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整合转录组和蛋白质组分析定义了 Neospora caninum 分离株在整个速殖子裂解周期之间的显著差异。

Integrative transcriptome and proteome analyses define marked differences between Neospora caninum isolates throughout the tachyzoite lytic cycle.

机构信息

SALUVET, Animal Health Department, Faculty of Veterinary Sciences, Complutense University of Madrid, Ciudad Universitaria s/n, 28040 Madrid, Spain.

The Royal Veterinary College, Royal College Street, London NW1 0TU, United Kingdom.

出版信息

J Proteomics. 2018 May 30;180:108-119. doi: 10.1016/j.jprot.2017.11.007. Epub 2017 Nov 14.

Abstract

UNLABELLED

Neospora caninum is one of the main causes of transmissible abortion in cattle. Intraspecific variations in virulence have been widely shown among N. caninum isolates. However, the molecular basis governing such variability have not been elucidated to date. In this study label free LC-MS/MS was used to investigate proteome differences between the high virulence isolate Nc-Spain7 and the low virulence isolate Nc-Spain1H throughout the tachyzoite lytic cycle. The results showed greater differences in the abundance of proteins at invasion and egress with 77 and 62 proteins, respectively. During parasite replication, only 19 proteins were differentially abundant between isolates. The microneme protein repertoire involved in parasite invasion and egress was more abundant in the Nc-Spain1H isolate, which displays a lower invasion rate. Rhoptry and dense granule proteins, proteins related to metabolism and stress responses also showed differential abundances between isolates. Comparative RNA-Seq analyses during tachyzoite egress were also performed, revealing an expression profile of genes associated with the bradyzoite stage in the low virulence Nc-Spain1H isolate. The differences in proteome and RNA expression profiles between these two isolates reveal interesting insights into likely mechanisms involved in specific phenotypic traits and virulence in N. caninum.

SIGNIFICANCE

The molecular basis that governs biological variability in N. caninum and the pathogenesis of neosporosis has not been well-established yet. This is the first study in which high throughput technology of LC-MS/MS and RNA-Seq is used to investigate differences in the proteome and transcriptome between two well-characterized isolates. Both isolates displayed different proteomes throughout the lytic cycle and the transcriptomes also showed marked variations but were inconsistent with the proteome results. However, both datasets identified a pre-bradyzoite status of the low virulence isolate Nc-Spain1H. This study reveals interesting insights into likely mechanisms involved in virulence in N. caninum and shed light on a subset of proteins that are potentially involved in the pathogenesis of this parasite.

摘要

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刚地弓形虫是牛传染性流产的主要原因之一。在刚地弓形虫分离株中,已广泛显示出种内毒力变异。然而,迄今为止,尚未阐明决定这种可变性的分子基础。在这项研究中,使用无标签 LC-MS/MS 来研究高毒力分离株 Nc-Spain7 和低毒力分离株 Nc-Spain1H 在整个速殖子裂解周期中的蛋白质组差异。结果表明,在入侵和逸出时,蛋白质的丰度差异更大,分别为 77 和 62 个蛋白质。在寄生虫复制过程中,分离株之间只有 19 个蛋白质丰度存在差异。涉及寄生虫入侵和逸出的微线蛋白库在 Nc-Spain1H 分离株中更为丰富,该分离株显示出较低的入侵率。裂殖体和致密颗粒蛋白、与代谢和应激反应相关的蛋白也在分离株之间表现出不同的丰度。还进行了速殖子逸出期间的比较 RNA-Seq 分析,揭示了低毒力 Nc-Spain1H 分离株中与缓殖子阶段相关的基因表达谱。这两个分离株之间的蛋白质组和 RNA 表达谱差异揭示了在刚地弓形虫中特定表型特征和毒力涉及的可能机制的有趣见解。

意义

刚地弓形虫的生物学变异性和新生隐球菌病发病机制的分子基础尚未得到很好的建立。这是首次使用 LC-MS/MS 和 RNA-Seq 的高通量技术来研究两个特征明确的分离株的蛋白质组和转录组之间的差异。两个分离株在整个裂解周期中都显示出不同的蛋白质组,转录组也显示出明显的变化,但与蛋白质组结果不一致。然而,两个数据集都确定了低毒力分离株 Nc-Spain1H 的前缓殖子状态。这项研究揭示了刚地弓形虫毒力可能涉及的机制的有趣见解,并阐明了一组可能参与该寄生虫发病机制的蛋白质。

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