Inoue Satoshi, Kanda Toshio, Imamura Morikazu, Quan Guo-Xing, Kojima Katsura, Tanaka Hiromitsu, Tomita Masahiro, Hino Rika, Yoshizato Katsutoshi, Mizuno Shigeki, Tamura Toshiki
Insect Biotechnology and Sericology Department, National Institute of Agrobiological Sciences, 1-2 Owashi, Tsukuba, Ibaraki 305-8634, Japan.
Insect Biochem Mol Biol. 2005 Jan;35(1):51-9. doi: 10.1016/j.ibmb.2004.10.002.
The silkworm Nd-s(D) mutant is silk fibroin-secretion deficient. In the mutant, a disulfide linkage between the heavy (H) and light (L) chains, which is essential for the intracellular transport and secretion of fibroin, is not formed because of a partial deletion of the L-chain gene. To utilize the inactivity of the mutant L-chain, we investigated the possibility of using the Nd-s(D) mutant for the efficient production of recombinant proteins in the silkworm. A germ line transformation of the mutant with a normal L-chain-GFP fusion gene was performed. In the transgenic mutant, normal development of the posterior silk gland (PSG) was restored and it formed a normal cocoon. The biochemical analysis showed that the transgenic silkworms expressed the introduced gene in PSG cells, produced a large amount of the recombinant protein, secreted it into the PSG lumen, and used it to construct the cocoon. The molar ratio of silk proteins, H-chain:L-chain-GFP:fibrohexamerin, in the lumen and cocoon in the transgenic silkworm was 6:6:1, and the final product of the fusion gene formed about 10% of the cocoon silk. This indicates that the transgenic mutant silkworm possesses the capacity to produce and secrete the recombinant proteins in a molar ratio equal to that of the fibroin H-chain, contributing around half molecules of the total PSG silk proteins.
家蚕Nd-s(D)突变体存在丝素蛋白分泌缺陷。在该突变体中,由于轻链基因的部分缺失,重链(H)和轻链(L)之间形成的二硫键未形成,而该二硫键对于丝素蛋白的细胞内运输和分泌至关重要。为了利用突变体轻链的无活性,我们研究了利用Nd-s(D)突变体在家蚕中高效生产重组蛋白的可能性。用正常的轻链-绿色荧光蛋白融合基因对该突变体进行了种系转化。在转基因突变体中,后部丝腺(PSG)恢复了正常发育,并形成了正常的茧。生化分析表明,转基因家蚕在PSG细胞中表达了导入的基因,产生了大量重组蛋白,将其分泌到PSG腔中,并用于构建茧。转基因家蚕腔和茧中丝蛋白的摩尔比,即重链:轻链-绿色荧光蛋白:纤维六聚体为6:6:1,融合基因的最终产物约占茧丝的10%。这表明转基因突变体家蚕具有以与丝素蛋白重链摩尔比相等的比例生产和分泌重组蛋白的能力,约占PSG总丝蛋白分子的一半。