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Delineating distinct heme-scavenging and -binding functions of domains in MF6p/helminth defense molecule (HDM) proteins from parasitic flatworms

机译:描绘寄生扁虫的MF6p /蠕虫防御分子(HDM)蛋白中结构域的独特的血红素清除和结合功能

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摘要

MF6p/FhHDM-1 is a small protein secreted by the parasitic flatworm (trematode) Fasciola hepatica that belongs to a broad family of heme-binding proteins (MF6p/helminth defense molecules (HDMs)). MF6p/HDMs are of interest for understanding heme homeostasis in trematodes and as potential targets for the development of new flukicides. Moreover, interest in these molecules has also increased because of their immunomodulatory properties. Here we have extended our previous findings on the mechanism of MF6p/HDM-heme interactions and mapped the protein regions required for heme binding and for other biological functions. Our data revealed that MF6p/FhHDM-1 forms high-molecular-weight complexes when associated with heme and that these complexes are reorganized by a stacking procedure to form fibril-like and granular nanostructures. Furthermore, we showed that MF6p/FhHDM-1 is a transitory heme-binding protein as protein·heme complexes can be disrupted by contact with an apoprotein (e.g. apomyoglobin) with higher affinity for heme. We also demonstrated that (i) the heme-binding region is located in the MF6p/FhHDM-1 C-terminal moiety, which also inhibits the peroxidase-like activity of heme, and (ii) MF6p/HDMs from other trematodes, such as Opisthorchis viverrini and Paragonimus westermani, also bind heme. Finally, we observed that the N-terminal, but not the C-terminal, moiety of MF6p/HDMs has a predicted structural analogy with cell-penetrating peptides and that both the entire protein and the peptide corresponding to the N-terminal moiety of MF6p/FhHDM-1 interact in vitro with cell membranes in hemin-preconditioned erythrocytes. Our findings suggest that MF6p/HDMs can transport heme in trematodes and thereby shield the parasite from the harmful effects of heme.
机译:MF6p / FhHDM-1是由寄生扁虫(吸虫)Fasciola hepatica分泌的一种小蛋白,属于广泛的血红素结合蛋白家族(MF6p /蠕虫防御分子(HDMs))。 MF6p / HDMs对于了解吸虫中血红素的稳态以及作为开发新型杀真菌剂的潜在目标非常重要。此外,由于它们的免疫调节特性,对这些分子的兴趣也增加了。在这里,我们扩展了我们先前关于MF6p / HDM-血红素相互作用机制的发现,并绘制了血红素结合和其他生物学功能所需的蛋白质区域。我们的数据显示,MF6p / FhHDM-1与血红素结合时会形成高分子量复合物,并且这些复合物会通过堆积程序重组以形成原纤维状和颗粒状的纳米结构。此外,我们显示MF6p / FhHDM-1是一种暂时性的血红素结合蛋白,因为蛋白质·血红素复合物可通过与对血红素具有更高亲和力的载脂蛋白(例如,肌红蛋白)接触而被破坏。我们还证明了(i)血红素结合区位于MF6p / FhHDM-1 C末端部分,它也抑制了血红素的过氧化物酶样活性,以及​​(ii)来自其他吸虫的MF6p / HDMs,例如Viistrchis viverrini和Paragonimus westermani也与血红素结合。最后,我们观察到MF6p / HDM的N端而非C端部分具有与穿透细胞的肽类似的预测结构,并且整个蛋白质和对应于MF6p N端部分的肽/ FhHDM-1在体外与血红素预处理的红细胞中的细胞膜相互作用。我们的发现表明,MF6p / HDM可以在线虫中运输血红素,从而使寄生虫免受血红素的有害影响。

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