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Cat. No. ARG0669

CHST15 Knockout PANC-1 Cell Line

  • Product Type:

    Genome-edited Cells

  • Tissue Source:

    Pancreas

  • Disease:

    Epithelioid carcinoma

  • Gene Species:

    Homo sapiens (Human)

The CHST15 Knockout PANC-1 Cell Line is a CRISPR/Cas9-edited human pancreatic ductal adenocarcinoma cell line with targeted disruption of the CHST15 gene. Loss of CHST15 eliminates the synthesis of the CS-E chondroitin sulfate motif, which normally enhances binding of heparin-binding growth factors such as Wnt3a and pleiotrophin and promotes integrin ??v??3?CFAK signaling. This knockout model enables investigation of glycosaminoglycan sulfation in cancer, tumor microenvironment interactions, and pancreatic cancer progression. It is suitable for migration assays, CS-E detection, and downstream signaling analysis via western blotting and RNA-seq.

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Shipping Info:

Cryopreserved in vials and shipped on dry ice


Disclaimer:

For Research Use Only

  • Characteristics

    Host Cell

    PANC-1

    Morphology

    Epithelial-like

    Age

    56 years

    Sex of Donor

    Male

    Gene Name

    CHST15

    Gene Species

    Homo sapiens (Human)

    Gene Identifier

    NCBI Gene ID 51363

  • Culture Conditions

    Temperature

    37°C

    Atmosphere

    5% CO₂

  • Quality Control

    Sterility testing

    Daily monitoring confirms that the cells are free from bacterial, yeast, and fungal contamination.

    Mycoplasma testing

    Negative for mycoplasma through PCR analysis

    Pathogens

    Cells tested negative for HIV-1, HBV, and HCV.

  • Disclaimer

    Intended Use

    This product is intended for laboratory in vitro use only. lt 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 CHST15 Knockout PANC-1 Cell Line is a CRISPR/Cas9-edited knockout cell line with targeted disruption of CHST15, eliminating carbohydrate sulfotransferase 15 activity. This stable loss-of-function model enables precise investigation of chondroitin sulfate sulfation in pancreatic cancer without the limitations of transient gene silencing. By ablating the enzyme that generates the CS-E disaccharide motif, the line facilitates dissection of glycosaminoglycan-dependent signaling networks.

PANC-1 is a well-established human pancreatic ductal adenocarcinoma cell line derived from a primary tumor. It displays epithelial morphology and harbors oncogenic KRAS and TP53 mutations, making it a highly aggressive model for studying pancreatic cancer cell-autonomous processes such as invasion, chemoresistance, and stromal interactions.

CHST15 catalyzes 6-O-sulfation of N-acetylgalactosamine 4-sulfate in chondroitin sulfate to form CS-E, which avidly binds heparin-binding growth factors such as pleiotrophin, midkine, and Wnt3a. CS-E also promotes integrin ??v??3-mediated adhesion and focal adhesion kinase (FAK) phosphorylation. In PANC-1 cells, CHST15 is transcriptionally regulated by TGF-?? and the transcription factors TWIST1, SNAI1, and ??-catenin, integrating it into epithelial-mesenchymal transition and motility programs. Knockout-mediated depletion of CS-E attenuates growth factor binding, reduces integrin and FAK activation, and suppresses ??-catenin-driven transcription, thereby blunting downstream signaling cascades.

This knockout model is particularly valuable for dissecting the tumor-intrinsic roles of CS-E-modified proteoglycans such as versican and CD44 in pancreatic cancer. By eliminating CHST15, the line allows researchers to separate glycocalyx contributions from stromal influences and to examine how sulfation patterns modulate Wnt and TGF-?? pathways, which are frequently dysregulated in pancreatic ductal adenocarcinoma. Consequently, it serves as a robust platform for target validation and for screening modulators of glycosaminoglycan biosynthesis.

The cell line supports a variety of functional assays, including transwell migration and wound healing to quantify motility, CS-E ELISA and immunofluorescence for chondroitin sulfate to confirm sulfation loss, western blotting for phospho-FAK and ??-catenin to monitor signaling, and RNA-seq to profile transcriptomic responses. Additional applications include co-culture systems to study tumor-stroma crosstalk and in vivo metastasis models. For further technical details or experimental consultation, please contact Ascent Research.

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