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Brand: ProteoGenix

Human CD10/MME 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 CD10/MME HEK293T Stable Cell Line

Human CD10/MME HEK293T Stable Cell Line

Product name Human CD10/MME HEK293T Stable Cell Line
Uniprot ID P08473
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 CD10/MME cells
Reference PX-SCL0076
Note For research use only
Target CD10/MME
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

Introduction

The Human CD10/MME HEK293T Stable Cell Line is a valuable tool for researchers studying the structure, activity, and therapeutic applications of the CD10/MME protein. This stable cell line is a genetically modified version of the HEK293T cell line, which is commonly used in research due to its ability to express high levels of recombinant proteins. The addition of the CD10/MME gene to the HEK293T cell line allows for the production of large quantities of the CD10/MME protein, making it an ideal model for studying its function and potential therapeutic uses.

Structure of CD10/MME Protein

The CD10/MME protein, also known as membrane metallo-endopeptidase, is a type II transmembrane glycoprotein that is expressed on the surface of various cell types, including leukocytes and epithelial cells. It is composed of 1006 amino acids and has a molecular weight of approximately 100 kDa. The protein contains a zinc-binding catalytic domain, a transmembrane domain, and a cytoplasmic tail. The catalytic domain is responsible for the enzymatic activity of CD10/MME, which includes the cleavage of various peptide hormones and neuropeptides.

Activity of CD10/MME Protein

The main function of CD10/MME is the degradation of bioactive peptides, such as enkephalins, substance P, and bradykinin. This activity plays a crucial role in regulating the levels and activity of these peptides, which are involved in various physiological processes, including pain perception, inflammation, and immune response. CD10/MME has also been shown to have a role in cell adhesion and migration, as well as in the processing of cell surface proteins, such as MHC class I molecules.

Application of Human CD10/MME HEK293T Stable Cell Line

The stable expression of CD10/MME in the HEK293T cell line allows for the production of large quantities of the protein, making it a valuable tool for various research applications. One of the main uses of this cell line is in the study of CD10/MME’s enzymatic activity. The stable cell line can be used to produce purified CD10/MME protein, which can then be used in enzymatic assays to determine its substrate specificity and kinetic parameters.
Another important application of the Human CD10/MME HEK293T Stable Cell Line is in the development of therapeutic agents targeting CD10/MME. Due to its involvement in various physiological processes, CD10/MME has been identified as a potential therapeutic target for conditions such as chronic pain, inflammation, and cancer. The stable cell line can be used to screen potential drug candidates and assess their ability to inhibit CD10/MME activity.

Flow Cytometry Analysis

The Human CD10/MME HEK293T Stable Cell Line can also be used in flow cytometry analysis to study the expression and localization of CD10/MME on the cell surface. This technique involves labeling the cells with fluorescently tagged antibodies specific for CD10/MME and then analyzing them using a flow cytometer. This allows for the quantification of CD10/MME expression levels and the identification of cell populations expressing high or low levels of the protein.

Conclusion

The Human CD10/MME HEK293T Stable Cell Line is a valuable tool for researchers studying the structure, activity, and therapeutic applications of the CD10/MME protein. Its stable expression of CD10/MME allows for the production of large quantities of the protein, making it an ideal model for studying its function and potential therapeutic uses. The use of this cell line in flow cytometry analysis also provides a means to study the expression and localization of CD10/MME on the cell surface.

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