Synthesis of eukaryotic-derived proteins! Fast delivery in 15 business days.
The "Cell-Free Protein Synthesis Service" is a service that utilizes the high protein synthesis capability of the silkworm silk gland. The silk gland is an organ specialized in silk protein synthesis, where a large amount of protein is synthesized. In this service, we have achieved a high protein synthesis yield of over 70μg/mL by using extracts from the posterior silk gland. It is possible to synthesize proteins derived from mammals, such as humans, with a high probability of solubility. Because synthesis can be done quickly, we can deliver the target protein in a short period. 【Features】 ■ Capable of synthesizing proteins that are cytotoxic ■ This system does not contain added reducing agents ■ Can synthesize proteins with disulfide bonds ■ No glycan modifications, so no different glycans are added ■ Contains no components derived from mammals *For more details, please refer to the PDF document or feel free to contact us.
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basic information
【Flow of Basic Services】 ■Request ↓ ■Information Disclosure (Non-Disclosure Agreement if necessary) ↓ ■Estimate ↓ ■Provision of Target Gene ↓ ■Construction of Expression Vector ↓ ■mRNA Synthesis ↓ ■Protein Synthesis ↓ ■Affinity Purification ↓ ■Western Analysis *For more details, please refer to the PDF document or feel free to contact us.
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【Purpose】 ■ For the synthesis of proteins derived from eukaryotic organisms *For more details, please refer to the PDF document or feel free to contact us.*
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At Ozeki Co., Ltd. Research Institute, we continue to conduct research and development in the biotechnology of koji mold based on the know-how cultivated over many years in sake brewing. We have successfully developed a unique protein expression system and offer a "koji mold protein contract expression service" that maximally utilizes the characteristics of koji mold. The koji mold expression system can express complex structured proteins as an eukaryotic expression system, making it possible to mass-produce proteins that are difficult to produce in E. coli or yeast. We accommodate a wide range of protein expressions, from microbial to mammalian-derived proteins. We invite you to try our system.