The cDNA encoding a variant of α bungarotoxin was cloned from the venom glands of Bungarus multicinctus by RT PCR.The deduced protein precursor contained a 21 amino acid signal peptide and a following 74 amino ...The cDNA encoding a variant of α bungarotoxin was cloned from the venom glands of Bungarus multicinctus by RT PCR.The deduced protein precursor contained a 21 amino acid signal peptide and a following 74 amino acid mature protein.The signal peptide is very similar to those of short chain neurotoxins,κ neurotoxins and cardiotoxins.The amino acid sequence of the mature protein is identical to α bungarotoxin (V31),a minor variant of α bungarotoxin identified by protein sequencing technique.Furthermore,the cDNA encoding the deletion precursor of α bungarotoxin was also cloned.By use of pMAL p2,the variant was overexpressed in E coli as a soluble fusion protein and purified by sepharose 6B amylose affinity chromatography,which was confirmed by western blotting with the antisera agai nst α bungarotoxin.The recombinant variant was achieved after digestion by factor X a.It displayed about 1/6 in vivo toxicity of natural α bungarotoxin.The successful cloning and functional expression of α bungarotoxin provided a basis for the future study of structure function of long neurotoxins.展开更多
[Objective] This study aimed to obtain recombinant alpha-bungarotoxin (a-BG-0 gene fusion protein with biological activity and investiagte its fusion expression. [Method] The plasmid pGEX-a-BGT was transformed into E...[Objective] This study aimed to obtain recombinant alpha-bungarotoxin (a-BG-0 gene fusion protein with biological activity and investiagte its fusion expression. [Method] The plasmid pGEX-a-BGT was transformed into E coil BL21 (DE3) and BL21 (DE3) plysS host bacteria to identify the optimal engineering strain. Fusion expression of the optimal engineering strain was induced, in order to optimize the induced expression conditions of the soluble fusion protein. [Result] JP-a-BGT was identified as the optimal engineering strain, which could express fusion protein after induced by IPTG. The optimal induced expression conditions of the soluble fusion protein were investigatect JP-a-BGT was incubated at 37 ℃ for 2.5 h and induced with 0.50 mmol4. IPTG for 4 h at 22 ℃, and the expression level of the soluble fusion protein reached 18.42%. [Conclusion] This study laid a solid foundation for the subsequent purification of fusion proteins and the separation and purification of a-BGT.展开更多
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文摘The cDNA encoding a variant of α bungarotoxin was cloned from the venom glands of Bungarus multicinctus by RT PCR.The deduced protein precursor contained a 21 amino acid signal peptide and a following 74 amino acid mature protein.The signal peptide is very similar to those of short chain neurotoxins,κ neurotoxins and cardiotoxins.The amino acid sequence of the mature protein is identical to α bungarotoxin (V31),a minor variant of α bungarotoxin identified by protein sequencing technique.Furthermore,the cDNA encoding the deletion precursor of α bungarotoxin was also cloned.By use of pMAL p2,the variant was overexpressed in E coli as a soluble fusion protein and purified by sepharose 6B amylose affinity chromatography,which was confirmed by western blotting with the antisera agai nst α bungarotoxin.The recombinant variant was achieved after digestion by factor X a.It displayed about 1/6 in vivo toxicity of natural α bungarotoxin.The successful cloning and functional expression of α bungarotoxin provided a basis for the future study of structure function of long neurotoxins.
文摘[Objective] This study aimed to obtain recombinant alpha-bungarotoxin (a-BG-0 gene fusion protein with biological activity and investiagte its fusion expression. [Method] The plasmid pGEX-a-BGT was transformed into E coil BL21 (DE3) and BL21 (DE3) plysS host bacteria to identify the optimal engineering strain. Fusion expression of the optimal engineering strain was induced, in order to optimize the induced expression conditions of the soluble fusion protein. [Result] JP-a-BGT was identified as the optimal engineering strain, which could express fusion protein after induced by IPTG. The optimal induced expression conditions of the soluble fusion protein were investigatect JP-a-BGT was incubated at 37 ℃ for 2.5 h and induced with 0.50 mmol4. IPTG for 4 h at 22 ℃, and the expression level of the soluble fusion protein reached 18.42%. [Conclusion] This study laid a solid foundation for the subsequent purification of fusion proteins and the separation and purification of a-BGT.