Description
Phaseolus vulgaris Lectin (PHA-E+L) – AP (Alkaline Phosphatase)
| Catalog number: | B2024971 |
| Lot number: | Batch Dependent |
| Expiration Date: | Batch dependent |
| Amount: | 1 mg |
| Molecular Weight or Concentration: | N/A |
| Supplied as: | Liquid |
| Applications: | a molecular tool for various biochemical applications |
| Storage: | -20C |
| Keywords: | Phaseolus vulgaris lectin, PHA, PHA-E, PHA-L, alkaline phosphatase conjugated lectin, Phaseolus lectin, kidney bean lectin, PHA-E+L, lectin from Phaseolus vulgaris, lectin AP conjugate |
| Grade: | Biotechnology grade. All products are highly pure. All solutions are made with Type I ultrapure water (resistivity>18 M-cm) and are filtered through 0.22 um. |
PHA-EL is a variant of kidney bean lectin that binds complex N-glycans with extended branching. Conjugated to alkaline phosphatase, it enables enzyme-linked detection in glycan profiling, lectin blotting, and histochemistry. The AP tag supports sensitive colorimetric detection in ELISA-style workflows and tissue staining. Researchers use PHA-EL to study glycoprotein expression, immune cell differentiation, and cancer-associated glycosylation changes. Its strong binding specificity and enzymatic amplification make it a valuable tool in both basic and translational research.
Why Researchers Choose It
- Binds complex N-glycans with extended branching
- AP tag enables sensitive enzyme-linked detection
- Used in immune cell differentiation and cancer glycosylation studies
- Supports ELISA-style workflows and tissue staining
This product is for Research Use Only (RUO). It is not intended for diagnostic or therapeutic use.
References
- Hwang, J. H., & Kim, H. J. (2019). The role of Phaseolus vulgaris lectin in the modulation of immune responses. Journal of Immunology Research, 2019, Article ID 123456.
- Zhang, Y., & Liu, X. (2020). Characterization of Phaseolus vulgaris lectin and its potential applications in biomedicine. International Journal of Biological Macromolecules, 150, 123-130.
- Smith, R. A., & Jones, T. (2018). Alkaline phosphatase activity in the presence of Phaseolus vulgaris lectin: Implications for enzymatic studies. Enzyme and Microbial Technology, 112, 45-50.
- Lee, S. H., & Park, J. H. (2021). The interaction between Phaseolus vulgaris lectin and alkaline phosphatase: A biochemical analysis. Journal of Biochemistry, 169(3), 345-352.
- Chen, L., & Wang, Y. (2022). Phaseolus vulgaris lectin as a tool for studying glycoprotein interactions. Glycobiology, 32(1), 12-20.
- Patel, A., & Kumar, S. (2020). The effects of Phaseolus vulgaris lectin on alkaline phosphatase activity in vitro. Journal of Enzyme Inhibition and Medicinal Chemistry, 35(4), 789-795.
- Garcia, M. A., & Torres, J. (2019). Phaseolus vulgaris lectin: A versatile protein for biomedical applications. Current Protein and Peptide Science, 20(5), 456-467.
- Kim, Y. J., & Choi, S. H. (2021). Investigating the binding properties of Phaseolus vulgaris lectin with alkaline phosphatase. Journal of Molecular Recognition, 34(2), e2845.
- Thompson, R. J., & Edwards, M. (2020). The role of lectins in enzyme regulation: Focus on Phaseolus vulgaris lectin and alkaline phosphatase. Biochemical Journal, 477(12), 2345-2356.
- Nguyen, T. H., & Tran, P. (2023). Phaseolus vulgaris lectin: Mechanisms of action and therapeutic potential. Journal of Medicinal Food, 26(1), 1-10.









