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首页> 外文期刊>Cellular Physiology and Biochemistry >In Silico Identification and in Vitro Analysis of B and T-Cell Epitopes of the Black Turtle Bean (Phaseolus Vulgaris L.) Lectin
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In Silico Identification and in Vitro Analysis of B and T-Cell Epitopes of the Black Turtle Bean (Phaseolus Vulgaris L.) Lectin

机译:黑Tur豆凝集素B和T细胞表位的计算机鉴定和体外分析

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Background/Aims The incidence of lectin allergic disease is increasing in recent decades, and definitive treatment is still lacking. Identification of B and T-cell epitopes of allergen will be useful in understanding the allergen antibody responses as well as aiding in the development of new diagnostics and therapy regimens for lectin poisoning. In the current study, we mainly addressed these questions. Methods Three-dimensional structure of the lectin from black turtle bean (Phaseolus vulgaris L.) was modeled using the structural template of Phytohemagglutinin from P. vulgaris (PHA-E, PDB ID 3wcs.1.A) with high identity. The B and T-cell epitopes were screened and identified by immunoinformatics and subsequently validated by ELISA, lymphocyte proliferation and cytokine profile analyses. Results Seven potential B-cell epitopes (B1 to B7) were identified by sequence and structure based methods, while three T-cell epitopes (T1 to T3) were identified by the predictions of binding score and inhibitory concentration. The epitope peptides were synthesized. Significant IgE binding capability was found in B-cell epitopes (B2, B5, B6 and B7) and T2 (a cryptic B-cell epitope). T1 and T2 induced significant lymphoproliferation, and the release of IL-4 and IL-5 cytokine confirmed the validity of T-cell epitope prediction. Abundant hydrophobic amino acids were found in B-cell epitope and T-cell epitope regions by amino acid analysis. Positively charged amino acids, such as His residue, might be more favored for B-cell epitope. Conclusion The present approach can be applied for the identification of epitopes in novel allergen proteins and thus for designing diagnostics and therapies in lectin allergy.
机译:背景/目的近几十年来,凝集素过敏性疾病的发病率正在增加,并且仍然缺乏确定的治疗方法。鉴定变应原的B细胞和T细胞表位将有助于理解变应原抗体反应,并有助于开发针对凝集素中毒的新诊断和治疗方案。在当前的研究中,我们主要解决了这些问题。方法以高产的P. vulgaris的植物血凝素结构模板(PHA-E,PDB ID 3wcs.1.A)对黑the豆(Phaseolus vulgaris L.)的凝集素进行三维结构建模。通过免疫信息学筛选和鉴定B和T细胞表位,随后通过ELISA,淋巴细胞增殖和细胞因子谱分析进行验证。结果通过基于序列和结构的方法鉴定了七个潜在的B细胞表位(B1至B7),而通过结合分数和抑制浓度的预测鉴​​定了三个T细胞表位(T1至T3)。合成了表位肽。在B细胞表位(B2,B5,B6和B7)和T2(隐性B细胞表位)中发现了重要的IgE结合能力。 T1和T2诱导显着的淋巴细胞增殖,IL-4和IL-5细胞因子的释放证实了T细胞表位预测的有效性。通过氨基酸分析,在B细胞表位和T细胞表位区域发现了丰富的疏水氨基酸。带正电荷的氨基酸(例如His残基)可能更适合B细胞表位。结论本方法可用于鉴定新型变应原蛋白中的表位,从而可用于凝集素过敏的诊断和治疗设计。

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