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一种在蚕茧丝胶层中分泌重组蛋白的种系转基因蚕。

A germline transgenic silkworm that secretes recombinant proteins in the sericin layer of cocoon.

作者信息

Tomita Masahiro, Hino Rika, Ogawa Shingo, Iizuka Masashi, Adachi Takahiro, Shimizu Katsuhiko, Sotoshiro Hisaya, Yoshizato Katsutoshi

机构信息

Yoshizato Project, Cooperative Link of Unique Science and Technology for Economy Revitalization, Hiroshima Prefectural Institute of Industrial Science and Technology, 3-10-32 Kagamiyama, Higashihiroshima, Hiroshima, 739-0046, Japan.

出版信息

Transgenic Res. 2007 Aug;16(4):449-65. doi: 10.1007/s11248-007-9087-x. Epub 2007 Apr 6.

Abstract

A silk thread of the silkworm, Bombyx mori, is composed of the insoluble inner fibroin and the hydrophilic outer sericin layer, which are synthesized in the posterior and middle silk gland (MSG), respectively. This study aimed to develop a novel sericin 1 gene (ser1) promoter-driven recombinant expression system using transgenic silkworms, in which recombinant proteins are synthesized in MSG and secreted into the sericin layer. To obtain a high level of gene expression, we tested whether a baculovirus-derived enhancer, hr3, and a trans-regulator, IE1, are capable of stimulating the transcriptional activity of the ser1 promoter, using a transient gene expression system. The results showed that hr3 and IE1 cooperatively increased the ser1 promoter activity more than 30-fold. Then, transgenic silkworms were generated which expressed the EGFP with the signal peptide in MSG under the control of the hr3-linked ser1 promoter and IE1 gene. The silkworms exclusively secreted the EGFP into the sericin layer of cocoons as predicted. The expressed EGFP was extractable from cocoons through a simple procedure with neutral pH buffer solution. The expression system developed in this study enables us to produce recombinant proteins in bulk that can be easily extracted and purified.

摘要

家蚕的丝线由不溶性的内部丝素蛋白和亲水性的外部丝胶蛋白层组成,它们分别在后丝腺和中丝腺(MSG)中合成。本研究旨在利用转基因家蚕开发一种新型的丝胶蛋白1基因(ser1)启动子驱动的重组表达系统,其中重组蛋白在中丝腺中合成并分泌到丝胶蛋白层中。为了获得高水平的基因表达,我们使用瞬时基因表达系统测试了杆状病毒衍生的增强子hr3和反式调节因子IE1是否能够刺激ser1启动子的转录活性。结果表明,hr3和IE1协同作用使ser1启动子活性提高了30多倍。然后,生成了转基因家蚕,它们在与hr3相连的ser1启动子和IE1基因的控制下,在中丝腺中表达带有信号肽的绿色荧光蛋白(EGFP)。如预期的那样,这些家蚕将EGFP特异性地分泌到茧的丝胶蛋白层中。通过用中性pH缓冲溶液进行简单的步骤,可以从茧中提取表达的EGFP。本研究中开发的表达系统使我们能够大量生产易于提取和纯化的重组蛋白。

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