PubMed Health⌕ Search

Biomedical subjects

Jun-Ting Huang

Publications and source records attributed to Jun-Ting Huang.

6 recordsLinked to original sources

Structural analysis of fibroin heavy chain signal peptide of silkworm Bombyx mori.

To study the minimal length required for the secretion of recombinant proteins and silk proteins in posterior silk gland, the signal peptide (SP) of the fibroin heavy chain (FibH) of silkworm Bombyx mori was systematically shortened from the C-terminal. Its effect on the secretion of protein was observed using enhanced green fluorescent protein (EGFP) as a reporter. Secretion of EGFP fusion proteins was examined under fluorescence microscope. FibH SPs with lengths of 20, 18, 16 and 12 a.a. can direct the secretion of the reporter, yet those with lengths of 11, 10, 9, 8 and 1 a.a. can not. When the FibH SP was shortened to 12 a.a., the secretion efficiency was decreased slightly and cleavage occurred within EGFP. When 16 a.a. of the FibH SP were used, the secretion of fusion protein was normal and the cleavage site was between the Gly-Ser linker and Met, the starting amino acid of EGFP. These findings are applicable for the expression of foreign proteins in silkworm silk gland. The cleavage site of the SP is discussed and compared with the predictive results of the SignalP 3.0 online prediction program.

Animals↗

Loss of posterior silk gland transcription specificity of fibroin light chain promoter due to absence of 41 bp sequence containing possible inhibitor binding sites.

The gene encoding fibroin light chain protein (FibL) is specifically expressed in the posterior silk gland of silkworm and repressed in other tissues. The binding sites of several transcription factors involved in the silk gland transcription specificity of fibl promoter have been recognized, including SGFB, PSGF and BMFA. Here we report the leak expression of the enhanced green fluorescent protein (EGFP) reporter gene in tissues other than the posterior silk gland in vivo when under the control of a shortened fibl promoter with deletion of the 5' terminal 41 bp sequence, which is located at -650 nt to -610 nt upstream of the fibl transcription starting site. Assay of silk gland specificity of the promoters was performed by observation of green fluorescence in tissues of silkworm larvae following inter-haemocoelic injection of recombinant Autographa californica multiple nuclear polyhedrosis virus carrying the EGFP reporter gene controlled by different lengths of fibl promoters. Our results indicated that availability of the binding sites of several known factors, including SGFB, PSGF and BMFA, is not sufficient for intact silk gland transcription specificity of fibl promoter, and there are possible inhibitor binding sites in the 41 bp sequence (-650 nt to -610 nt) upstream of the transcription starting site which may be required to repress the activity of fibl promoter in other tissues.

Animals↗

Altering Fibroin Heavy Chain Gene of Silkworm Bombyx mori by Homologous Recombination.

A gene unit, which encoded fibroin-like peptide, was synthesized and constructed. The unit was multimerized to about 2 400 bp using BamHI and BglII at each end of the unit, then was fused with gfp reporter gene. The fusion gene, flanked by the 5'and 3'sequence of the fibroin heavy chain gene of silkworm Bombyx mori, was transferred into the eggs of silkworm by electroporation. After the silkworms developed and spinned silk, 73 out of about 5 400 cocoons were brighter than normal ones under UV light. The protein extracted from the brighter cocoon could react with the GFP polyclonal antibodies. Genomic DNA from these silkworms and their progenies were analyzed. The integration of gfp gene into genomic DNA of silkworm and the occurrence of expected homologous recombination event had been proved by Southern hybridization. It was shown that gfp-fibroin like fusion gene had integrated into the genomic DNA of silkworm by homologous recombination and the phenotype of "brighter cocoon" could be used to select transgenic silkworms.

Journal Article↗

Transgenic Silkworm of Anti-NPV Ribozyme.

The plasmid pGL2Rz including ribozyme gene was linearized and introduced into early eggs of silkworm (G(0)) by gene gun. The luciferase activity in blood of the G(1) generation was detected, then the resistant silkworm was selected by NPV infection from G(2) generation. The transgenic silkworm resistant against NPV 10 times more than control ones was got at the G(4) generation. PCR and Southern blotting proved that the ribozyme gene was integrated into the genome of silkworm multicopily. The expression of ribozyme was also detected by RT-PCR in pupa. The results showed that the transgenic silkworm strain of anti-NPV ribozyme has been got.

Journal Article↗

Fluorescent Transgenic Silkworm.

The replacement of fibroin heavy chain gene in silkworm by site directed homologous recombination was studied The DNA fragment consisting of an IE promoter driving green fluorescent protein (GFP) gene as reporter flanked by pieces of the 5' and 3' sequences of the fibroin heavy chain gene of silkworm at two sides was transferred into silkworm eggs by electroporation Green fluorescent flecks were seen on three silkworms fifth instar among five thousand silkworms under UV light PCR analysis proved that the GFP gene was integrated into the genome of silkworm Southern hybridization of genomic DNA of one transgenic silkworm showed that the fibroin heavy chain gene was successfully knocked out and replaced by the reporter gene The transgenic silkworms could grow up to the fifth instar as normal but they could not spin silk while control ones do.

Journal Article↗

Transformation of Neomycin Resistance Gene (neo(R)) into Silkworm (Bombyx mori.L.).

Neomycin resistance gene (neo(R)) flanked by 5' and 3' regions of fibroin H-chain gene of silkworm (Bombyx mori.L.) was transferred into eggs of silkworm by gene gun in the early period of fertilization. The larvae were fed with an artificial diet containing neomycin in early 24 hours post transfettion, and some of them survived. The neo(R) encoding sequence in G(2) generation derived from the survivals was detected by Southern blotting. The results indicated that neo(R) could be used as a selective marker for studies on transgenic silkworm.

Journal Article↗