Moreno Adriana T, Oliveira Maria Leonor S, Ferreira Daniela M, Ho Paulo L, Darrieux Michelle, Leite Luciana C C, Ferreira Jorge M C, Pimenta Fabiana C, Andrade Ana Lúcia S S, Miyaji Eliane N
Centro de Biotecnologia, Instituto Butantan, São Paulo, SP, Brazil.
Clin Vaccine Immunol. 2010 Mar;17(3):439-46. doi: 10.1128/CVI.00430-09. Epub 2010 Jan 20.
PspA is an important candidate for a vaccine with serotype-independent immunity against pneumococcal infections. Based on sequence relatedness, PspA has been classified into three families comprising six clades. We have previously addressed the cross-reactivity of antibodies against PspA fragments containing the N-terminal and proline-rich regions of PspA from clades 1 to 5 (PspA1, PspA2, PspA3, PspA4, and PspA5) by Western blot analysis and reported that anti-PspA4 and anti-PspA5 were able to recognize pneumococci expressing PspA proteins from all of the clades analyzed. We have now analyzed the functional capacity of these antibodies to bind and to mediate complement deposition on intact bacteria in vitro. Our results show that both PspA4 and PspA5 elicit antibodies that are able to bind and to mediate complement deposition efficiently on pneumococcal strains bearing PspA proteins from clades 1 to 5. Moreover, mice immunized with PspA4 and PspA5 were protected against an intranasal lethal challenge with strains expressing PspA proteins from the two major families. PspA4 and PspA5 are thus able to induce antibodies with a high degree of cross-reactivity in vitro, which is reflected in cross-protection of mice. We have also analyzed the contribution of the nonproline (NonPro) block within the conserved proline-rich region to the reactivity of anti-PspA antibodies, and the results indicate that N-terminal alpha-helical region, the blocks of proline repeats, and the NonPro region can influence the degree of cross-reactivity of antibodies to PspA.
肺炎球菌表面蛋白A(PspA)是一种重要的疫苗候选物,可提供针对肺炎球菌感染的血清型非依赖性免疫。基于序列相关性,PspA已被分为三个家族,包含六个进化枝。我们之前通过蛋白质免疫印迹分析研究了针对包含进化枝1至5(PspA1、PspA2、PspA3、PspA4和PspA5)的PspA N端和富含脯氨酸区域的PspA片段的抗体的交叉反应性,并报告抗PspA4和抗PspA5能够识别表达来自所有分析进化枝的PspA蛋白的肺炎球菌。我们现在分析了这些抗体在体外结合完整细菌并介导补体沉积的功能能力。我们的结果表明,PspA4和PspA5都能诱导产生能够有效结合并介导补体沉积在携带进化枝1至5的PspA蛋白的肺炎球菌菌株上的抗体。此外,用PspA4和PspA5免疫的小鼠在经表达来自两个主要家族PspA蛋白的菌株进行鼻内致死性攻击后受到保护。因此,PspA4和PspA5能够在体外诱导具有高度交叉反应性的抗体,这在小鼠的交叉保护中得到体现。我们还分析了保守的富含脯氨酸区域内的非脯氨酸(NonPro)区段对抗PspA抗体反应性的贡献,结果表明N端α螺旋区域、脯氨酸重复区段和NonPro区域可影响抗体对PspA的交叉反应程度。