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GDF1 Knockout Hep 3B2.1-7 Cell Line

Cat. No. ARG43876
Product Type:

In Stock Cell Lines

Species:

Homo sapiens (Human)

Tissue Source:

Liver

Growth Properties:

Adherent

In stock
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Short Description

The GDF1 Knockout Hep 3B2.1-7 Cell Line is a CRISPR/Cas9-edited human hepatocellular carcinoma knockout line featuring disruption of GDF1, a TGF-beta superfamily ligand that heterodimerizes with Nodal to activate SMAD2/3 signaling. The parental Hep 3B2.1-7 line harbors an integrated hepatitis B virus genome and constitutively expresses HBsAg and AFP, providing a well-established model for liver cancer and HBV research. This GDF1 knockout line enables functional studies of left-right asymmetry and TGF-beta signaling in a hepatic context. Key downstream targets include PITX2 and LEFTY1, and pathway activity can be monitored by phospho-SMAD2/3 detection. Typical applications encompass developmental biology research, congenital heart disease modeling, and hepatocarcinogenesis investigations.

Product Details
Cell Engineering
Immortalization
Culture Conditions
Quality Control
Disclaimer

Product Details

Species:
Homo sapiens (Human)
Tissue Source:
Liver
Disease:
Hepatocellular carcinoma
Morphology:
Epithelial-like
Growth Properties:
Adherent
Donor Age:
8 years
Donor Sex:
Male

Cell Engineering Information

Gene Name:
Gdf1
Gene Identifier:
NCBI Gene ID 2657

Immortalization Information

Culture Conditions

Temperature:
37°C
Atmosphere:
5% CO₂

Quality Control

Sterility testing:
The bacterial, yeast, and fungi are not detected in these cells by daily monitor.

Disclaimer

Intended Use:
This product is intended for laboratory in vitro use only. It is not intended for diagnostic, therapeutic, or clinical applications.
Disclaimer:
Ascent Research endeavors to provide accurate and up-to-date product information. However, no warranties or representations are made regarding its completeness or reliability.
Usage:
By accepting this product, the customer acknowledges and agrees to assume all risks associated with its receipt, handling, storage, disposal, and use. This product is provided "AS IS".

Description

The GDF1 Knockout Hep 3B2.1-7 Cell Line is a CRISPR/Cas9-edited knockout cell line derived from the Hep 3B2.1-7 human hepatocellular carcinoma line. It features targeted disruption of GDF1, which encodes a TGF-beta superfamily ligand essential for embryonic left-right axis determination and heart development. Offered as a ready-to-use cell line, it circumvents the need for de novo gene editing and allows researchers to immediately interrogate GDF1 function in signal transduction and developmental biology.

The host Hep 3B2.1-7 cells are a subclone of Hep 3B, established from a liver tumor of an 8-year-old Black male. This line carries an integrated hepatitis B virus genome and expresses HBV surface antigen and alpha-fetoprotein, making it a standard model for hepatotoxicity, HBV pathogenesis, and liver cancer studies. Its robust in vitro growth and retention of hepatic features support diverse applications from toxicology to oncogenic signaling.

GDF1 heterodimerizes with Nodal to activate activin type I and II receptors (ACVR1B, ACVR2A/B), inducing phosphorylation of SMAD2 and SMAD3. Phosphorylated SMAD2/3 complexes with SMAD4 and translocate to the nucleus to regulate transcription of key targets including PITX2, LEFTY1/2, and CER1. This cascade is modulated by upstream regulators FOXH1 and TDGF1 (Cripto-1) and antagonized by Lefty and Cerberus. Through these interactions, GDF1 directs visceral organ asymmetry and cardiac morphogenesis.

In the hepatocellular carcinoma background of Hep 3B2.1-7, GDF1 knockout provides a unique tool to study TGF-beta superfamily signaling in liver cancer. Disrupting GDF1 may impact SMAD-mediated transcriptional programs, influencing tumor cell proliferation, migration, and response to growth factors. Moreover, with its HBV integration, this model facilitates exploration of GDF1??s role in virus?Chost interactions. It also serves as a relevant in vitro system for congenital heart disease and heterotaxy research, bridging developmental biology and cancer contexts.

This cell line is well-suited for functional assays such as western blotting for phospho-SMAD2/3, RT-qPCR measurement of PITX2 and LEFTY1 expression, and immunofluorescence tracking of SMAD2/3 localization. Reporter assays with SMAD-responsive elements can quantify pathway activity, while flow cytometry assesses activin receptor levels. Migration and invasion assays enable phenotypic characterization. Researchers can apply this model for pooled screening and co-culture experiments. For further information, contact Ascent Research.