Akram M, Iquebal M A, Naimuddin K
Indian Institute of Pulses Research, Kalyanpur, Kanpur 208 024, Uttar Pradesh, India.
Curr Drug Discov Technol. 2010 Jun;7(2):117-22. doi: 10.2174/157016310793180602.
Groundnut bud necrosis virus (GBNV) is recognized as one of the most economically important viruses and is known to affect several crops including peanut, potato, tomato and soybean. For managing plant virus diseases, determination of their causal agents' identity at an early stage of crop is a pre-requisite. In the present study, NSm protein of GBNV has been used to predict out MHC binding peptides and epitopes that are highly suitable for antigenicity. Eighteen peptide regions were found to have high affinity. Few of these NSm protein TAP transporters are 126- RRYMHISRL with score 11.638, 125- NRRYMHISR with score 10.280, 46- AIMNKAKTL with score 7.762, 120- PTWNSNRRY with score 7.632 and 171- ASLKDPMCF with score 7.277. The support vector machine (SVM) based approach predicted MHCII-IAb peptide regions, 45- SAIMNKAKT, 151- ASLIDPNKM, 23- PAVKKENNR, 229- PIAAENNTC, (optimal score 0.938); MHCII-IAd peptide regions, 208- YAKGVGFAS, 101- NDSLVGNGN, 55- NGKQYVSSG, 63-GDSSVLGTY, (optimal score 0.852); MHCII-IAg7 peptide regions, 277- LQKAAERLA, 145- SKNNVKASL, 228- TPIAAENNT, 276- SLQKAAERL, (optimal score 1.640); and MHCII- RT1.B peptide regions, 193- TPKQCMQLN, 195- KQCMQLNLT, 246- KVIQSAALI, 166- IISRQASLK, (optimal score 0.800) as binders from NSm protein. The most suitable predicted segments in NSm protein of GBNV virus found in the study are 164- KIIISRQASLKDPMCFIFHLNWS- 186 and 237-CDVVPINRAKVIQSAALIEACKLMIP-262. These two fragments, obtained from non-structural movement protein with average propensity 1.016, are high-efficiency binders and may, therefore be used in cross protection to provide resistance against GBNV and develop GBNV specific antibodies that can be exploited in sero-diagnostics.
花生芽坏死病毒(GBNV)被认为是最具经济重要性的病毒之一,已知会影响包括花生、马铃薯、番茄和大豆在内的多种作物。为了管理植物病毒病,在作物生长早期确定其病原体的身份是一项先决条件。在本研究中,GBNV的NSm蛋白已被用于预测高度适合抗原性的MHC结合肽和表位。发现18个肽区域具有高亲和力。这些NSm蛋白TAP转运体中,少数有126 - RRYMHISRL,得分11.638;125 - NRRYMHISR,得分10.280;46 - AIMNKAKTL,得分7.762;120 - PTWNSNRRY,得分7.632;171 - ASLKDPMCF,得分7.277。基于支持向量机(SVM)的方法预测出MHCII - IAb肽区域45 - SAIMNKAKT、151 - ASLIDPNKM、23 - PAVKKENNR、229 - PIAAENNTC(最佳得分0.938);MHCII - IAd肽区域208 - YAKGVGFAS、101 - NDSLVGNGN、55 - NGKQYVSSG、63 - GDSSVLGTY(最佳得分0.852);MHCII - IAg7肽区域277 - LQKAAERLA、145 - SKNNVKASL、228 - TPIAAENNT、276 - SLQKAAERL(最佳得分1.640);以及MHCII - RT1.B肽区域193 - TPKQCMQLN、195 - KQCMQLNLT、246 - KVIQSAALI、166 - IISRQASLK(最佳得分0.800)为NSm蛋白的结合物。在该研究中发现的GBNV病毒NSm蛋白中最合适的预测片段是164 - KIIISRQASLKDPMCFIFHLNWS - 186和237 - CDVVPINRAKVIQSAALIEACKLMIP - 262。这两个片段取自非结构运动蛋白,平均倾向为1.016,是高效结合物,因此可用于交叉保护以提供对GBNV的抗性,并开发可用于血清诊断的GBNV特异性抗体。