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Transgenic silkworms that weave recombinant proteins into silk cocoons

机译:将重组蛋白编织成蚕茧的转基因蚕

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摘要

As a result of breeding for more than 4,000 years, the silkworm, Bombyx mori, has acquired the ability to synthesize bulk amounts of silk proteins in its silk glands. To utilize this capacity for mass production of useful proteins, transgenic silkworms were generated that synthesized recombinant proteins in the silk gland and secreted them into the silk cocoon. The silk gland is classified into two main regions: the posterior (PSG) and the middle silk gland (MSG). By controlling the expressed regions of the recombinant protein gene in the silk gland, we were able to control the localization of the synthesized protein in the silk thread. Expression in the PSG or MSG led to localization in the insoluble fibroin core or hydrophilic outer sericin layer, respectively. This review focuses on the expression of recombinant protein in the MSG of transgenic silkworms. The recombinant protein secreted in the sericin layer is extractable from the cocoon with only a small amount of endogenous silk protein contamination by soaking the cocoon in mild aqueous solutions. The possibility of utilizing transgenic silkworms as a valuable tool for the mass production of therapeutic and industrially relevant recombinant proteins is discussed.
机译:作为超过4000年的繁殖的结果,家蚕Bombyx mori已具备在其丝腺中合成大量丝蛋白的能力。为了利用这种能力大规模生产有用的蛋白质,产生了转基因蚕,它们在丝腺中合成了重组蛋白并将其分泌到丝茧中。丝腺分为两个主要区域:后丝腺(PSG)和中丝腺(MSG)。通过控制重组蛋白基因在丝腺中的表达区域,我们能够控制合成蛋白在丝线中的定位。在PSG或MSG中的表达分别导致不溶性丝蛋白核心或亲水性丝胶蛋白外层的定位。这篇综述着重于重组蛋白在转基因家蚕MSG中的表达。通过将茧浸入温和的水溶液中,可以从茧中提取丝胶蛋白层中分泌的重组蛋白,而只受到少量的内源丝蛋白污染。讨论了利用转基因蚕作为大规模生产治疗和工业相关重组蛋白的有价值工具的可能性。

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