Yang Y P, Munson R S, Grass S, Chong P, Harkness R E, Gisonni L, James O, Kwok Y, Klein M H
Research Center, Pasteur Merieux, Connaught, Ontario, Canada.
Vaccine. 1997 Jun;15(9):976-87. doi: 10.1016/s0264-410x(96)00296-4.
The outer membrane lipoprotein, P6 of Haemophilus influenzae was studied to determine the importance of the native palmitoyl moiety on its physicochemical and immunological properties. A recombinant P6 (rP6) molecule devoid of lipidation signal sequence was expressed in Escherichia coli and its properties were compared to those of the palmitylated protein purified from H. influenzae. The isoelectric point of rP6 was more acidic than that of the native protein and also exhibited less secondary structure than P6 as judged by circular dichroism. However, both forms of P6 induced identical P6-specific antibody titers in guinea pigs when Freund's adjuvant was used. These antisera reacted with a panel of overlapping P6 peptides in a comparable manner and in addition, rabbit antisera raised against the P6 peptides reacted equally well with P6 and rP6. Furthermore, all human convalescent sera tested exhibited similar anti-P6 and anti-rP6 antibody titers. However, rP6 was less immunogenic than P6 when administered either without adjuvant or in alum and when tested in competitive inhibition studies with anti-P6 antibodies, was a less effective inhibitor than native P6, suggesting a diminution in some of the antigenic activity of rP6. In spite of these differences, rP6 was capable of eliciting a protective antibody response against live H. influenzae type b challenge in a modified infant rat model of bacteremia. These findings demonstrate that the non-fatty acylated rP6 could possibily be substituted for native P6 in a vaccine against H. influenzae.
对流感嗜血杆菌的外膜脂蛋白P6进行了研究,以确定天然棕榈酰部分对其物理化学和免疫学特性的重要性。在大肠杆菌中表达了一个缺乏脂化信号序列的重组P6(rP6)分子,并将其特性与从流感嗜血杆菌中纯化的棕榈酰化蛋白的特性进行了比较。通过圆二色性判断,rP6的等电点比天然蛋白更偏酸性,并且其二级结构也比P6少。然而,当使用弗氏佐剂时,两种形式的P6在豚鼠中诱导出相同的P6特异性抗体滴度。这些抗血清以类似的方式与一组重叠的P6肽发生反应,此外,针对P6肽产生的兔抗血清与P6和rP6的反应同样良好。此外,所有测试的人类恢复期血清均表现出相似的抗P6和抗rP6抗体滴度。然而,当无佐剂或在明矾中给药时,rP6的免疫原性低于P6,并且在与抗P6抗体的竞争性抑制研究中进行测试时,rP6作为抑制剂的效果不如天然P6,这表明rP6的某些抗原活性有所降低。尽管存在这些差异,但在改良的幼鼠菌血症模型中,rP6能够引发针对b型流感嗜血杆菌活菌攻击的保护性抗体反应。这些发现表明,在针对流感嗜血杆菌的疫苗中,非脂肪酰化的rP6可能可以替代天然P6。