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SKU:BT-AP09397

E2F-2 (Acetyl Lys122) Rabbit Polyclonal Antibody

E2F-2 (Acetyl Lys122) Rabbit Polyclonal Antibody

Regular price $275.00 USD
Regular price Sale price $275.00 USD
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Transcription activator that binds DNA cooperatively with DP proteins through the E2 recognition site| 5'-TTTC

The E2F-2 (Acetyl Lys122) Rabbit Polyclonal Antibody is a highly specific and sensitive tool designed for the detection and analysis of E2F-2 protein in various biological samples. This antibody has been developed using advanced immunization techniques and exhibits exceptional affinity and selectivity towards the acetylated form of lysine 122 on the E2F-2 protein.

The E2F-2 protein plays a crucial role in cell cycle regulation and is involved in the transcriptional activation of genes required for cell proliferation. The acetylation of lysine 122 on E2F-2 has been shown to modulate its activity and influence cell cycle progression. Therefore, the E2F-2 (Acetyl Lys122) Rabbit Polyclonal Antibody serves as a valuable tool for studying the functional significance of this post-translational modification.

This antibody has been rigorously validated for its specificity and sensitivity through various experimental approaches, including Western blotting, immunoprecipitation, and immunofluorescence. It exhibits minimal cross-reactivity with other E2F family members and demonstrates excellent performance in detecting endogenous levels of acetylated E2F-2 protein.

The E2F-2 (Acetyl Lys122) Rabbit Polyclonal Antibody is supplied as a liquid formulation in a convenient size of 100 μg. It is provided in a ready-to-use format, allowing for immediate application in a wide range of research areas, including cell biology, cancer research, and molecular biology.

In summary, the E2F-2 (Acetyl Lys122) Rabbit Polyclonal Antibody is a reliable and efficient tool for the detection and analysis of acetylated E2F-2 protein. Its high specificity, sensitivity, and ease of use make it an ideal choice for researchers aiming to unravel the intricate mechanisms underlying cell cycle regulation and its implications in various biological processes.

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