Department of Molecular Biology and Biotechnology, Universidad Nacional Autónoma de México, Mexico.
Peptides. 2012 Mar;34(1):232-41. doi: 10.1016/j.peptides.2011.10.003. Epub 2011 Oct 8.
Paramyosin of the pig-human parasite Taenia solium (TPmy) is a α-helical protein located on the worm surface that is suggested to fulfill an immunomodulatory role protecting the parasite against host immune system. Besides, in challenging experiments the protein shows a vaccine potential. These observations imply that TPmy harbors antigenic determinants for each of these contrasting actions. However the suggestion was not given a support from experimental data because respective epitopes have not been described thus far. To circumvent this difficulty, we use synthetic peptides with sequences of regions composed of α-helical or linear structure to induce rabbit antibody responses for phage-display mapping of epitope core amino-acid sets. Antibodies to α-helical regions were weak binders and M13 phage-displayed peptides selected by them from two different libraries exhibited no amino-acid similarities with the original protein site. In contrast, the antibodies produced in response to non-helical segment within α-helical structure were better binders and selectors of perfect structural mimics of the protein site. This first phage display epitope analysis of TPmy supports the notion that the rod-like α-helix, which encompasses over 90% of the total amino acids, may serve as an immunomodulatory shield that protects the parasite. Further, the seven non-helical segments of the TPmy molecule may represent the only anti-parasite discrete immunogenic epitopes whose representative mimotopes can be utilized in development of pure epitope vaccines.
猪带绦虫(Taenia solium)人-猪寄生虫的副肌球蛋白(TPmy)是一种位于虫体表面的α-螺旋蛋白,据推测它具有免疫调节作用,可保护寄生虫免受宿主免疫系统的攻击。此外,在挑战性实验中,该蛋白显示出疫苗潜力。这些观察结果表明,TPmy 具有针对这些相反作用的抗原决定簇。然而,由于迄今为止尚未描述相应的表位,因此这些观察结果并未得到实验数据的支持。为了解决这一困难,我们使用具有α-螺旋或线性结构区域序列的合成肽来诱导兔抗体反应,以进行噬菌体展示来映射表位核心氨基酸集。针对α-螺旋区的抗体是弱结合剂,并且它们从两个不同文库中选择的 M13 噬菌体展示肽与原始蛋白位点没有氨基酸相似性。相比之下,针对α-螺旋结构内非螺旋区产生的抗体是更好的结合剂和蛋白位点的完美结构模拟物的选择剂。这是对 TPmy 的首次噬菌体展示表位分析,支持了这样的观点,即包含超过 90%总氨基酸的杆状α-螺旋可能充当免疫调节屏蔽,从而保护寄生虫。此外,TPmy 分子的七个非螺旋段可能代表唯一的抗寄生虫离散免疫原性表位,其代表性模拟表位可用于开发纯表位疫苗。