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首页> 外文期刊>Folia parasitologica >Schistosoma mansoni glyceraldehyde 3-phosphate dehydrogenase is a lung-stage schistosomula surface membrane antigen
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Schistosoma mansoni glyceraldehyde 3-phosphate dehydrogenase is a lung-stage schistosomula surface membrane antigen

机译:曼氏血吸虫甘油醛3-磷酸脱氢酶是肺阶段血吸虫表面膜抗原

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摘要

We have previously reported that Schistosoma mansoni larvae emerging from host lung at pH 7.5-7.8 and then fixed with diluted formaldehyde (HCHO) readily bind radiation-attenuated cercariae (RA) vaccine serum antibodies, as assessed by indirect membrane immunofluorescence (IF). Here we show that S. mansoni schistosomula emerging from lung pieces under 5% CO2 (pH &=7.3) readily bind RA vaccine serum antibodies, provided they have been incubated for 12 h at pH 7.5-7.8 in foetal calf serum-free RPMI medium, and fixed with diluted HCHO. Ex vivo larvae exposed during incubation to GW4869, a specific inhibitor of tegument-bound, neutral sphingomyelinase (nSMase) displayed significantly diminished binding of RA vaccine serum antibodies, thus suggesting that nSMase activity at pH &=7.5 leads to exposure of lung-stage larvae surface membrane antigens to specific antibody detection. More importantly, ex vivo larvae readily bound antibodies directed to dipeptidic multiple antigen peptide constructs, based on S. mansoni-specific sequences in S. mansoni glyceraldehyde 3-phosphate dehydrogenase (SG3PDH). Lung-stage schistosomula IF reactivity was diminished following antiserum absorption with recombinant SG3PDH. The data together indicate that intact ex vivo, as well as, 5-day-old in vitro-grown larvae express SG3PDH on their surface membrane. The findings are discussed in relation to the importance of surface membrane proteins as candidate vaccine antigens.
机译:我们以前曾报道过,曼氏血吸虫幼虫从宿主肺中pH 7.5-7.8出现,然后用稀释甲醛(HCHO)固定,可以很容易地结合放射衰减的尾c(RA)疫苗血清抗体,如通过间接膜免疫荧光(IF)评估的那样。在这里,我们显示了在5%CO2(pH <== 7.3)下从肺片中出现的曼氏血吸虫血吸虫容易结合RA疫苗血清抗体,只要它们已在胎牛无血清RPMI中在pH 7.5-7.8下孵育了12小时培养基,并用稀释的HCHO固定。在与GW4869(一种结合有肠膜的中性鞘磷脂酶(nSMase)的特异性抑制剂)孵育期间暴露的离体幼虫显示出RA疫苗血清抗体的结合显着减少,因此表明pH≥7.5时nSMase活性导致肺部暴露幼虫表面膜抗原可特异性检测抗体。更重要的是,基于曼氏葡萄球菌甘油醛3-磷酸脱氢酶(SG3PDH)中的曼氏葡萄球菌特异性序列,离体幼虫容易结合针对二肽多抗原肽构建体的抗体。重组SG3PDH吸收抗血清后,肺阶段血吸虫IF反应性降低。数据一起表明完整的离体以及5天大的体外生长幼虫在其表面膜上表达SG3PDH。讨论了有关表面膜蛋白作为候选疫苗抗原的重要性的发现。

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