). Hydroxyapatite Nanoparticle-Crosslinked Peptide Hydrogels for Three-Dimensional Culture and Differentiation of MC3T3-E1 Osteoblasts. Journal of biomedical nanotechnology, 15(12), 2351-2362. 3. Lan, J., Rollins, J. A., Zang, X., Wu, D., Zou, L., Wang, Z.,.. & Chen, D. (2019). Translational regulation of non-autonomous mitochondrial stress response promotes longevity. Cell reports, 28(4), 1050-1062.
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