Organic Recombinant S. Cerevisiae Tim14 Protein Massive 80% Savings [eXTiwIAl]
Organic Recombinant S. Cerevisiae Tim14 Protein Massive 80% Savings [eXTiwIAl] Introducing our Organic Recombinant S. Cerevisiae Tim14 Protein Massive 80% Savings [eXTiwIAl], a highly purified and biologically active recombinant protein derived from Saccharomyces cerevisiae. This protein is expressed in E. coli and has been ca
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Organic Recombinant S. Cerevisiae Tim14 Protein Massive 80% Savings [eXTiwIAl]
Organic Recombinant S. Cerevisiae Tim14 Protein Massive 80% Savings [eXTiwIAl]
Introducing our Organic Recombinant S. Cerevisiae Tim14 Protein Massive 80% Savings [eXTiwIAl], a highly purified and biologically active recombinant protein derived from Saccharomyces cerevisiae. This protein is expressed in E. coli and has been carefully optimized for research applications. Our TIM14 protein offers a reliable and convenient tool for studying mitochondrial import processes and protein translocation mechanisms.Key Features and Specifications
Our Organic Recombinant S. Cerevisiae Tim14 Protein Massive 80% Savings [eXTiwIAl] is produced with high purity, exceeding 95% as determined by reducing SDS-PAGE. It possesses a calculated molecular weight of 7.9 kDa and an observed molecular weight of 9 kDa. This protein is not validated for activity but is a valuable component of the PAM complex, which is essential for the ATP-dependent translocation of proteins from the inner membrane into the mitochondrial matrix.- Expression Host: E. coli
- Sequence: Phe99-Lys168
Practical Applications and Benefits
The Organic Recombinant S. Cerevisiae Tim14 Protein Massive 80% Savings [eXTiwIAl] is ideal for research studies involving mitochondrial import processes, protein translocation, and chaperone systems. TIM14, as part of the TIM23 complex, facilitates the import of nuclear-encoded proteins into the mitochondria and is involved in regulating mitochondrial morphogenesis. Its role in dilated cardiomyopathy with ataxia makes it a significant protein for exploring genetic disorders and their pathophysiology. With our TIM14 protein, researchers can benefit from a high-quality, ready-to-use reagent that supports a wide range of experimental approaches.- High Purity: > 95% as determined by reducing SDS-PAGE
- Endotoxin Level: < 1.0 EU per μg of the protein
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