BT Lab
SKU(재고 관리 코드):BT-AP02499
DAPK2 Polyclonal Antibody
DAPK2 Polyclonal Antibody
DAPK2 encodes death associated protein kinase 2 that belongs to the serine/threonine protein kinase family. This protein contains a N-terminal protein kinase domain followed by a conserved calmodulin-binding domain with significant similarity to that of death-associated protein kinase 1 (DAPK1), a positive regulator of programmed cell death. Overexpression of this gene was shown to induce cell apoptosis. It uses multiple polyadenylation sites.
The DAPK2 Polyclonal Antibody is a highly specific and sensitive tool designed for the detection and analysis of Death-Associated Protein Kinase 2 (DAPK2) in various biological samples. This antibody is produced using state-of-the-art techniques, ensuring high affinity and specificity towards DAPK2.
DAPK2 is a serine/threonine kinase that plays a crucial role in various cellular processes, including apoptosis, autophagy, and cell migration. It is involved in the regulation of cell death pathways and has been implicated in the pathogenesis of several diseases, including cancer and neurodegenerative disorders.
The DAPK2 Polyclonal Antibody has been rigorously validated for its performance in various applications, including Western blotting, immunohistochemistry, and immunofluorescence. It exhibits excellent sensitivity and specificity, enabling accurate and reliable detection of DAPK2 in complex biological samples.
This antibody is supplied as a liquid formulation, making it convenient and easy to use. It is provided in a ready-to-use format, eliminating the need for time-consuming and error-prone antibody preparation steps. The DAPK2 Polyclonal Antibody is compatible with a wide range of experimental conditions and can be used in both research and clinical settings.
With its exceptional performance and reliability, the DAPK2 Polyclonal Antibody is an indispensable tool for researchers and clinicians studying the role of DAPK2 in various biological processes and diseases. Its high specificity and sensitivity make it an ideal choice for accurate and precise detection of DAPK2, facilitating a deeper understanding of its function and potential therapeutic applications.
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