Poteaux Pierre, Parpinel Aline, Ripoll Chantal, Sarrazin Amélie, Galinier Richard, Brugière Sabine, Couté Yohann, Mourey Lionel, Hanington Patrick C, Gourbal Benjamin, Maveyraud Laurent, Duval David
IHPE, CNRS, IFREMER, Université de Montpellier, Université Perpignan Via Domitia, Perpignan, France.
Institut de Pharmacologie et de Biologie Structurale (IPBS), Université de Toulouse, CNRS, Université Toulouse III - Paul Sabatier (UT3), Toulouse, France.
PLoS Pathog. 2025 Jun 24;21(6):e1013225. doi: 10.1371/journal.ppat.1013225. eCollection 2025 Jun.
Biomphalysins are β-Pore Forming Toxins (β-PFT) identified in the planorbid Biomphalaria glabrata that belong to the aerolysin-like protein family. Despite potentially diverse biochemical activities, very few eukaryotic aerolysin-related proteins have been extensively studied. Most of the data refers to their discovery in genomes or to transcriptional activity. The involvement of biomphalysins in the immune response of Biomphalaria glabrata has been studied previously, especially regarding biomphalysin 1, which can bind and kill Schistosoma mansoni mother sporocysts. However, the repartition of biomphalysin 1 protein in B. glabrata has yet to be defined. The transcriptional behavior of the 22 other biomphalysin genes following immune challenge also remains uncharacterized. Therefore, herein, we investigate for the first time the tissular distribution of biomphalysin 1 (and 2) in B. glabrata by histological and cytological analyses through immunofluorescence approaches, notably unveiling unexpected tissue location that are involved in biomphalysin 1 synthesis. Structural predictions of the 23 members of the family have been updated using predictions based on aminoacyl spatial pair representation (AlphaFold2), highlighting unique features of the small lobe. In addition, mass spectrometry-based proteomic data more precisely predicted the regions of post-translational cleavage of biomphalysin 1. Transcriptional activity of the biomphalysin genes was explored, after which the plasmatic presence of the biomphalysin proteins was investigated in naive and S. mansoni-infected snails. The ability of native biomphalysin 1 (and 2) to bind several cell types was also investigated and correlated with the lytic ability of plasma toward the exposed cells, highlighting the central role occupied by biomphalysin 1 (and 2) in the humoral immunity of B. glabrata.
双脐螺溶血素是在扁卷螺双脐螺中鉴定出的β-孔形成毒素(β-PFT),属于气单胞菌溶素样蛋白家族。尽管可能具有多种生化活性,但很少有真核生物气单胞菌溶素相关蛋白得到广泛研究。大多数数据涉及它们在基因组中的发现或转录活性。此前已经研究了双脐螺溶血素在双脐螺免疫反应中的作用,特别是关于双脐螺溶血素1,它可以结合并杀死曼氏血吸虫母孢子蚴。然而,双脐螺溶血素1蛋白在双脐螺中的分布尚未明确。免疫攻击后其他22个双脐螺溶血素基因的转录行为也仍未得到表征。因此,在本文中,我们首次通过免疫荧光方法进行组织学和细胞学分析,研究双脐螺溶血素1(和2)在双脐螺中的组织分布,特别揭示了参与双脐螺溶血素1合成的意外组织位置。该家族23个成员的结构预测已使用基于氨酰基空间对表示的预测(AlphaFold2)进行更新,突出了小结构域的独特特征。此外,基于质谱的蛋白质组学数据更精确地预测了双脐螺溶血素1的翻译后切割区域。我们探索了双脐螺溶血素基因的转录活性,之后研究了未感染和感染曼氏血吸虫的蜗牛血浆中双脐螺溶血素蛋白的存在情况。还研究了天然双脐螺溶血素1(和2)与几种细胞类型结合的能力,并将其与血浆对暴露细胞的裂解能力相关联,突出了双脐螺溶血素1(和2)在双脐螺体液免疫中的核心作用。