AI Article Synopsis

  • Dioscorins, the main storage proteins in yam tubers, show biochemical and immunomodulatory functions, making them interesting for biomedical research.
  • Two dioscorin genes (Dj-dioA3 and Dp-dioA2) were successfully expressed in E. coli, yielding significant amounts of recombinant proteins (15-30 mg/L for rDj-dioscorinA3 and 4-8 mg/L for rDp-dioscorinA2).
  • Analyses revealed that these recombinant proteins resemble native dioscorins in structure and function, exhibiting similar antigenic properties, radical scavenging abilities, and the capacity to enhance macrophage activity against pathogens, indicating their potential for future biomedical applications.

Article Abstract

Dioscorins, the major storage proteins in yam tubers, exhibit biochemical and immunomodulatroy activities. To investigate the potential application of dioscorins in biomedical research, we expressed the dioscorin genes Dj-dioA3 and Dp-dioA2 from Dioscorea japonica and Dioscorea pseudojaponica, respectively, in E. coli and routinely obtained approximately 15 mg proteins per liter Escherichia coli culture (mg/L) to 30 mg/L of rDj-dioscorinA3 and 4 to 8 mg/L of rDp-dioscorinA2. Western blot analyses revealed that both recombinant dioscorins contained epitopes with similar antigenicities to those of the native dioscorins. Results from dithiothreitol (DTT) treatment followed by monobromobimane (mBBr) staining showed that both recombinant dioscorins, like the native dioscorins, contain an intramolecular disulfide bond between Cys(28) and Cys(187) residues. Circular dichroism spectroscopy findings indicated that the secondary structural contents of the recombinant dioscorins showed high similarity to those of their corresponding native dioscorins. Both recombinant dioscorins, like the native dioscorins, exhibited 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical scavenging and Toll-like receptor 4 signaling activities, and stimulated the phagocytosis of E. coli by macrophage. Overall, our results indicated that substantial amounts of recombinant dioscorins can be purified easily from E. coli and that these recombinant dioscorins are appropriate for application in future investigations of the biomedical functions of dioscorins.

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Source
http://dx.doi.org/10.1016/j.pep.2012.07.001DOI Listing

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