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BT Lab

SKU(재고 관리 코드):BT-AP00749

ATPAF2 Polyclonal Antibody

ATPAF2 Polyclonal Antibody

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Ab type

ATPAF2 encodes an assembly factor for the F (1) component of the mitochondrial ATP synthase. This protein binds specifically to the F1 alpha subunit and is thought to prevent this subunit from forming nonproductive homooligomers during enzyme assembly. This gene is located within the Smith-Magenis syndrome region on chromosome 17. An alternatively spliced transcript variant has been described, but its biological validity has not been determined.

The ATPAF2 Polyclonal Antibody is a highly specific and reliable tool designed for the detection and analysis of ATPAF2 protein expression in various biological samples. This antibody has been meticulously developed using advanced immunization techniques and exhibits exceptional sensitivity and specificity.

The ATPAF2 Polyclonal Antibody is produced by immunizing rabbits with a synthetic peptide corresponding to a specific region of the ATPAF2 protein. The resulting antibody is purified using a combination of affinity chromatography and protein A/G purification methods, ensuring a high level of purity and minimal cross-reactivity.

This antibody has been extensively validated for its performance in various applications, including Western blotting, immunohistochemistry, and immunofluorescence. It has been shown to specifically recognize the ATPAF2 protein in a wide range of species, including human, mouse, and rat.

The ATPAF2 Polyclonal Antibody offers numerous advantages over other commercially available antibodies. Its high specificity and sensitivity enable accurate and reliable detection of ATPAF2 protein expression levels, even in low abundance samples. Additionally, its versatility allows for its use in a variety of experimental settings, making it an ideal choice for researchers in the fields of molecular biology, biochemistry, and cell biology.

In summary, the ATPAF2 Polyclonal Antibody is a superior tool for the detection and analysis of ATPAF2 protein expression. Its exceptional specificity, sensitivity, and versatility make it an invaluable asset for researchers seeking to unravel the functional roles of ATPAF2 in various biological processes.

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