首页> 外文期刊>The Journal of biological chemistry >Trichomonas vaginalis Lipophosphoglycan Exploits Binding to Galectin-1 and -3 to Modulate Epithelial Immunity *
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Trichomonas vaginalis Lipophosphoglycan Exploits Binding to Galectin-1 and -3 to Modulate Epithelial Immunity *

机译:<斜视> richomonas阴道脂磷酸亚磷酸磷酸磷酸磷酸酯-1和-3调节上皮免疫 * / XREF>

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Trichomoniasis is the most common non-viral sexually transmitted infection caused by the vaginotropic extracellular protozoan parasite Trichomonas vaginalis . The infection is recurrent, with no lasting immunity, often asymptomatic, and linked to pregnancy complications and risk of viral infection. The molecular mechanisms of immune evasion by the parasite are poorly understood. We demonstrate that galectin-1 and -3 are expressed by the human cervical and vaginal epithelial cells and act as pathogen-recognition receptors for the ceramide phosphoinositol glycan core (CPI-GC) of the dominant surface protozoan lipophosphoglycan (LPG). We used an in vitro model with siRNA galectin knockdown epithelial clones, recombinant galectins, clinical Trichomonas isolates, and mutant protozoan derivatives to dissect the function of galectin-1 and -3 in the context of Trichomonas infection. Galectin-1 suppressed chemokines that facilitate recruitment of phagocytes, which can eliminate extracellular protozoa (IL-8) or bridge innate to adaptive immunity (MIP-3α and RANTES (regulated on activation normal T cell expressed and secreted)). Silencing galectin-1 increased and adding exogenous galectin-1 suppressed chemokine responses to Trichomonas or CPI-GC/LPG. In contrast, silencing galectin-3 reduced IL-8 response to LPG. Live Trichomonas depleted the extracellular levels of galectin-3. Clinical isolates and mutant Trichomonas CPI-GC that had reduced affinity to galectin-3 but maintained affinity to galectin-1 suppressed chemokine expression. Thus via CPI-GC binding, Trichomonas is capable of regulating galectin bioavailability and function to the benefit of its parasitic survival. These findings suggest novel approaches to control trichomoniasis and warrant further studies of galectin-binding diversity among clinical isolates as a possible source for symptom disparity in parasitic infections.
机译:滴虫病是由阴道细胞外原生动物寄生虫Trichomonas阴道引起的最常见的非病毒性传播感染。感染是复发的,没有持久的免疫,通常是无症状的,与妊娠并发症有关,以及病毒感染的风险。寄生虫的免疫逃避的分子机制很差。我们证明了Galectin-1和-3由人宫颈和阴道上皮细胞表达,并作为主要表面原生动物脂磷酸甘油(LPG)的神经酰胺磷酸膦酸糖甘油核(CPI-GC)的病原体识别受体。我们使用SiRNA Galectin敲低上皮克隆,重组半乳糖蛋白,临床richomonas分离物和突变原生动物衍生物的体外模型,以将Galectin-1和-3的功能置于TrichoMonas感染中。 Galectin-1抑制了促进吞噬细胞募集的趋化因子,其可以消除细胞外原生动物(IL-8)或桥接天生,以适应性免疫(MIP-3α和RANTES(COMENT)表达和分泌的激活正常T细胞))。沉默的Galectin-1增加并加入外源性Galectin-1抑制了对Trichomonas或CPI-GC / LPG的趋化因子反应。相比之下,沉默的Galectin-3减少了IL-8对LPG的反应。 Live Trichomonas耗尽了Galectin-3的细胞外水平。临床分离株和突变体滴虫,其对半乳糖蛋白-3的亲和力降低但保持了与Galectin-1的亲和力抑制了趋化因子表达。因此,通过CPI-GC结合,Trichomonas能够调节Galectin生物利用度,并起作用寄生存活的益处。这些发现表明了对培养滴虫病的新方法,并担心临床分离株中的Galectin结合多样性的进一步研究作为寄生感染症状差异的可能源。

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