BT Lab
SKU:BT-AP05447
MKP-7 Polyclonal Antibody
MKP-7 Polyclonal Antibody
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DUSP16 (dual specificity phosphatase 16) encodes a mitogen-activated protein kinase phosphatase that is a member of the dual specificity protein phosphatase subfamily. These phosphatases inactivate their target kinases by dephosphorylating both the phosphoserine/threonine and phosphotyrosine residues. The encoded protein specifically regulates the c-Jun amino-terminal kinase (JNK) and extracellular signal-regulated kinase (ERK) pathways.
The MKP-7 Polyclonal Antibody is a highly specific and sensitive tool for the detection and analysis of MKP-7 protein expression in various biological samples. This antibody has been meticulously developed and rigorously validated to ensure optimal performance and reliability.
The MKP-7 Polyclonal Antibody is produced using state-of-the-art techniques, resulting in a high affinity and specificity towards the target protein. It has been extensively tested in a variety of applications, including Western blotting, immunohistochemistry, and immunofluorescence, demonstrating consistent and robust results.
This antibody exhibits exceptional sensitivity, allowing for the detection of low levels of MKP-7 protein expression. Its superior specificity ensures minimal cross-reactivity with other proteins, enabling accurate and reliable analysis.
The MKP-7 Polyclonal Antibody is supplied as a ready-to-use solution, eliminating the need for time-consuming and complex preparation steps. Its user-friendly format allows for easy integration into existing laboratory protocols, saving valuable time and resources.
With its exceptional performance and reliability, the MKP-7 Polyclonal Antibody is an indispensable tool for researchers and scientists studying the role of MKP-7 protein in various biological processes. Its high sensitivity and specificity make it an ideal choice for both basic research and clinical applications.
Choose the MKP-7 Polyclonal Antibody for accurate and reliable detection and analysis of MKP-7 protein expression, and unlock new insights into the intricate mechanisms of cellular signaling pathways.
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