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Brand: ProteoGenix

Human CLDN6 HEK293T Stable Cell Line

Note:
For research use only

2,983.00

1 vial of 2×10^6 cells + 2983 loyalty points
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Human CLDN6 HEK293T Stable Cell Line

Human CLDN6 HEK293T Stable Cell Line

Product name Human CLDN6 HEK293T Stable Cell Line
Uniprot ID P56747
Expression system Eukaryotic expression
Buffer Freeze Medium: FBS:DMSO=9:1; Culture Medium: DMEM,10S,1%P/S
Delivery condition Dry Ice
Delivery lead time in business days 5-10 business days
Storage condition Liquid Nitrogen
Brand ProteoGenix
Host species HEK293T
Applications FC
Aliases /Synonyms CLDN6 cells
Reference PX-SCL0069
Note For research use only
Target CLDN6
Format Growth Properties: Adherent; Selection Marker: Puromycin (1 μg/mL)
Kit Content 1 vial contains at least 2×10^6 cells in 1 mL Freeze Medium

The Structure of Human CLDN6 HEK293T Stable Cell Line

Human CLDN6 HEK293T Stable Cell Line is a type of cell line that has been stably transfected with the human CLDN6 gene. This gene encodes for the claudin-6 protein, which is a member of the claudin family of tight junction proteins. The claudin-6 protein is made up of 223 amino acids and has a predicted molecular weight of 24 kDa.

The claudin family of proteins are integral membrane proteins that play a crucial role in the formation and maintenance of tight junctions, which are specialized structures that regulate the movement of molecules between cells. These tight junctions are essential for maintaining the integrity and barrier function of epithelial and endothelial tissues.

The Activity of Human CLDN6 HEK293T Stable Cell Line

The activity of Human CLDN6 HEK293T Stable Cell Line is primarily driven by the expression of the claudin-6 protein. This protein is predominantly found in the epithelial cells of various tissues, including the lung, kidney, and gastrointestinal tract. It is involved in the formation of tight junctions between adjacent cells, which helps to control the movement of ions, solutes, and water across the epithelial barrier.

In addition to its role in tight junction formation, claudin-6 has also been implicated in various cellular processes, such as cell proliferation, differentiation, and apoptosis. It has been shown to interact with other proteins, including occludin and ZO-1, to regulate the function of tight junctions and maintain the integrity of the epithelial barrier.

The Application of Human CLDN6 HEK293T Stable Cell Line

The Human CLDN6 HEK293T Stable Cell Line has several potential applications in scientific research, particularly in the field of epithelial biology and cancer research. One of the primary uses of this cell line is in the study of tight junctions and their role in maintaining the integrity of epithelial barriers.

The overexpression or knockdown of claudin-6 in Human CLDN6 HEK293T Stable Cell Line can be used to investigate the function of this protein in tight junction formation and epithelial barrier function. This can provide valuable insights into the mechanisms underlying various diseases, such as inflammatory bowel disease and cancer, which are associated with disruptions in tight junctions.

Furthermore, Human CLDN6 HEK293T Stable Cell Line can also serve as a valuable tool for drug discovery and development. The claudin-6 protein has been identified as a potential therapeutic target for various cancers, including ovarian, breast, and lung cancers. The stable expression of claudin-6 in this cell line can be used to screen for potential drugs or compounds that can modulate its activity and potentially treat these cancers.

Flow Cytometry Analysis of Human CLDN6 HEK293T Stable Cell Line

Flow cytometry is a powerful technique that is commonly used to analyze the expression of cell surface proteins. Human CLDN6 HEK293T Stable Cell Line can be analyzed using flow cytometry to determine the level of claudin-6 expression on the cell surface. This can provide valuable information about the stability and functionality of the cell line.

In addition, flow cytometry can also be used to assess the impact of potential drugs or compounds on the expression of claudin-6 in Human CLDN6 HEK293T Stable Cell Line. This can help to identify potential therapeutic agents that can modulate the activity of this protein and potentially treat diseases associated with its dysregulation.

In Conclusion

In summary, Human CLDN6 HEK293T Stable Cell Line is a valuable tool for studying the structure, activity, and application of the claudin-6 protein in various biological processes. Its stable expression of claudin-6 makes it a reliable model for investigating the function of this protein in tight junction formation, epithelial barrier function, and cancer research.

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