Cho Yun Sang, Dobos Karen M, Prenni Jessica, Yang Hongliang, Hess Ann, Rosenkrands Ida, Andersen Peter, Ryoo Sung Weon, Bai Gill-Han, Brennan Michael J, Izzo Angelo, Bielefeldt-Ohmann Helle, Belisle John T
Mycobacteria Research Laboratories, Department of Microbiology, Immunology, and Pathology, Colorado State University, Fort Collins, CO, USA.
Proteomics. 2012 Apr;12(7):979-91. doi: 10.1002/pmic.201100544.
Purified protein derivative (PPD) has served as a safe and effective diagnostic reagent for 60 years and is the only broadly available material to diagnose latent tuberculosis infections. This reagent is also used as a standard control for a number of in vitro immunological assays. Nevertheless, the molecular composition and specific products that contribute to the extraordinary immunological reactivity of PPD are poorly defined. Here, a proteomic approach was applied to elucidate the gene products in the U.S. Food and Drug Administration (FDA) standard PPD-S2. Many known Mycobacterium tuberculosis T-cell antigens were detected. Of significance, four heat shock proteins (HSPs) (GroES, GroEL2, HspX, and DnaK) dominated the composition of PPD. The chaperone activities and capacity of these proteins to influence immunological responses may explain the exquisite solubility and immunological potency of PPD. Spectral counting analysis of three separate PPD reagents revealed significant quantitative variances. Gross delayed-type hypersensitivity (DTH) responses in M. tuberculosis infected guinea pigs were comparable among these PPD preparations; however, detailed histopathology of the DTH lesions exposed unique differences, which may be explained by the variability observed in the presence and abundance of early secretory system (Esx) proteins. Variability in PPD reagents may explain differences in DTH responses reported among populations.
纯化蛋白衍生物(PPD)作为一种安全有效的诊断试剂已使用了60年,是唯一广泛可用的用于诊断潜伏性结核感染的材料。该试剂还用作多种体外免疫测定的标准对照。然而,PPD非凡免疫反应性所涉及的分子组成和特定产物仍不清楚。在此,应用蛋白质组学方法来阐明美国食品药品监督管理局(FDA)标准PPD-S2中的基因产物。检测到许多已知的结核分枝杆菌T细胞抗原。重要的是,四种热休克蛋白(HSPs)(GroES、GroEL2、HspX和DnaK)在PPD的组成中占主导地位。这些蛋白质的伴侣活性及其影响免疫反应的能力可能解释了PPD出色的溶解性和免疫效力。对三种不同PPD试剂的光谱计数分析显示出显著的定量差异。在结核分枝杆菌感染的豚鼠中,这些PPD制剂的总体迟发型超敏反应(DTH)相当;然而,DTH病变的详细组织病理学显示出独特的差异,这可能由早期分泌系统(Esx)蛋白的存在和丰度变化来解释。PPD试剂的变异性可能解释了不同人群中报告的DTH反应差异。