GHSR Knockout HEK293 Cell Line

GHSR Knockout HEK293 Cell Line
Cat.No.:

EDJ-KQ1797

Species:

Human

Cell Name:

HEK293

Gene:

GHSR

Gene ID:

2693

Size:

1×10⁶cells

GHSR Knockout Cell Line (HEK293) is an exclusive upgraded CRISPR/Cas9 system-mediated gene knockout cell, with the advantages of Optimized Strategy Design, Efficient Cell Transfection, High-Performance Cas9 Protein and Hassle-Free Cell Selection.
Cat.No. EDJ-KQ1797
Product Name GHSR Knockout Cell Line (HEK293)
Cell Line HEK293
Cellosaurus ID CVCL_0045
Cell Line Synonyms Hek293, HEK-293, HEK/293, (HEK)293, HEK 293, HEK,293, 293, 293 HEK, 293 Ad5, Graham 293, Graham-293, Human Embryonic Kidney 293
Gene
NCBI Gene ID
Gene Synonyms GHDP|GHS-R1a|GHSR-1a
Summary
This gene encodes a member of the G-protein coupled receptor family. The encoded protein may play a role in energy homeostasis and regulation of body weight. Two identified transcript variants are expressed in several tissues and are evolutionary conserved in fish and swine. One transcript, 1a, excises an intron and encodes the functional protein; this protein is the receptor for the Ghrelin ligand and defines a neuroendocrine pathway for growth hormone release. The second transcript (1b) retains the intron and does not function as a receptor for Ghrelin; however, it may function to attenuate activity of isoform 1a. Mutations in this gene are associated with autosomal idiopathic short stature.[provided by RefSeq, Apr 2010]
Associated Diseases Non-tumor
Morphology Adherent
Passage Ratio 1/5,2days
Complete Culture Medium DMEM + 10% FBS
Freezing Medium 95% Complete culture medium+ 5% DMSO
QC Indels validated by Sanger sequencing; sterility confirmed via microbial testing.
* For research use only. Not intended for use in humans or animals, including clinical, therapeutic, or diagnostic purposes.
LociSTR Info (Sample Cell)
Sample Cell Line: HEK293
STR Info (Cell bank)
Cell Line: HEK293
Allele1Allele2Allele1Allele2
Amelogenin X X
CSF1P0 12 11 12
D2S1338 19 19
D3S1358 15 17 15 17
D5S818 8 8 9
D7S820 11 12 11 12
D8S1179 12 14 12 14
D13S317 12 14 12 14
D16S539 9 13 9 13
D18S51 17 18 17 18
D19S433 15 18 15 18
D21S11 28 30.2 28 30.2
FGA 23 23
Penta D 9 10 9 10
Penta E 7 15 7 15
TH01 7 9.3 7 9.3
TPOX 11 11
vWA 16 19 16 19
D6S1043 11 11
D12S391 19 21 11 15
D2S441 11 15 11 15
* STR authentication data of this cell line matches with that of cell lines sourced from ATCC, DSMZ, JCRB, and RIKEN databases.
Conclusion: The STR identification of this cell is correct.
* Research Use Disclaimer: Content is generated from publicly available research data, bioinformatic resources, and computational analyses for research reference only.

Research Publications

IF=7.5
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie
This study investigated the complex interplay between two gut hormones, glucagon-like peptide-1 (GLP-1) and ghrelin and their role in the development of alcohol-associated liver disease (ALD). Previous studies conducted in our laboratory and others have shown that chronic alcohol exposure leads to increased serum ghrelin and GLP-1 levels. Paradoxically, despite increased GLP-1, insulin resistance and disrupted hepatic lipid metabolism was noted in chronic ethanol fed animals. These results suggested impaired GLP-1-mediated protective function in the presence of high ghrelin. Our recent studies also revealed that growth hormone secretagogue receptor (GHSR, which is the ghrelin receptor) knockout (GHSR-KO) rats fed ethanol were more insulin sensitive and were resistant to develop ALD despite reduced serum GLP-1 compared to ethanol-fed wildtypes. Based on these considerations, we hypothesized that alcohol-induced increases in ghrelin-GHSR interaction impairs GLP-1-mediated functions. We employed both in vivo and in vitro approaches, including chronic ethanol feeding of wild-type and GHSR-KO rats, ghrelin administration to chow-fed rats, GSHR and GLP-1 receptor (GLP-1R)-transfected hepatocytes, murine enteroendocrine GLUTag and HEK293T cells utilizing several techniques to test our hypothesis. Chronic ethanol feeding in wildtype rats increased GLP-1 and GLP-1R levels, while ethanol-fed GHSR-KO rats did not show this increase. Ghrelin promoted GHSR and GLP-1R interaction/dimerization, thereby reducing GLP-1 effects. Furthermore, in-silico molecular docking analysis identified specific amino acid residues in the transmembrane regions of both receptors that are predicted to mediate this interaction. Alcohol-induced increases in ghrelin modulate GLP-1-mediated functions through GHSR-GLP-1R interactions. Targeting this interaction could offer a potential therapeutic strategy for ALD.
This KO model may be useful for: - Investigating GHSR-GLP-1R heterodimerization and its role in impairing GLP-1-mediated insulin sensitivity and hepatic lipid metabolism - Studying the mechanism by which ghrelin signaling promotes alcohol-associated liver disease (ALD) development - Evaluating therapeutic strategies targeting GHSR-GLP-1R interaction to restore GLP-1 protective functions in ALD - Analyzing ghrelin-induced disruption of GLP-1R signaling in hepatocytes and enteroendocrine cells - Validating in-silico predictions of specific transmembrane amino acid residues mediating GHSR-GLP-1R crosstalk

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