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旋毛虫肌球蛋白补体 C1q 结合位点的定位。

Mapping of the complement C1q binding site on Trichinella spiralis paramyosin.

机构信息

Department of Medical Microbiology and Parasitology, School of Basic Medical Sciences, Capital Medical University, Beijing, China.

Department of Pediatrics, National School of Tropical Medicine, Baylor College of Medicine, Houston, Texas, USA.

出版信息

Parasit Vectors. 2018 Dec 27;11(1):666. doi: 10.1186/s13071-018-3258-x.

Abstract

BACKGROUND

Trichinella spiralis is a tissue-dwelling parasite has developed the ability to evade the host immune attack to establish parasitism in a host. One of the strategies evolved by the nematode is to produce proteins that immunomodulate the host immune system. TsPmy is a paramyosin secreted by T. spiralis on the surface of larvae and adult worms that can interact with complement components C1q and C8/C9 to compromise their activation and functions. To better understand the mechanism of TsPmy involved in the C1q inactivation and immune evasion, the C1q-binding site on TsPmy was investigated.

METHODS

The TsPmy C1q-binding site was investigated by sequential narrow-down fragment expression in bacteria and peptide binding screening. C1q binding activity was identified by Far-Western blotting and ELISA assays.

RESULTS

After several runs of sequential fragment expression, the C1q binding site was narrowed down to fragments of N-terminal TsPmy226-280aa and TsPmy231-315aa, suggesting the final C1q binding site is probably located to TsPmy231-280aa. A total of nine peptides covering different amino acid sequences within TsPmy231-280aa were synthesized. The binding assay to C1q determined that only P2 peptide covering TsPmy241-280aa binds to C1q, indicating that the C1q binding domain may need both the linearized sequence and conformational structure required for binding to C1q. The binding of peptide P2 to C1q significantly inhibited both C1q-initiated complement classical activation and C1q-induced macrophage chemotaxis.

CONCLUSIONS

This study identifies the C1q binding site within TsPmy which provides helpful information for developing a vaccine against trichinellosis by targeting the C1q-binding activity of TsPmy.

摘要

背景

旋毛虫是一种组织寄生的寄生虫,它已经发展出逃避宿主免疫攻击的能力,以便在宿主体内建立寄生虫。线虫进化的策略之一是产生免疫调节宿主免疫系统的蛋白质。TsPmy 是旋毛虫幼虫和成虫表面分泌的原肌球蛋白,它可以与补体成分 C1q 和 C8/C9 相互作用,破坏它们的激活和功能。为了更好地理解 TsPmy 参与 C1q 失活和免疫逃避的机制,研究了 TsPmy 上与 C1q 结合的位点。

方法

通过在细菌中顺序缩小片段表达和肽结合筛选来研究 TsPmy 的 C1q 结合位点。通过 Far-Western 印迹和 ELISA 测定来鉴定 C1q 结合活性。

结果

经过几轮顺序片段表达,C1q 结合位点缩小到 TsPmy226-280aa 和 TsPmy231-315aa 的 N 端片段,这表明最终的 C1q 结合位点可能位于 TsPmy231-280aa。合成了总共 9 个覆盖 TsPmy231-280aa 内不同氨基酸序列的肽。与 C1q 的结合测定表明,只有覆盖 TsPmy241-280aa 的 P2 肽与 C1q 结合,表明 C1q 结合域可能既需要线性序列,也需要与 C1q 结合所需的构象结构。肽 P2 与 C1q 的结合显著抑制了 C1q 引发的补体经典激活和 C1q 诱导的巨噬细胞趋化作用。

结论

本研究确定了 TsPmy 中的 C1q 结合位点,这为通过靶向 TsPmy 的 C1q 结合活性开发抗旋毛虫病疫苗提供了有价值的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d87/6307294/70453f0bb699/13071_2018_3258_Fig1_HTML.jpg

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