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Elabscience

SKU:PKSH031187

Recombinant Human Histone H3.1/HIST1H3A/H3FA Protein

Recombinant Human Histone H3.1/HIST1H3A/H3FA Protein

Regular price $855.00 USD
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Introducing the Recombinant Human Histone H3.1/HIST1H3A/H3FA Protein, a cutting-edge product meticulously engineered to meet the highest standards of quality and purity. This protein, derived from the HIST1H3A gene, is an essential component of chromatin structure and plays a pivotal role in gene regulation and DNA packaging.

Crafted through advanced recombinant DNA technology, this protein exhibits exceptional stability and functionality, making it an invaluable tool for various research applications. Its recombinant nature ensures consistency and reproducibility, enabling accurate and reliable experimental results.

The Recombinant Human Histone H3.1/HIST1H3A/H3FA Protein boasts an impressive level of purity, free from contaminants and impurities that may compromise experimental outcomes. Rigorous quality control measures have been implemented throughout the production process to guarantee the utmost integrity and reliability of this product.

With its versatile nature, this protein can be employed in a wide range of research areas, including epigenetics, chromatin remodeling, gene expression, and histone modification studies. Its exceptional performance and reliability make it an indispensable asset for scientists and researchers striving for groundbreaking discoveries in these fields.

Furthermore, this protein is provided in a convenient and user-friendly format, ensuring ease of use and seamless integration into experimental protocols. Its long shelf life and stability allow for extended storage without compromising its quality, providing researchers with flexibility and convenience.

In summary, the Recombinant Human Histone H3.1/HIST1H3A/H3FA Protein represents a pinnacle of scientific innovation, offering researchers a reliable and pure source of this crucial histone variant. With its exceptional stability, versatility, and quality, this protein is poised to revolutionize research in the fields of epigenetics, chromatin biology, and gene regulation.
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