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对肝片形吸虫 G 蛋白偶联受体的分析鉴定了独特的门扁形动物孤儿视紫红质。

Profiling G protein-coupled receptors of Fasciola hepatica identifies orphan rhodopsins unique to phylum Platyhelminthes.

机构信息

Parasitology & Pathogen Biology, The Institute for Global Food Security, School of Biological Sciences, Queen's University Belfast, Medical Biology Centre, 97 Lisburn Road, Belfast, BT9 7BL, UK.

Parasitology & Pathogen Biology, The Institute for Global Food Security, School of Biological Sciences, Queen's University Belfast, Medical Biology Centre, 97 Lisburn Road, Belfast, BT9 7BL, UK.

出版信息

Int J Parasitol Drugs Drug Resist. 2018 Apr;8(1):87-103. doi: 10.1016/j.ijpddr.2018.01.001. Epub 2018 Feb 5.

Abstract

G protein-coupled receptors (GPCRs) are established drug targets. Despite their considerable appeal as targets for next-generation anthelmintics, poor understanding of their diversity and function in parasitic helminths has thwarted progress towards GPCR-targeted anti-parasite drugs. This study facilitates GPCR research in the liver fluke, Fasciola hepatica, by generating the first profile of GPCRs from the F. hepatica genome. Our dataset describes 147 high confidence GPCRs, representing the largest cohort of GPCRs, and the largest set of in silico ligand-receptor predictions, yet reported in any parasitic helminth. All GPCRs fall within the established GRAFS nomenclature; comprising three glutamate, 135 rhodopsin, two adhesion, five frizzled, one smoothened, and one secretin GPCR. Stringent annotation pipelines identified 18 highly diverged rhodopsins in F. hepatica that maintained core rhodopsin signatures, but lacked significant similarity with non-flatworm sequences, providing a new sub-group of potential flukicide targets. These facilitated identification of a larger cohort of 76 related sequences from available flatworm genomes, representing new members of existing groups (PROF1/Srfb, Rho-L, Rho-R, Srfa, Srfc) of flatworm-specific rhodopsins. These receptors imply flatworm specific GPCR functions, and/or co-evolution with unique flatworm ligands, and could facilitate the development of exquisitely selective anthelmintics. Ligand binding domain sequence conservation relative to deorphanised rhodopsins enabled high confidence ligand-receptor matching of seventeen receptors activated by acetylcholine, neuropeptide F/Y, octopamine or serotonin. RNA-Seq analyses showed expression of 101 GPCRs across various developmental stages, with the majority expressed most highly in the pathogenic intra-mammalian juvenile parasites. These data identify a broad complement of GPCRs in F. hepatica, including rhodopsins likely to have key functions in neuromuscular control and sensory perception, as well as frizzled and adhesion/secretin families implicated, in other species, in growth, development and reproduction. This catalogue of liver fluke GPCRs provides a platform for new avenues into our understanding of flatworm biology and anthelmintic discovery.

摘要

G 蛋白偶联受体 (GPCR) 是已确立的药物靶点。尽管它们作为下一代驱虫药的靶标具有相当大的吸引力,但由于对寄生虫蠕虫中 GPCR 的多样性和功能缺乏了解,阻碍了针对寄生虫 GPCR 的抗寄生虫药物的发展。本研究通过生成来自肝片吸虫 (Fasciola hepatica) 基因组的首个 GPCR 图谱,促进了肝片吸虫 GPCR 研究。我们的数据集描述了 147 个高可信度 GPCR,代表了 GPCR 中最大的一组,也是迄今为止报道的任何寄生虫蠕虫中最大的一组计算机预测配体-受体。所有 GPCR 都属于已建立的 GRAFS 命名法; 包括三个谷氨酸、135 个视紫红质、两个黏附、五个 frizzled、一个 smoothened 和一个 secretin GPCR。严格的注释管道在 F. hepatica 中鉴定出 18 个高度分化的视紫红质,这些视紫红质保留了核心视紫红质特征,但与非扁形虫序列没有显著相似性,为潜在的驱虫剂靶标提供了一个新的亚群。这促进了从现有扁形虫基因组中鉴定出更大的 76 个相关序列,代表了现有扁形虫特异性视紫红质组(prof1/srfb、rho-l、rho-r、srfa、srfc)的新成员。这些受体暗示了扁形虫特异性 GPCR 功能,和/或与独特的扁形虫配体共同进化,并且可以促进高度选择性驱虫剂的开发。与去孤儿化视紫红质相比,配体结合域序列保守性使得可以高度置信地匹配十七种受体的配体-受体匹配,这些受体被乙酰胆碱、神经肽 F/Y、章鱼胺或血清素激活。RNA-Seq 分析显示,101 种 GPCR 在各种发育阶段表达,其中大多数在致病性哺乳动物内幼虫寄生虫中表达最高。这些数据确定了肝片吸虫中广泛的 GPCR 组成,包括在神经肌肉控制和感觉感知中可能具有关键功能的视紫红质,以及在其他物种中与生长、发育和繁殖有关的 frizzled 和黏附/secretin 家族。该肝片吸虫 GPCR 目录为我们深入了解扁形虫生物学和驱虫剂发现提供了一个新的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/245f/6114109/1c6beb2c3573/fx1.jpg

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