Lee Eung-Goo, Na Byoung-Kuk, Bae Young-An, Kim Seon-Hee, Je Eun-Young, Ju Jeong-Won, Cho Shin-Hyeong, Kim Tong-Soo, Kang Shin-Yong, Cho Seung-Yull, Kong Yoon
Department of Molecular Parasitology and Center for Molecular Medicine, Samsung Biomedical Research Institute and Sungkyunkwan University School of Medicine, Suwon, Korea.
Proteomics. 2006 Feb;6(4):1290-300. doi: 10.1002/pmic.200500399.
Paragonimus westermani causes inflammatory lung disease in humans. The parasite excretes a host of biologically active molecules, which are thought to be involved in pathophysiological and immunological events during infection. Analyses of the 2-DE protein profiles of the excretory-secretory products (ESP) of adult P. westermani revealed approximately 147 protein spots, at least 15 of which were identified as cysteine proteases (CPs), at pHs between 4.5 and 8.5, and molecular weights (MWs) between 27 and 35 kDa. An additional three CPs (designated as PwCP-3, -8 and -11) were newly recognized by TOF/TOF MS. Their molecular biological information, which shared a high level sequence homology, was elucidated. The majority of the CPs reacted strongly with sera from paragonimiasis patients. When we observed the chronological changes in the antibody responses of the respective CPs against canine sera collected serially at 1, 3, 5, 7, 11 and 14 wk after experimental infection, these molecules exhibited a multiplicity of distinct immune recognition patterns. Our results clearly showed that P. westermani adult ESP were principally composed of excretory-secretory CPs, and that these CPs may exert effects not only on host tissue degradation and nutrient uptake, but also on the immune-regulating cells via synergistic and independent interactions.
卫氏并殖吸虫可导致人类发生炎症性肺部疾病。该寄生虫会分泌大量生物活性分子,这些分子被认为参与了感染过程中的病理生理和免疫反应。对卫氏并殖吸虫成虫排泄分泌产物(ESP)的双向电泳蛋白质图谱分析显示,在pH值4.5至8.5、分子量(MW)27至35 kDa范围内,大约有147个蛋白点,其中至少15个被鉴定为半胱氨酸蛋白酶(CPs)。通过飞行时间串联质谱(TOF/TOF MS)新识别出另外三种CPs(命名为PwCP - 3、- 8和- 11)。阐明了它们具有高度序列同源性的分子生物学信息。大多数CPs与肺吸虫病患者血清发生强烈反应。当我们观察在实验感染后第1、3、5、7、11和14周连续采集的犬血清中,各CPs抗体反应的时间变化时,这些分子呈现出多种不同的免疫识别模式。我们的结果清楚地表明,卫氏并殖吸虫成虫ESP主要由排泄分泌CPs组成,并且这些CPs不仅可能对宿主组织降解和营养摄取产生影响,还可能通过协同和独立相互作用对免疫调节细胞发挥作用。