首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Genome Report: Identification and Validation of Antigenic Proteins from Pajaroellobacter abortibovis Using De Novo Genome Sequence Assembly and Reverse Vaccinology
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Genome Report: Identification and Validation of Antigenic Proteins from Pajaroellobacter abortibovis Using De Novo Genome Sequence Assembly and Reverse Vaccinology

机译:基因组报告:使用De Novo基因组序列装配和反向疫苗学方法从流产波氏杆菌中鉴定和验证抗原蛋白

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摘要

Epizootic bovine abortion (EBA), or “foothill abortion,” is the leading cause of beef cattle abortion in California and has also been reported in Nevada and Oregon. In the 1970s, the soft-shelled tick Ornithodoros coriaceus, or “pajaroello tick,” was confirmed as the disease-transmitting vector. In 2005, a novel Deltaproteobacterium was discovered as the etiologic agent of EBA (aoEBA), recently named Pajaroellobacter abortibovis. This organism cannot be grown in culture using traditional microbiological techniques; it can only be grown in experimentally-infected severe combined immunodeficient (SCID) mice. The objectives of this study were to perform a de novo genome assembly for P. abortibovis and identify and validate potential antigenic proteins as candidates for future recombinant vaccine development. DNA and RNA were extracted from spleen tissue collected from experimentally-infected SCID mice following exposure to P. abortibovis. This combination of mouse and bacterial DNA was sequenced and aligned to the mouse genome. Mouse sequences were subtracted from the sequence pool and the remaining sequences were de novo assembled at 50x coverage into a 1.82 Mbp complete closed circular Deltaproteobacterial genome containing 2250 putative protein-coding sequences. Phylogenetic analysis of P. abortibovis predicts that this bacterium is most closely related to the organisms of the order Myxococcales, referred to as Myxobacteria. In silico prediction of vaccine candidates was performed using a reverse vaccinology approach resulting in the identification and ranking of the top 10 candidate proteins that are likely to be antigenic. Immunologic testing of these candidate proteins confirmed antigenicity of seven of the nine expressed protein candidates using serum from P. abortibovis immunized mice.
机译:流行性牛流产(EBA)或“山麓流产”是加利福尼亚州肉牛流产的主要原因,在内华达州和俄勒冈州也有报道。在1970年代,甲壳tick Ornithodoros coriaceus或“ pajaroello壁虱”被确认为疾病传播媒介。 2005年,发现了一种新的三角洲变形杆菌作为EBA的病原体(aoEBA),最近被称为流产波氏杆菌。这种微生物无法使用传统的微生物技术在培养中生长;它只能在实验感染的严重联合免疫缺陷(SCID)小鼠中生长。这项研究的目的是为流产毕赤酵母进行从头开始的基因组组装,并鉴定和验证潜在的抗原蛋白作为未来重组疫苗开发的候选者。暴露于流产假单胞菌后,从从实验感染的SCID小鼠收集的脾脏组织中提取DNA和RNA。对小鼠和细菌DNA的这种组合进行测序,并与小鼠基因组进行比对。从序列库中减去小鼠序列,并将其余序列以50x覆盖度重新组装成一个包含2250个推定蛋白质编码序列的1.82 Mbp完全封闭的环状Delta变形细菌基因组。对流产假单胞菌的系统发育分析预测,该细菌与粘球菌(Myxococcales)的生物最紧密相关,被称为粘细菌。使用反向疫苗学方法对疫苗候选物进行计算机预测,从而鉴定和排名最可能具有抗原性的前10个候选蛋白质。对这些候选蛋白的免疫学测试证实了使用来自流产假单胞菌免疫小鼠的血清中的9种表达蛋白中的7种具有抗原性。

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