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噬菌体展示技术筛选抗轮状病毒多肽的试验研究
引用本文:姚宁,姚伦广,张详满,郭泰林,阚云超. 噬菌体展示技术筛选抗轮状病毒多肽的试验研究[J]. 生物工程学报, 2007, 23(3): 403-408
作者姓名:姚宁  姚伦广  张详满  郭泰林  阚云超
作者单位:1. 西南交通大学药学院,峨眉山,614202;中英南阳洛桑昆虫生物学联合实验室,南阳师范学院,南阳473061
2. 中英南阳洛桑昆虫生物学联合实验室,南阳师范学院,南阳473061
3. 西南交通大学生物工程学院,成都610031
摘    要:从噬菌体随机展示十五肽文库筛选出4个与轮状病毒粒子特异性结合多肽。经空斑减少抑制实验和MTT法分析表明其中3个多肽对病毒感染培养细胞具有抑制作用,其中序列为QSNPIHIITNTRNHP的C肽具有显著抑制作用,抑制效果达93%,另外2个多肽A和B抑制效果分别为40%与50%。经过多肽序列分析发现这3个十五肽具有2个保守序列,分别是第2至8个氨基酸残基SNPIHII和第12~15个氨基酸残基NIP。胰蛋白酶水解位点分析表明C肽无裂解位点,而A肽和B肽则分别具有3个和4个潜在水解位点。抑制病毒感染液中胰蛋白酶活性,发现A,B两肽也能显著地抑制病毒离体感染。说明所筛选的多肽2个保守序列的完整对抗病毒感染起着重要作用。C肽有望成为一种治疗轮状病毒感染的口服药物。

关 键 词:轮状病毒  噬菌体展示  抗病毒多肤  空斑抑制
文章编号:1000-3061(2007)03-0403-06
修稿时间:2006-11-152006-12-18

Screening for Peptides of Anti-rotavirus by Phage-displayed Technique
YAO Ning,YAO Lun-Guang,ZHANG Xiang-Man,GUO Tai-Lin and KAN Yun-Chao. Screening for Peptides of Anti-rotavirus by Phage-displayed Technique[J]. Chinese journal of biotechnology, 2007, 23(3): 403-408
Authors:YAO Ning  YAO Lun-Guang  ZHANG Xiang-Man  GUO Tai-Lin  KAN Yun-Chao
Affiliation:.1 Pharmacy College, Southwest Jiaotong University, Emeishan 614202, China; 2. China-UK NYNU-RRes Joint Lab of Insect Biology, Nanyang Normal Urdversity, Nanyang 473061, China ;3. School of Bioengineering, Southwest Jiaotong University, Chengdu 610031, China
Abstract:In this study, a 15-mer phage display peptide library was employed to pan against human rotavirus immobilized on solid phase. 4 different peptides were selected and could bind with rotavirus particles specifically. Plaque reduction neutralization test and MTT analysis results indicated that 3 of the peptides can inhibit rotavirus infecting in vitro. A peptide which sequence is QSNPIHIITNTRNHP showed the best efficiency--93% neutralization infectivity. Two other peptides, A and B, showed 40% and 50% neutralization infectivity respectively. Amino sequence analysis results indicate the 3 peptides containing 2 conserved motifs: SNPIHII and NIP. No putative trypsin hydrolysis site was found in C peptide, however, 4 and 3 potential sites were found in A and B peptides respectively. Using trypsin inhibitor, both A and B peptides showed the similar antiviral effect as that of C peptide. It suggests that the intactness of the 2 conserved motifs play an important role in counteracting virus infection. According to the results of this study, peptide C is hopeful to be exploited as an antiviral peptide drug.
Keywords:rotavirus   phage display   antiviral peptide   plaque inhibition
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