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曼氏血吸虫培养童虫的蛋白质合成与释放

Protein synthesis and release by cultured schistosomula of Schistosoma mansoni.

作者信息

Harrop R, Wilson R A

机构信息

Department of Biology, University of York, Heslington, York.

出版信息

Parasitology. 1993 Sep;107 ( Pt 3):265-74. doi: 10.1017/s0031182000079245.

DOI:10.1017/s0031182000079245
PMID:8233590
Abstract

The lung schistosomulum of Schistosoma mansoni is the target of protective immunity in mice singly vaccinated with irradiated cercariae. Since the effector responses are T cell-mediated, their initiation requires the release of antigens from the intact parasite. We have used the technique of biosynthetic labelling with [35S]methionine, before and after transformation of the cercariae, to analyse the kinetics of protein synthesis and release by the schistosomulum. In addition, the proteins present in the soluble fraction of the parasite and those released during in vitro culture have been characterized. During a 7-day culture period schistosomula derived from labelled cercariae lost proteins most rapidly within the first 3 h after transformation. Two proteins of molecular weight 61 and 20 kDa were dominant and may correspond to areas of proteolytic activity. Analysis of the rate of protein synthesis of schistosomula labelled after transformation revealed four different phases, which may relate to the developmental processes occurring in vivo. During the first 24 h, synthesis was very low, increasing to a plateau and then rising to a peak at day 8; therefore the rate declined rapidly. Whilst some stage-specific synthesis of proteins was detected in the soluble fractions of the parasite bodies, the pattern of proteins released by cultured larvae was remarkably uniform. At least 15 proteins were detected by autoradiography with bands at 61, 45 and 20 kDa being particularly prominent. These proteins merit further study as potential mediators of the protective immune response.

摘要

曼氏血吸虫的肺期童虫是单独接种辐照尾蚴的小鼠体内保护性免疫的靶标。由于效应反应是由T细胞介导的,其启动需要完整寄生虫释放抗原。我们利用[35S]甲硫氨酸进行生物合成标记技术,在尾蚴转化前后分析童虫蛋白质合成和释放的动力学。此外,还对寄生虫可溶性部分中存在的蛋白质以及体外培养过程中释放的蛋白质进行了表征。在7天的培养期内,源自标记尾蚴的童虫在转化后的最初3小时内蛋白质丢失最快。两种分子量分别为61 kDa和20 kDa的蛋白质占主导地位,可能对应于蛋白水解活性区域。对转化后标记的童虫蛋白质合成速率的分析揭示了四个不同阶段,这可能与体内发生的发育过程有关。在最初的24小时内,合成非常低,随后增加到一个平台期,然后在第8天升至峰值;因此速率迅速下降。虽然在虫体的可溶性部分检测到了一些阶段特异性的蛋白质合成,但培养幼虫释放的蛋白质模式非常一致。通过放射自显影检测到至少15种蛋白质,其中61 kDa、45 kDa和20 kDa的条带尤为突出。这些蛋白质作为保护性免疫反应的潜在介质值得进一步研究。

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