Department of Medicine, Division of Infectious Diseases, University of California, Irvine, CA 92697, USA.
Proteomics. 2010 Jun;10(12):2259-69. doi: 10.1002/pmic.201000064.
Comprehensive evaluation of the humoral immune response to Coxiella burnetii may identify highly needed diagnostic antigens and potential subunit vaccine candidates. Here we report the construction of a protein microarray containing 1901 C. burnetii ORFs (84% of the entire proteome). This array was probed with Q-fever patient sera and naïve controls in order to discover C. burnetii-specific seroreactive antigens. Among the 21 seroreactive antigens identified, 13 were significantly more reactive in Q-fever cases than naïve controls. The remaining eight antigens were cross-reactive in both C. burnetii infected and naïve patient sera. An additional 64 antigens displayed variable seroreactivity in Q-fever patients, and underscore the diversity of the humoral immune response to C. burnetii. Nine of the differentially reactive antigens were validated on an alternative immunostrip platform, demonstrating proof-of-concept development of a consistent, safe, and inexpensive diagnostic assay alternative. Furthermore, we report here the identification of several new diagnostic antigens and potential subunit vaccine candidates for the highly infectious category B alphaproteobacteria, C. burnetii.
全面评估柯克斯体的体液免疫反应可能有助于确定急需的诊断抗原和潜在的亚单位疫苗候选物。在这里,我们报告了一种包含 1901 个柯克斯体 ORF(整个蛋白质组的 84%)的蛋白质微阵列的构建。该阵列用 Q 热患者血清和未感染对照进行探测,以发现柯克斯体特异性血清反应性抗原。在鉴定的 21 种血清反应性抗原中,有 13 种在 Q 热病例中比未感染对照更具反应性。其余 8 种抗原在感染和未感染的患者血清中均有交叉反应。另外 64 种抗原在 Q 热患者中显示出不同的血清反应性,强调了针对柯克斯体的体液免疫反应的多样性。在另一个免疫条带平台上验证了 9 种差异反应性抗原,证明了一致、安全和廉价的替代诊断检测方法的概念验证开发。此外,我们还报告了几种新的诊断抗原和潜在的亚单位疫苗候选物的鉴定,用于高度传染性的 B 类α变形菌,即柯克斯体。