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肝片形吸虫 Sigma 类谷胱甘肽转移酶 1 的 X 射线结构揭示了二硫键,以支持其在胃肠环境中的稳定性。

X-ray structure of Fasciola hepatica Sigma class glutathione transferase 1 reveals a disulfide bond to support stability in gastro-intestinal environment.

机构信息

Henry Wellcome Building for Biocatalysis, Biosciences, College of Life and Environmental Sciences, University of Exeter, Stocker Road, Exeter, EX4 4QD, UK.

Liverpool School of Tropical Medicine, Liverpool, Pembroke Place, L3 5QA, UK.

出版信息

Sci Rep. 2019 Jan 29;9(1):902. doi: 10.1038/s41598-018-37531-5.

Abstract

Sigma class GST (Prostaglandin D synthase), FhGST-S1, is present in the excretory-secretory products (ES) of the liver fluke parasite Fasciola hepatica as cargo of extracellular vesicles (EVs) released by the parasite. FhGST-S1 has a well characterised role in the modulation of the immune response; a key fluke intercession that allows for establishment and development within their hosts. We have resolved the three-dimensional structure of FhGST-S1 in complex with its co-factor glutathione, in complex with a glutathione-cysteine adduct, and in a glutathione disulfide complex in order to initiate a research pipeline to mechanistically understand how FhGST-S1 functions within the host environment and to rationally design selective inhibitors. The overall fold of FhGST-S1 shows high structural similarity to other Sigma class GSTs. However, a unique interdomain disulfide bond was found in the FhGST-S1 which could stabilise the structure within the host gastro-intestinal environment. The position of the two domains of the protein with respect to each other is seen to be crucial in the formation of the active site cleft of the enzyme. The interdomain disulfide bond raises the possibility of oxidative regulation of the active site of this GST protein.

摘要

Sigma 类 GST(前列腺素 D 合酶),FhGST-S1,存在于肝片吸虫寄生虫 Fasciola hepatica 的分泌产物(ES)中,作为寄生虫释放的细胞外囊泡(EV)的货物。FhGST-S1 在调节免疫反应中具有明确的作用;这是一个关键的吸虫干预措施,允许在其宿主中建立和发展。我们已经解析了 FhGST-S1 与辅因子谷胱甘肽、与谷胱甘肽半胱氨酸加合物以及与谷胱甘肽二硫化物复合物的三维结构,以启动一个研究管道,从机制上了解 FhGST-S1 在宿主环境中的功能,并合理设计选择性抑制剂。FhGST-S1 的整体折叠显示出与其他 Sigma 类 GST 高度的结构相似性。然而,在 FhGST-S1 中发现了一个独特的域间二硫键,它可以稳定在宿主胃肠道环境中的结构。蛋白质的两个结构域相对于彼此的位置对于酶的活性位点裂缝的形成至关重要。域间二硫键增加了这种 GST 蛋白的活性位点氧化调节的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a81d/6351632/0d56b35a1045/41598_2018_37531_Fig1_HTML.jpg

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