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A fibroin secretion-deficient silkworm mutant, Nd-sD, provides an efficient system for producing recombinant proteins

  • Satoshi Inoue
  • , Toshio Kanda
  • , Morikazu Imamura
  • , Guo Xing Quan
  • , Katsura Kojima
  • , Hiromitsu Tanaka
  • , Masahiro Tomita
  • , Rika Hino
  • , Katsutoshi Yoshizato
  • , Shigeki Mizuno
  • , Toshiki Tamura

Research output: Contribution to journalArticlepeer-review

Abstract

The silkworm Nd-sD 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-sD 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.

Original languageEnglish
Pages (from-to)51-59
Number of pages9
JournalInsect Biochemistry and Molecular Biology
Volume35
Issue number1
DOIs
Publication statusPublished - 2005 Jan
Externally publishedYes

Keywords

  • Bioreactor
  • Bombyx
  • Fibroin
  • Intracellular transport
  • Nd-s mutant
  • PiggyBac
  • Recombinant protein
  • Silkworm
  • Transgenic

ASJC Scopus subject areas

  • Biochemistry
  • Molecular Biology
  • Insect Science

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