Elabscience
SKU(재고 관리 코드):E-AB-68122
Phospho-PTPN11(Y542) Polyclonal Antibody
Phospho-PTPN11(Y542) Polyclonal Antibody
Phospho-PTPN11(Y542) Polyclonal Antibody
The PHOSPHO-PTPN11(Y542) Polyclonal Antibody is a highly specific and reliable tool designed for the detection and analysis of phosphorylated tyrosine 542 residue of the PTPN11 protein. This antibody is produced using advanced polyclonal antibody technology, ensuring exceptional sensitivity and specificity in various applications, including Western blotting, immunoprecipitation, and immunohistochemistry.
The PHOSPHO-PTPN11(Y542) Polyclonal Antibody exhibits outstanding performance in detecting the phosphorylated form of PTPN11(Y542) in a wide range of samples, including cell lysates, tissue extracts, and biological fluids. Its high affinity and selectivity enable accurate and precise quantification of the phosphorylation status of PTPN11(Y542), facilitating comprehensive investigations into cellular signaling pathways and protein regulation.
This antibody is meticulously validated to ensure consistent and reproducible results. It has been extensively tested in various experimental conditions and has demonstrated exceptional performance, exhibiting minimal cross-reactivity with non-phosphorylated PTPN11 and other related proteins. Its robustness and reliability make it an ideal choice for researchers and scientists working in the fields of cell biology, molecular biology, and signal transduction.
The PHOSPHO-PTPN11(Y542) Polyclonal Antibody is supplied as a liquid formulation, conveniently packaged in vials with appropriate storage conditions. It is recommended to store the antibody at -20°C for long-term preservation, ensuring its stability and functionality.
In summary, the PHOSPHO-PTPN11(Y542) Polyclonal Antibody is a highly specific and sensitive tool that enables accurate detection and analysis of phosphorylated tyrosine 542 residue of the PTPN11 protein. Its exceptional performance, reliability, and versatility make it an indispensable asset for researchers seeking to unravel the intricate mechanisms of cellular signaling and protein phosphorylation.
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