Department of Microbiology, Immunology and Molecular Genetics, University of California Los Angeles, Los Angeles, California, United States of America.
PLoS One. 2011 Apr 4;6(4):e18383. doi: 10.1371/journal.pone.0018383.
Neospora caninum is an important veterinary pathogen that causes abortion in cattle and neuromuscular disease in dogs. Neospora has also generated substantial interest because it is an extremely close relative of the human pathogen Toxoplasma gondii, yet does not appear to infect humans. While for Toxoplasma there are a wide array of molecular tools and reagents available for experimental investigation, relatively few reagents exist for Neospora. To investigate the unique biological features of this parasite and exploit the recent sequencing of its genome, we have used an organelle isolation and monoclonal antibody approach to identify novel organellar proteins and develop a wide array of probes for subcellular localization. We raised a panel of forty-six monoclonal antibodies that detect proteins from the rhoptries, micronemes, dense granules, inner membrane complex, apicoplast, mitochondrion and parasite surface. A subset of the proteins was identified by immunoprecipitation and mass spectrometry and reveal that we have identified and localized many of the key proteins involved in invasion and host interaction in Neospora. In addition, we identified novel secretory proteins not previously studied in any apicomplexan parasite. Thus, this organellar monoclonal antibody approach not only greatly enhances the tools available for Neospora cell biology, but also identifies novel components of the unique biological characteristics of this important veterinary pathogen.
刚地弓形虫是一种重要的兽医病原体,可导致牛流产和犬神经肌肉疾病。刚地弓形虫还引起了人们的极大兴趣,因为它是人类病原体弓形虫的近亲,但似乎不会感染人类。虽然对于弓形虫有广泛的分子工具和试剂可用于实验研究,但对于刚地弓形虫来说,可用的试剂相对较少。为了研究这种寄生虫的独特生物学特征,并利用其最近的基因组测序,我们使用细胞器分离和单克隆抗体方法来鉴定新的细胞器蛋白,并开发了广泛的亚细胞定位探针。我们制备了 46 种单克隆抗体,可检测出来自棒状体、微线体、致密颗粒、内膜复合物、类线粒体和寄生虫表面的蛋白。通过免疫沉淀和质谱鉴定了其中一部分蛋白,结果表明我们已经鉴定并定位了刚地弓形虫中许多参与入侵和宿主相互作用的关键蛋白。此外,我们还鉴定出了以前在任何顶复门寄生虫中都没有研究过的新型分泌蛋白。因此,这种细胞器单克隆抗体方法不仅极大地增强了刚地弓形虫细胞生物学的可用工具,而且还鉴定出了这种重要兽医病原体独特生物学特征的新型组成部分。