Zeng Xiongzhi, Deng Meichun, Pi Jianhui, Quan Miaohua, Wang Xianchun, Liang Songping
The Key Laboratory of Protein Chemistry and Developmental Biology of Ministry of Education, Hunan Normal University, Changsha 410081, China.
Sheng Wu Gong Cheng Xue Bao. 2008 Jul;24(7):1228-32.
Jingzhaotoxin-V(JZTX-V) isolated from the venom of the spider Chilobrachys jingzhao is a novel potent inhibitor that acts on tetrodotoxin-resistant and tetrodotoxin-sensitive sodium channels in adult rat dorsal root ganglion(DRG) neurons. It is a 29-residue polypeptide toxin including three disulfide bridges. To investigate the structure-function relationship of the toxin, a mutant of JZTX-V in which Arg20 was substituted by Ala, was synthesized by solid-phase chemistry method with Fmoc-protected amino acids on the PS3 automated peptide synthesizer. The synthetic linear peptide was then purified by reversed-phase high performance liquid chromatography and oxidatively refolded under the optimal conditions. The refolded product was analyzed by matrix-assisted laser desorption/ ionization time-of-flight mass spectrometry(MALDI-TOF MS) and electrophysiological experiments for its relative molecular weight and prohibitive activity of sodium channels respectively. The present findings show that the prohibitive effect of R20A-JZTX-V on TTX-S sodium channels in DRG neurons is almost the same as that of native JZTX-V, suggesting that Arg20 does not play any important role in inhibiting TTX-S sodium currents in DRG neurons. In contrast, the prohibitive level of R20A-JZTX-V on TTX-R sodium channels is reduced by at last 18.3 times, indicating that Arg20 is a key amino acid residue relative to the bioactivity of JZTX-V. It is presumed that the decrease in activity of R20A-JZTX-V is due to the changes of the property in the binding site in TTX-R sodium channels.
从蜘蛛敬钊缨毛蛛毒液中分离得到的敬钊毒素 -V(JZTX-V)是一种新型强效抑制剂,作用于成年大鼠背根神经节(DRG)神经元中的河豚毒素抗性和河豚毒素敏感性钠通道。它是一种含29个氨基酸残基的多肽毒素,包含三个二硫键。为了研究该毒素的结构 - 功能关系,通过固相化学方法,在PS3自动肽合成仪上使用Fmoc保护的氨基酸合成了JZTX-V的一个突变体,其中Arg20被Ala取代。然后通过反相高效液相色谱法纯化合成的线性肽,并在最佳条件下进行氧化重折叠。分别通过基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)和电生理实验分析重折叠产物的相对分子量和钠通道抑制活性。目前的研究结果表明,R20A-JZTX-V对DRG神经元中TTX-S钠通道的抑制作用与天然JZTX-V几乎相同,这表明Arg20在抑制DRG神经元中TTX-S钠电流方面不起任何重要作用。相反,R20A-JZTX-V对TTX-R钠通道的抑制水平至少降低了18.3倍,表明Arg20是与JZTX-V生物活性相关的关键氨基酸残基。据推测,R20A-JZTX-V活性降低是由于TTX-R钠通道结合位点性质的改变。