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原生动物寄生虫火鸡组织滴虫中氢化酶体的首次分子特征分析。

First molecular characterisation of hydrogenosomes in the protozoan parasite Histomonas meleagridis.

作者信息

Mazet Muriel, Diogon Marie, Alderete John F, Vivarès Christian P, Delbac Frédéric

机构信息

Equipe Parasitologie Moléculaire et Cellulaire, LBP, UMR CNRS 6023, Université Blaise Pascal, 24 Avenue des Landais, 63177 Aubière Cedex, France.

出版信息

Int J Parasitol. 2008 Feb;38(2):177-90. doi: 10.1016/j.ijpara.2007.06.006. Epub 2007 Jul 26.

Abstract

Histomonas meleagridis is a trichomonad species that undergoes a flagellate-to-amoeba transformation during tissue invasion and causes a serious disease in gallinaceous birds (blackhead disease or histomoniasis). Living in the avian cecum, the flagellated form can be grown in vitro in the presence of an ill-defined bacterial flora. Its cytoplasm harbours numerous spherical bodies which structurally resemble hydrogenosomes. To test whether these organelles may be involved in anaerobic metabolism, we undertook the identification of H. meleagridis genes encoding some potentially conserved hydrogenosomal enzymes. The strategy was based on several PCR amplification steps using primers designed from available sequences of the phylogenetically-related human parasite Trichomonas vaginalis. We first obtained a C-terminal sequence of an iron-hydrogenase homologue (Hm_HYD) with typical active site signatures (H-cluster domain). Immunoelectron microscopy with anti-Hm_HYD polyclonal antibodies showed specific gold labelling of electron-dense organelles, thus confirming their hydrogenosomal nature. The whole genes encoding a malic enzyme (Hm_ME) and the alpha-subunit of a succinyl coenzyme A synthetase (Hm_alpha-SCS) were then identified. Short N-terminal presequences for hydrogenosomal targeting were predicted in both proteins. Anti-Hm_ME and anti-Hm_alpha-SCS antisera provided immunofluorescence staining patterns of H. meleagridis cytoplasmic granules similar to those observed with anti-Hm_HYD antiserum or mAb F5.2 known to react with T. vaginalis hydrogenosomes. Hm_ME, Hm_alpha-SCS and Hm_HYD were also detected as reactive bands on immunoblots of proteins from purified hydrogenosomes. Interestingly, anti-Hm_alpha-SCS staining of the cell surface in non-permeabilised parasites suggests a supplementary role for SCS in cytoadherence, as previously demonstrated in T. vaginalis.

摘要

火鸡组织滴虫是一种毛滴虫,在组织侵袭过程中会经历鞭毛虫到阿米巴的转变,并在鸡形目鸟类中引发严重疾病(黑头病或组织滴虫病)。鞭毛虫形式的火鸡组织滴虫生活在禽类盲肠中,在存在不明确细菌菌群的情况下可在体外培养。其细胞质中含有许多球形小体,在结构上类似于氢化酶体。为了测试这些细胞器是否可能参与厌氧代谢,我们对编码一些潜在保守氢化酶体酶的火鸡组织滴虫基因进行了鉴定。该策略基于几个PCR扩增步骤,使用从系统发育相关的人类寄生虫阴道毛滴虫的可用序列设计的引物。我们首先获得了具有典型活性位点特征(H-簇结构域)的铁氢化酶同源物(Hm_HYD)的C末端序列。用抗Hm_HYD多克隆抗体进行的免疫电子显微镜显示电子致密细胞器有特异性金标记,从而证实了它们的氢化酶体性质。然后鉴定了编码苹果酸酶(Hm_ME)和琥珀酰辅酶A合成酶α亚基(Hm_alpha-SCS)的完整基因。在这两种蛋白质中都预测到了用于氢化酶体靶向的短N末端前导序列。抗Hm_ME和抗Hm_alpha-SCS抗血清提供了火鸡组织滴虫细胞质颗粒的免疫荧光染色模式,类似于用已知与阴道毛滴虫氢化酶体反应的抗Hm_HYD抗血清或单克隆抗体F5.2观察到的模式。Hm_ME、Hm_alpha-SCS和Hm_HYD也在纯化的氢化酶体蛋白质的免疫印迹上被检测为反应条带。有趣的是,在未通透的寄生虫中对细胞表面进行抗Hm_alpha-SCS染色表明SCS在细胞黏附中具有补充作用,正如先前在阴道毛滴虫中所证明的那样。

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