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5-氮杂胞苷(5-AzaC)对曼氏血吸虫的抗生育作用与转录、翻译和干细胞活性的失调有关。

The anti-fecundity effect of 5-azacytidine (5-AzaC) on Schistosoma mansoni is linked to dis-regulated transcription, translation and stem cell activities.

机构信息

Institute of Biological, Environmental and Rural Sciences (IBERS), Edward Llwyd Building, Aberystwyth University, Aberystwyth SY23 3DA, United Kingdom.

Department of Cell and Developmental Biology, John Innes Centre, Norwich Research Park, Norwich NR4 7UH, United Kingdom.

出版信息

Int J Parasitol Drugs Drug Resist. 2018 Aug;8(2):213-222. doi: 10.1016/j.ijpddr.2018.03.006. Epub 2018 Apr 1.

Abstract

Uncontrolled host immunological reactions directed against tissue-trapped eggs precipitate a potentially lethal, pathological cascade responsible for schistosomiasis. Blocking schistosome egg production, therefore, presents a strategy for simultaneously reducing immunopathology as well as limiting disease transmission in endemic or emerging areas. We recently demonstrated that the ribonucleoside analogue 5-azacytidine (5-AzaC) inhibited Schistosoma mansoni oviposition, egg maturation and ovarian development. While these anti-fecundity effects were associated with a loss of DNA methylation, other molecular processes affected by 5-AzaC were not examined at the time. By comparing the transcriptomes of 5-AzaC-treated females to controls, we provide evidence that this ribonucleoside analogue also modulates other crucial aspects of schistosome egg-laying biology. For example, S. mansoni gene products associated with amino acid-, carbohydrate-, fatty acid-, nucleotide- and tricarboxylic acid (TCA)- homeostasis are all dysregulated in 5-AzaC treated females. To validate the metabolic pathway most significantly affected by 5-AzaC, amino acid metabolism, nascent protein synthesis was subsequently quantified in adult schistosomes. Here, 5-AzaC inhibited this process by 68% ±16.7% (SEM) in male- and 81% ±4.8% (SEM) in female-schistosomes. Furthermore, the transcriptome data indicated that adult female stem cells were also affected by 5-AzaC. For instance, 40% of transcripts associated with proliferating schistosome cells were significantly down-regulated by 5-AzaC. This finding correlated with a considerable reduction (95%) in the number of 5-ethynyl-2'-deoxyuridine (EdU) positive cells found in 5-AzaC-treated females. In addition to protein coding genes, the effect that 5-AzaC had on repetitive element expression was also assessed. Here, 46 repeats were found differentially transcribed between 5-AzaC-treated and control females with long terminal repeat (LTR) and DNA transposon classes being amongst the most significant. This study demonstrates that the anti-fecundity activity of 5-AzaC affects more than just DNA methylation in schistosome parasites. Further characterisation of these processes may reveal novel targets for schistosomiasis control.

摘要

未受控制的宿主免疫反应针对组织中被困的虫卵引发了潜在的致命性病理级联反应,这是血吸虫病的病因。因此,阻止血吸虫产卵为同时减少免疫病理学和限制流行地区或新出现地区的疾病传播提供了一种策略。我们最近证明,核苷类似物 5-氮杂胞苷(5-AzaC)抑制曼氏血吸虫产卵、卵成熟和卵巢发育。虽然这些抗生殖作用与 DNA 甲基化丧失有关,但当时并未检查 5-AzaC 影响的其他分子过程。通过比较 5-AzaC 处理的雌性与对照的转录组,我们提供的证据表明,这种核苷类似物还调节了血吸虫产卵生物学的其他关键方面。例如,与氨基酸、碳水化合物、脂肪酸、核苷酸和三羧酸(TCA)稳态相关的曼氏血吸虫基因产物在 5-AzaC 处理的雌性中均失调。为了验证受 5-AzaC 影响最显著的代谢途径,随后在成年血吸虫中定量测定了氨基酸代谢和新生蛋白质合成。在此,5-AzaC 抑制了雄性血吸虫中的这一过程 68%±16.7%(SEM),雌性血吸虫中则抑制了 81%±4.8%(SEM)。此外,转录组数据表明,成年雌性干细胞也受到 5-AzaC 的影响。例如,40%与增殖性血吸虫细胞相关的转录本被 5-AzaC 显著下调。这一发现与在 5-AzaC 处理的雌性中发现的 5-乙炔基-2'-脱氧尿苷(EdU)阳性细胞数量减少 95%相关。除了蛋白质编码基因外,还评估了 5-AzaC 对重复元件表达的影响。在此,在 5-AzaC 处理的雌性与对照雌性之间发现了 46 个重复转录本存在差异,长末端重复(LTR)和 DNA 转座子类是最显著的重复转录本。本研究表明,5-AzaC 的抗生殖活性不仅影响血吸虫寄生虫中的 DNA 甲基化。进一步研究这些过程可能揭示血吸虫病控制的新靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb08/6039303/cffc61c6b8e3/fx1.jpg

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