Menezes Camila Braz, Durgante Juliano, de Oliveira Rafael Rodrigues, Dos Santos Victor Hugo Jacks Mendes, Rodrigues Luiz Frederico, Garcia Solange Cristina, Dos Santos Odelta, Tasca Tiana
Laboratório de Pesquisa em Parasitologia, Faculdade de Farmácia, Universidade Federal do Rio Grande do Sul, Av. Ipiranga 2752, 90610-000 Porto Alegre, RS, Brazil.
Laboratório de Toxicologia, Faculdade de Farmácia, Universidade Federal do Rio Grande do Sul, Av. Ipiranga 2752, 90610-000 Porto Alegre, RS, Brazil.
Mol Biochem Parasitol. 2016 May;207(1):10-8. doi: 10.1016/j.molbiopara.2016.04.003. Epub 2016 May 2.
Trichomonas vaginalis is the aethiologic agent of trichomoniasis, the most common non-viral sexually transmitted disease in the world. The purinergic signaling pathway is mediated by extracellular nucleotides and nucleosides that are involved in many biological effects as neurotransmission, immunomodulation and inflammation. Extracellular nucleotides can be hydrolyzed by a family of enzymes known as ectonucleotidases including the ecto-nucleoside triphosphate diphosphohydrolases (E-NTPDases) family which hydrolyses nucleosides triphosphate and diphosphate as preferential substrates and ecto-5'-nucleotidase which catalyzes the conversion of monophosphates into nucleosides. In T. vaginalis the E-NTPDase and ecto-5'-nucleotidase activities upon adenine nucleotides have already been characterized in intact trophozoites but little is known concerning guanine nucleotides and nucleoside. These enzymes may exert a crucial role on nucleoside generation, providing the purine sources for the synthesis de novo of these essential nutrients, sustaining parasite growth and survival. In this study, we investigated the hydrolysis profile of guanine-related nucleotides and nucleoside in intact trophozoites from long-term-grown and fresh clinical isolates of T. vaginalis. Knowing that guanine nucleotides are also substrates for T. vaginalis ectoenzymes, we evaluated the profile of nucleotides consumption and guanosine uptake in trophozoites submitted to a serum limitation condition. Results show that guanine nucleotides (GTP, GDP, GMP) were substrates for T. vaginalis ectonucleotidases, with expected kinetic parameters for this enzyme family. Different T. vaginalis isolates (two from the ATCC and nine fresh clinical isolates) presented a heterogeneous hydrolysis profile. The serum culture condition increased E-NTPDase and ecto-5'-nucleotidase activities with high consumption of extracellular GTP generating enhanced GDP, GMP and guanosine levels as demonstrated by HPLC, with final accumulation of the nucleoside. The transcript levels of the five TvNTPDases gene sequences were analyzed by qRT-PCR and the highest gene expressions were found for TvNTPDase 2 and 4. The extracellular guanosine uptake was observed as (13C)GTP nucleotide into parasite DNA and it was lower than that observed for adenosine, labeled as (13C)ATP. These findings indicate the T. vaginalis preference for adenosine uptake and the accumulation of guanosine in the extracellular milieu, corroborating with HPLC data. Our data demonstrate, for the first time, the cascade of guanine nucleotides in T. vaginalis and open possibilities on the study of guanine-related purines other than the classical intracellular activity of G proteins for signal transduction.
阴道毛滴虫是滴虫病的病原体,滴虫病是世界上最常见的非病毒性性传播疾病。嘌呤能信号通路由细胞外核苷酸和核苷介导,它们参与许多生物学效应,如神经传递、免疫调节和炎症。细胞外核苷酸可被一类称为外核苷酸酶的酶水解,包括外核苷三磷酸二磷酸水解酶(E-NTPDases)家族,该家族优先水解核苷三磷酸和二磷酸,以及外5'-核苷酸酶,它催化单磷酸转化为核苷。在阴道毛滴虫中,完整滋养体中腺嘌呤核苷酸的E-NTPDase和外5'-核苷酸酶活性已经得到表征,但关于鸟嘌呤核苷酸和核苷的了解甚少。这些酶可能在核苷生成中发挥关键作用,为这些必需营养素的从头合成提供嘌呤来源,维持寄生虫的生长和存活。在本研究中,我们研究了长期培养和新鲜临床分离的阴道毛滴虫完整滋养体中鸟嘌呤相关核苷酸和核苷的水解情况。鉴于鸟嘌呤核苷酸也是阴道毛滴虫外酶的底物,我们评估了处于血清限制条件下的滋养体中核苷酸消耗和鸟苷摄取的情况。结果表明,鸟嘌呤核苷酸(GTP、GDP、GMP)是阴道毛滴虫外核苷酸酶的底物,具有该酶家族预期的动力学参数。不同的阴道毛滴虫分离株(2株来自美国典型培养物保藏中心,9株为新鲜临床分离株)呈现出异质的水解情况。血清培养条件增加了E-NTPDase和外5'-核苷酸酶的活性,细胞外GTP大量消耗,产生了更高水平的GDP、GMP和鸟苷,这通过高效液相色谱法得以证明,最终核苷积累。通过qRT-PCR分析了五个TvNTPDases基因序列的转录水平,发现TvNTPDase 2和4的基因表达最高。观察到细胞外鸟苷摄取为(13C)GTP核苷酸进入寄生虫DNA,且低于标记为(13C)ATP的腺苷的摄取。这些发现表明阴道毛滴虫对腺苷摄取的偏好以及鸟苷在细胞外环境中的积累,这与高效液相色谱数据一致。我们的数据首次证明了阴道毛滴虫中鸟嘌呤核苷酸的级联反应,并为研究除经典的G蛋白细胞内信号转导活性之外的鸟嘌呤相关嘌呤开辟了可能性。