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Cat. No. ARG44143

STON2 Knockout 6-10B Cell Line

  • Product Type:

    In Stock Cell Lines

The STON2 Knockout 6-10B Cell Line is a CRISPR/Cas9-edited gastric adenocarcinoma cell model with targeted disruption of the STON2 gene, resulting in loss of stonin-2 protein. STON2 functions as an endocytic adaptor interacting with AP-2 complex components, clathrin, and epsin to regulate internalization of receptors such as EGFR, thereby modulating downstream MAPK/ERK and PI3K/AKT signaling. This model, based on the metastatic 6-10B cell line, enables investigation of endocytosis-dependent mechanisms in gastric cancer. Researchers can utilize this knockout line to study receptor trafficking dynamics, signal transduction changes, and therapeutic responses using quantitative flow cytometry, endocytosis kinetics, and functional assays. It serves as a valuable tool for elucidating STON2 roles in cancer cell proliferation, invasion, and drug resistance, supporting the advancement of endocytosis-targeted interventions.

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Cryopreserved in vials and shipped on dry ice


Disclaimer:

For Research Use Only

  • Characteristics

    Host Cell

    6-10B

    Gene Name

    STON2

    Gene Identifier

    NCBI Gene ID 85439

    Storage

    Liquid nitrogen (LN2)

  • Culture Conditions

    Temperature

    37°C

    Atmosphere

    5% COâ‚‚

  • Quality Control

    Sterility testing

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

    Mycoplasma testing

    Negative for mycoplasma through PCR analysis

  • 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. References to scientific literature and patents are for informational purposes only, and the customer assumes sole responsibility for verifying their accuracy.

    By accepting this product, the customer acknowledges and agrees to assume all risks associated with its receipt, handling, storage, disposal, and use, including compliance with all applicable safety and environmental regulations and precautions. Relevant laws, regulations, and ethical guidelines must be followed in conducting any research, modifications, or derivatives derived from this product.

    This product is provided "AS IS", and except as expressly stated herein, Ascent Research disclaims all other warranties, express or implied. Under no circumstances shall Ascent Research, its affiliates, or representatives be liable for indirect, incidental, consequential, or punitive damages arising from the use of this material. While Ascent Research employs rigorous quality control measures, we shall not be held responsible for damages resulting from misidentification or misinterpretation of the provided materials.

Description

The STON2 Knockout 6-10B Cell Line is a CRISPR/Cas9-edited knockout cell line originating from the human 6-10B gastric adenocarcinoma cell line, with targeted disruption of the STON2 gene. This gene-edited product eliminates functional stonin-2 protein, creating a loss-of-function model for investigating endocytic adaptor proteins in cancer cell biology. The knockout is achieved through CRISPR/Cas9-mediated gene disruption, providing a stable and specific experimental system to study STON2-dependent processes without the variability of transient approaches.

The 6-10B host cell line was established from a metastatic lymph node of a gastric adenocarcinoma patient and serves as a widely recognized model for gastric cancer metastasis research. It retains aggressive properties including invasive and migratory capacity, making it particularly suitable for dissecting the molecular underpinnings of cancer dissemination. This cell line has been extensively employed in studies of epithelial-mesenchymal transition, chemoresistance, and receptor tyrosine kinase signaling, offering a clinically relevant background for functional knockout studies.

STON2 encodes an endocytic adaptor protein that bridges cargo molecules to the AP-2 complex (AP2M1, AP2B1) for clathrin-mediated endocytosis. It directly interacts with clathrin, synaptotagmin (SYT1), epsin (EPS15), and intersectin (ITSN1), orchestrating the internalization of receptors such as EGFR. STON2 disruption impairs receptor endocytosis, leading to enhanced surface receptor retention and sustained activation of downstream pathways including MAPK/ERK and PI3K/AKT. The mechanistic network also involves RAB5A and dynamin-2 (DNM2), which regulate early endosome formation. Consequently, STON2 ablation perturbs receptor trafficking homeostasis, with potential consequences for cell proliferation, survival, and invasive signaling.

In gastric adenocarcinoma, dysregulation of endocytic trafficking is increasingly recognized as a driver of oncogenic signaling and therapeutic resistance. The STON2 Knockout 6-10B Cell Line allows systematic evaluation of how loss of an endocytic adaptor reshapes the cell surface receptor proteome and intracellular kinase networks in a metastatic context. This model is particularly useful for examining STON2-dependent regulation of EGFR stability and signaling output, and for probing how endocytic deficiency may promote compensatory mechanisms that enhance metastatic behavior. Such studies can pinpoint molecular vulnerabilities for therapeutic intervention.

This knockout cell line supports diverse assays including quantitative flow cytometry for surface receptor measurement, immunofluorescence microscopy for receptor localization, and fluorescent ligand uptake assays to monitor endocytosis kinetics. It is also suitable for drug sensitivity profiling with targeted agents, proliferation, migration, and invasion assays, as well as global transcriptomic analysis via RNA-seq. The model serves as a vital tool for advancing research in cancer cell biology, receptor trafficking, and the development of endocytosis-directed therapies. For additional information, please contact Ascent Research.

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