TvLEGU-1 and TvLEGU-2 biomarkers for trichomoniasis are legumain-like cysteine peptidases secreted in vitro in a time-dependent manner.

Frontiers in parasitology Pub Date : 2025-03-05 eCollection Date: 2025-01-01 DOI:10.3389/fpara.2025.1546468
Esly Alejandra Euceda-Padilla, Miriam Guadalupe Mateo-Cruz, Jaime Ortega-López, Rossana Arroyo
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Abstract

Trichomonas vaginalis is the causative agent of trichomoniasis, the most prevalent neglected parasitic sexually transmitted infection worldwide. Cysteine peptidases (CPs) are the most abundant proteins in the parasite degradome. Some CPs are virulence factors involved in trichomonal pathogenesis, cytoadherence, hemolysis, and cytotoxicity. Few are immunogenic and are found in the vaginal secretions of patients with trichomoniasis. Legumains are CPs of the C13 family of clan CD. T. vaginalis has 10 genes encoding legumain-like peptidases, and TvLEGU-1 and TvLEGU-2 have been characterized. Both are immunogenic and found in the vaginal secretions of patients with trichomoniasis that could be considered as potential biomarkers. Thus, our goal was to evaluate the effects of glucose on the proteolytic activity and secretion processes of TvLEGU-1 and TvLEGU-2. We performed in vitro secretion assays using different glucose concentrations, examined the presence and proteolytic activity of secreted legumains by Western blot and spectrofluorometry assays, and analyzed the localization of TvLEGU-1 and TvLEGU-2 in the parasites by indirect immunofluorescence. Our results show that TvLEGU-1 and TvLEGU-2 were secreted in vitro in a time-dependent manner and had legumain-like proteolytic activity that could contribute to parasite pathogenesis, supporting their relevance during infection and potential as trichomoniasis biomarkers.

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滴虫病的生物标志物TvLEGU-1和TvLEGU-2是体外分泌的豆科样半胱氨酸肽酶,具有时间依赖性。
阴道毛滴虫是滴虫病的病原体,滴虫病是世界上最普遍的被忽视的寄生虫性传播感染。半胱氨酸肽酶(CPs)是寄生虫降解酶中最丰富的蛋白质。一些CPs是涉及滴虫发病、细胞粘附、溶血和细胞毒性的毒力因子。很少有免疫原性的,在滴虫病患者的阴道分泌物中发现。豆科蛋白是CD科C13家族的CPs。阴道绦虫有10个编码豆科蛋白样肽酶的基因,其中TvLEGU-1和TvLEGU-2已被鉴定。两者都具有免疫原性,可在滴虫病患者的阴道分泌物中发现,可被视为潜在的生物标志物。因此,我们的目的是评估葡萄糖对TvLEGU-1和TvLEGU-2蛋白水解活性和分泌过程的影响。采用不同葡萄糖浓度对其体外分泌进行检测,采用Western blot和荧光光谱法检测其分泌的豆科蛋白的存在和蛋白水解活性,采用间接免疫荧光法分析其在寄生虫体内的定位。我们的研究结果表明,TvLEGU-1和TvLEGU-2在体外以时间依赖性的方式分泌,并具有豆类样蛋白水解活性,可能有助于寄生虫的发病机制,支持它们在感染期间的相关性和作为滴虫病生物标志物的潜力。
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