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通过新孵化的幼体转录组学对 Ly6 蛋白家族进行了全面的特征描述。

characterisation of the complete Ly6 protein family in supported through transcriptomics of the newly-excysted juveniles.

机构信息

Institute of Biological, Environmental & Rural Sciences (IBERS), Aberystwyth, Ceredigion, UK.

Computational and Analytical Sciences, Rothamsted Research, Harpenden, Hertfordshire, UK.

出版信息

Mol Omics. 2022 Jan 17;18(1):45-56. doi: 10.1039/d1mo00254f.

Abstract

is one of the aetiological trematodes associated with fascioliasis, which heavily impacts food-production systems and human and animal welfare on a global scale. In the absence of a vaccine, fascioliasis control and treatment is restricted to pasture management, such as clean grazing, and a limited array of chemotherapies, to which signs of resistance are beginning to appear. Research into novel control strategies is therefore urgently required and the advent of 'omics technologies presents considerable opportunity for novel drug and vaccine target discovery. Here, interrogation of the first available newly excysted juvenile (NEJ) transcriptome revealed several protein families of current interest to parasitic flatworm vaccine research, including orthologues of mammalian complement regulator CD59 of the Ly6 family. Ly6 proteins have previously been identified on the tegument of and induced protective immunity in vaccination trials. Incorporating the recently available genome, the current work revealed 20 novel Ly6 family members in and, in parallel, significantly extended the complement from 3 to 18 members. Phylogenetic analysis revealed several distinct clades within the family, some of which are unique to trematodes. Analysis of available proteomic databases also revealed three of the newly discovered FhLy6s were present in extracellular vesicles, which have previously been prioritised in studying the host-parasite interface. The presentation of this new transcriptomic resource, in addition to the Ly6 family proteins here identified, represents a wealth of opportunity for future vaccine research.

摘要

是与片形吸虫病相关的一种病原性吸虫,它在全球范围内严重影响着粮食生产系统以及人类和动物的福利。在没有疫苗的情况下,片形吸虫病的防治和治疗仅限于牧场管理,如清洁放牧,以及一系列有限的化疗方法,但这些方法已经开始出现耐药迹象。因此,迫切需要研究新的控制策略,而“组学”技术的出现为新型药物和疫苗靶点的发现提供了巨大的机会。在这里,对首次获得的新孵化幼虫(NEJ)转录组进行了研究,揭示了几个目前对寄生扁虫疫苗研究感兴趣的蛋白质家族,包括 Ly6 家族的哺乳动物补体调节剂 CD59 的同源物。Ly6 蛋白以前曾在 的表皮上被发现,并在接种试验中诱导了保护性免疫。结合最近可用的 基因组,目前的工作在 中发现了 20 个新的 Ly6 家族成员,同时将 的补体从 3 个显著扩展到 18 个。系统发育分析显示,该家族内有几个不同的分支,其中一些分支是吸虫所特有的。对现有蛋白质组数据库的分析还揭示了新发现的 FhLy6s 中的三个存在于细胞外囊泡中,这在研究宿主-寄生虫界面时已被优先考虑。除了这里鉴定的 Ly6 家族蛋白外,该新转录组资源的呈现为未来的疫苗研究提供了丰富的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86c9/8763315/58d7f21a718e/d1mo00254f-f1.jpg

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