BT Lab
SKU:BT-AP08918
TEL Polyclonal Antibody
TEL Polyclonal Antibody
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ETV6 encodes an ETS family transcription factor. The product of ETV6 contains two functional domains: a N-terminal pointed (PNT) domain that is involved in protein-protein interactions with itself and other proteins, and a C-terminal DNA-binding domain. Gene knockout studies in mice suggest that it is required for hematopoiesis and maintenance of the developing vascular network. ETV6 is known to be involved in a large number of chromosomal rearrangements associated with leukemia and congenital fibrosarcoma.
The TEL Polyclonal Antibody is a meticulously crafted and highly specific immunological tool designed to facilitate accurate detection and analysis of the TEL protein. This antibody has been developed using advanced techniques and rigorous quality control measures to ensure exceptional performance and reliability.
With its exceptional affinity and selectivity, the TEL Polyclonal Antibody exhibits unparalleled sensitivity and specificity in recognizing the TEL protein. This enables researchers to confidently investigate the expression, localization, and function of TEL in various biological samples and experimental settings.
The TEL Polyclonal Antibody is manufactured using state-of-the-art recombinant DNA technology, resulting in a highly purified and concentrated antibody solution. This ensures minimal background noise and maximizes signal-to-noise ratio, allowing for precise and accurate quantification of TEL protein levels.
Furthermore, the TEL Polyclonal Antibody has been extensively validated through a series of stringent tests, including Western blotting, immunohistochemistry, and immunofluorescence. These validations confirm its exceptional performance across a wide range of applications, making it an indispensable tool for researchers in the fields of molecular biology, cell biology, and immunology.
In summary, the TEL Polyclonal Antibody offers researchers a reliable and robust solution for investigating the TEL protein. Its exceptional specificity, sensitivity, and reliability, coupled with its extensive validation, make it an invaluable asset in elucidating the intricate mechanisms and functions associated with TEL in various biological contexts.
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