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[Expression of BmSPI38 tandem multimers in and its antifungal activity]. | LitMetric

[Expression of BmSPI38 tandem multimers in and its antifungal activity].

Sheng Wu Gong Cheng Xue Bao

Shaanxi Province Key Laboratory of Bio-resources, Hanzhong 723001, Shaanxi, China.

Published: October 2023

The aim of this study was to prepare tandem multimeric proteins of BmSPI38, a silkworm protease inhibitor, with better structural homogeneity, higher activity and stronger antifungal ability by protein engineering. The tandem multimeric proteins of BmSPI38 were prepared by prokaryotic expression technology. The effects of tandem multimerization on the structural homogeneity, inhibitory activity and antifungal ability of BmSPI38 were explored by in-gel activity staining of protease inhibitor, protease inhibition assays and fungal growth inhibition experiments. Activity staining showed that the tandem expression based on the peptide flexible linker greatly improved the structural homogeneity of BmSPI38 protein. Protease inhibition experiments showed that the tandem trimerization and tetramerization based on the linker improved the inhibitory ability of BmSPI38 to microbial proteases. Conidial germination assays showed that His-SPI38L-tetramer had stronger inhibition on conidial germination of than that of His-SPI38-monomer. Fungal growth inhibition assay showed that the inhibitory ability of BmSPI38 against and could be enhanced by tandem multimerization. The present study successfully achieved the heterologous active expression of the silkworm protease inhibitor BmSPI38 in , and confirmed that the structural homogeneity and antifungal ability of BmSPI38 could be enhanced by tandem multimerization. This study provides important theoretical basis and new strategies for cultivating antifungal transgenic silkworm. Moreover, it may promote the exogenous production of BmSPI38 and its application in the medical field.

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http://dx.doi.org/10.13345/j.cjb.230297DOI Listing

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