Deng Li, Zhang Hong-Xia, Wang Yu, Zhang Rong, Wen Xue, Song Yong-Bo, Zhao Yong-Shan, Ma Lin, Wu Chun-Fu, Zhang Jing-Hai
School of Life Science and Biopharmaceutics, Shenyang Pharmaceutical University, Shenyang, 110016, Liaoning Province, People's Republic of China.
Protein J. 2014 Apr;33(2):157-64. doi: 10.1007/s10930-014-9547-0.
In this study, the role of two conversed tyrosines (Tyr5 and Tyr42) from the scorpion toxin BmK AGP-SYPU1 was investigated with an effective Escherichia coli expression system. Site-directed mutagenesis was used to individually substitute Tyr5 and Tyr42 with hydrophobic or hydrophilic amino acids, and the extent to which these scorpion toxin BmK AGP-SYPU1 tyrosines contribute to analgesic activity was evaluated. The results of the mouse-twisting test showed that Tyr5 and Tyr42 are associated with the analgesic activity of the toxin because the analgesic activities of Y5F and Y42F were significantly increased compared with the rBmK AGP-SYPU1; however, the Y5W had decreased activity. The results of molecular simulation reveal the following: (1) for analgesic activity, the core domain of the scorpion toxin BmK AGP-SYPU1 is key and (2) for pharmacological function, Tyr42 is most likely involved when the core domain conformation is altered. These studies identify a new relationship between the structure and analgesic activity of the scorpion toxin BmK AGP-SYPU1 and are significant for further research and the application of analgesic peptides.
在本研究中,利用高效的大肠杆菌表达系统研究了蝎毒素BmK AGP - SYPU1中两个保守酪氨酸(Tyr5和Tyr42)的作用。采用定点诱变技术,分别用疏水或亲水氨基酸替代Tyr5和Tyr42,并评估这些蝎毒素BmK AGP - SYPU1酪氨酸对镇痛活性的贡献程度。小鼠扭体试验结果表明,Tyr5和Tyr42与毒素的镇痛活性相关,因为与rBmK AGP - SYPU1相比,Y5F和Y42F的镇痛活性显著增加;然而,Y5W的活性降低。分子模拟结果表明:(1)对于镇痛活性,蝎毒素BmK AGP - SYPU1的核心结构域是关键;(2)对于药理功能,当核心结构域构象改变时,Tyr42最有可能参与其中。这些研究确定了蝎毒素BmK AGP - SYPU1的结构与镇痛活性之间的新关系,对镇痛肽的进一步研究和应用具有重要意义。