BT Lab
SKU:BT-AP02491
Dab1 Polyclonal Antibody
Dab1 Polyclonal Antibody
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The laminar organization of multiple neuronal types in the cerebral cortex is required for normal cognitive function. In mice, the disabled-1 gene plays a central role in brain development, directing the migration of cortical neurons past previously formed neurons to reach their proper layer. DAB1 is similar to disabled-1, and the protein encoded by this gene is thought to be a signal transducer that interacts with protein kinase pathways to regulate neuronal positioning in the developing brain. Alternatively spliced transcript variants of this gene have been reported, but their full length nature has not been determined.
The Dab1 Polyclonal Antibody is a highly specific and sensitive tool designed for the detection and analysis of Disabled-1 (Dab1) protein in various biological samples. This antibody is produced using advanced recombinant technology, ensuring high purity and batch-to-batch consistency.
The Dab1 Polyclonal Antibody exhibits exceptional affinity and specificity towards Dab1 protein, making it an ideal choice for a wide range of applications, including Western blotting, immunohistochemistry, and immunofluorescence. It has been extensively validated and proven to provide reliable and reproducible results.
With its superior sensitivity, the Dab1 Polyclonal Antibody allows for the detection of even low levels of Dab1 protein, enabling researchers to accurately quantify and analyze its expression in different tissues and cell types. Its robust performance ensures minimal background noise and high signal-to-noise ratios, facilitating precise and reliable data interpretation.
The Dab1 Polyclonal Antibody is supplied in a convenient and ready-to-use format, eliminating the need for time-consuming and complex preparation steps. It is available in various sizes to accommodate different experimental requirements.
In summary, the Dab1 Polyclonal Antibody is a highly reliable and efficient tool for the detection and analysis of Dab1 protein. Its exceptional sensitivity, specificity, and ease of use make it an invaluable asset for researchers in the field of molecular biology, neuroscience, and developmental biology.
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