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SKU:BT-AP10195

HSP27(Phospho Ser78) Polyclonal Antibody

HSP27(Phospho Ser78) Polyclonal Antibody

Regular price $275.00 USD
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The protein encoded by this gene is induced by environmental stress and developmental changes. The encoded protein is involved in stress resistance and actin organization and translocates from the cytoplasm to the nucleus upon stress induction. Defects in this gene are a cause of Charcot-Marie-Tooth disease type 2F (CMT2F) and distal hereditary motor neuropathy (dHMN).

The HSP27(Phospho Ser78) Polyclonal Antibody is a highly specific and sensitive tool for the detection and quantification of HSP27 protein phosphorylated at Ser78. This antibody has been rigorously validated and exhibits exceptional performance in various applications, including Western blotting, immunohistochemistry, and immunofluorescence.

HSP27, also known as heat shock protein 27, is a small molecular weight protein that plays a crucial role in cellular stress response and protection against various stressors, including heat, oxidative stress, and exposure to toxic substances. Phosphorylation of HSP27 at Ser78 has been implicated in its functional regulation and modulation of its anti-apoptotic and cytoprotective activities.

The HSP27(Phospho Ser78) Polyclonal Antibody has been developed using state-of-the-art techniques and high-quality materials to ensure optimal performance and reliability. It exhibits high specificity towards the phosphorylated form of HSP27 at Ser78, with minimal cross-reactivity to non-phosphorylated HSP27 or other related proteins.

This antibody is supplied as a liquid formulation, ready to use for various applications. It has been validated for use in multiple species, including human, mouse, and rat, making it a versatile tool for researchers working in different fields.

In summary, the HSP27(Phospho Ser78) Polyclonal Antibody is a valuable research tool for the study of HSP27 phosphorylation at Ser78. Its high specificity, sensitivity, and versatility make it an ideal choice for researchers aiming to investigate the functional role of HSP27 in cellular stress response and its potential as a therapeutic target in various diseases.

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