BT Lab
SKU:BT-AP15523
FAK(Phospho Tyr577) Polyclonal Antibody
FAK(Phospho Tyr577) Polyclonal Antibody
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This gene encodes a cytoplasmic protein tyrosine kinase which is found concentrated in the focal adhesions that form between cells growing in the presence of extracellular matrix constituents. The encoded protein is a member of the FAK subfamily of protein tyrosine kinases but lacks significant sequence similarity to kinases from other subfamilies. Activation of this gene may be an important early step in cell growth and intracellular signal transduction pathways triggered in response to certain neural peptides or to cell interactions with the extracellular matrix. Several transcript variants encoding different isoforms have been found for this gene, but the full-length natures of only four of them have been determined.
The FAK (Phospho Tyr577) Polyclonal Antibody is a highly specific and sensitive tool designed for the detection and analysis of focal adhesion kinase (FAK) phosphorylated at tyrosine 577. This antibody is produced using advanced polyclonal antibody technology, ensuring high affinity and specificity towards the target protein.
FAK is a crucial protein involved in various cellular processes, including cell adhesion, migration, and proliferation. Phosphorylation of FAK at tyrosine 577 plays a significant role in regulating its activity and downstream signaling pathways. Therefore, the FAK (Phospho Tyr577) Polyclonal Antibody serves as an invaluable tool for researchers studying FAK signaling and its implications in cellular functions.
This antibody has been rigorously validated for its performance in various applications, including Western blotting, immunoprecipitation, and immunofluorescence. It exhibits exceptional sensitivity and specificity, enabling accurate and reliable detection of phosphorylated FAK at tyrosine 577 in diverse sample types.
The FAK (Phospho Tyr577) Polyclonal Antibody is supplied in a convenient and ready-to-use format, ensuring ease of use and saving valuable time in the laboratory. It is provided in a liquid form, allowing for easy handling and minimizing the risk of sample contamination.
With its exceptional performance and reliability, the FAK (Phospho Tyr577) Polyclonal Antibody is an indispensable tool for researchers investigating FAK signaling pathways and its involvement in various cellular processes.
The FAK (Phospho Tyr577) Polyclonal Antibody is a highly specific and sensitive tool designed for the detection and analysis of focal adhesion kinase (FAK) phosphorylated at tyrosine 577. This antibody is produced using advanced polyclonal antibody technology, ensuring high affinity and specificity for the target antigen.
FAK is a crucial protein involved in various cellular processes, including cell adhesion, migration, and survival. Phosphorylation of FAK at tyrosine 577 is known to play a critical role in the regulation of FAK activity and downstream signaling pathways. Therefore, the FAK (Phospho Tyr577) Polyclonal Antibody serves as an invaluable tool for researchers studying FAK signaling and its implications in cellular functions.
This antibody has been rigorously validated for its performance in various applications, including Western blotting, immunoprecipitation, and immunofluorescence. It exhibits exceptional sensitivity and specificity, enabling accurate and reliable detection of phosphorylated FAK at tyrosine 577 in complex biological samples.
The FAK (Phospho Tyr577) Polyclonal Antibody is supplied as a liquid formulation, ready for immediate use. It is provided in a convenient size, ensuring cost-effectiveness and minimizing waste. The antibody is manufactured under strict quality control standards, guaranteeing consistent and reproducible results.
In summary, the FAK (Phospho Tyr577) Polyclonal Antibody is a highly reliable and efficient tool for the detection and analysis of phosphorylated FAK at tyrosine 577. Its exceptional sensitivity, specificity, and versatility make it an essential component in any research focused on understanding FAK signaling and its role in cellular processes.
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