Soria-Guerra Ruth Elena, Rosales-Mendoza Sergio, Márquez-Mercado Crisóforo, López-Revilla Rubén, Castillo-Collazo Rosalba, Alpuche-Solís Angel Gabriel
División de Biología Molecular, Instituto Potosino de Investigación Científica y Tecnológica, Camino a la Presa San José 2055, 78216 San Luis Potosí, S.L.P., Mexico.
Plant Cell Rep. 2007 Jul;26(7):961-8. doi: 10.1007/s00299-007-0306-y. Epub 2007 Feb 16.
A current priority of vaccinology is the development of multicomponent vaccines that protect against several pathogens. The diphtheria-pertussis-tetanus (DPT) vaccine prevents the symptoms of three serious and often fatal diseases due to the exotoxins produced by Corynebacterium diphteriae, Bordetella pertussis and Clostridium tetani. We are attempting to develop an edible DPT multicomponent vaccine in plants, based on the fusion of protective exotoxin epitopes encoded by synthetic genes. By means of Agrobacterium mediated transformation we generated transgenic tomatoes with a plant-optimised synthetic gene encoding a novel polypeptide containing two adjuvant and six DPT immunoprotective exotoxin epitopes joined by peptide linkers. In transformed tomato plants, integration of the synthetic DPT (sDPT) gene detected by PCR was confirmed by Southern blot, and specific transcripts of the expected molecular size were detected by RT-PCR. Expression of the putative polypeptide encoded by the sDPT gene was detected by immunoassay with specific antibodies to the diphtheria, pertussis and tetanus exotoxins. The sDPT gene is therefore integrated, transcribed and translated as the expected recombinant sDPT multiepitope polypeptide in transgenic tomatoes that constitute a potential edible vaccine.
疫苗学当前的一个优先事项是开发能够预防多种病原体的多组分疫苗。白喉-百日咳-破伤风(DPT)疫苗可预防由白喉棒状杆菌、百日咳博德特氏菌和破伤风梭菌产生的外毒素所引发的三种严重且往往致命的疾病的症状。我们正尝试基于合成基因编码的保护性外毒素表位的融合,在植物中开发一种可食用的DPT多组分疫苗。通过农杆菌介导的转化,我们培育出了转基因番茄,其携带一个经植物优化的合成基因,该基因编码一种新型多肽,该多肽包含两个佐剂以及六个通过肽接头连接的DPT免疫保护性外毒素表位。在转化的番茄植株中,通过PCR检测到的合成DPT(sDPT)基因的整合通过Southern印迹得以证实,并且通过RT-PCR检测到了预期分子大小的特异性转录本。利用针对白喉、百日咳和破伤风外毒素的特异性抗体进行免疫测定,检测到了由sDPT基因编码的推定多肽的表达。因此,sDPT基因在构成潜在可食用疫苗的转基因番茄中作为预期的重组sDPT多表位多肽进行整合、转录和翻译。