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靶向旋毛虫副肌球蛋白补体C9结合域的单克隆抗体在补体存在的情况下会损害旋毛虫感染性幼虫的活力。

Monoclonal antibody targeting complement C9 binding domain of Trichinella spiralis paramyosin impairs the viability of Trichinella infective larvae in the presence of complement.

作者信息

Hao Yuwan, Zhao Xi, Yang Jing, Gu Yuan, Sun Ran, Zhu Xinping

机构信息

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

出版信息

Parasit Vectors. 2014 Jul 4;7:313. doi: 10.1186/1756-3305-7-313.

Abstract

BACKGROUND

Trichinella spiralis expresses paramyosin (Ts-Pmy) not only as a structural protein but also as an immunomodulator that inhibits host complement as a survival strategy. Previous studies demonstrated that Ts-Pmy bound to complement components C8 and C9 and inhibited the polymerization of C9 during the formation of the membrane attack complex (MAC). The C9 binding domain of Ts-Pmy was identified within 14 amino acid residues at the C-terminus of Ts-Pmy. The production of a monoclonal antibody that specifically targets the C9 binding site is necessary for further studies of Ts-Pmy function and may be used as a therapeutic agent for T. spiralis infection.

METHODS

In this study, a monoclonal antibody against the complement C9 binding domain of Ts-Pmy (mAb 9G3) was produced using hybridoma technology. The binding activity of the mAb produced for recombinant or native Ts-Pmy and the blockade of Ts-Pmy binding to C9 by the mAb were assessed by Western blot analysis. The effect of the mAb on the viability of T. spiralis was observed by co-incubation of T. spiralis with mAb 9G3 in the presence of complement in vitro and by passive transfer of the mAb into naive mice following T. spiralis larval challenge.

RESULTS

mAb 9G3 was successfully produced against the C9 binding domain of Ts-Pmy and bound specifically not only to recombinant Ts-Pmy but also to native Ts-Pmy expressed in different stages of T. spiralis, including adult worms, newborn larvae and muscle larvae. The binding of mAb 9G3 to Ts-Pmy efficiently blocked the binding of Ts-Pmy to human complement C9, resulting in a significant increase in the complement-mediated killing of newborn larvae in vitro and reduced infectivity of T. spiralis larvae in mice passively transferred with the mAb.

CONCLUSIONS

mAb 9G3 is a specific antibody that binds to the C9 binding domain of Ts-Pmy and interferes with Ts-Pmy's complement-binding activity. Therefore, this mAb is a protective antibody that has potential as a preventive and therapeutic agent for T. spiralis infection.

摘要

背景

旋毛虫表达副肌球蛋白(Ts-Pmy),它不仅作为一种结构蛋白,还作为一种免疫调节剂,通过抑制宿主补体来作为一种生存策略。先前的研究表明,Ts-Pmy与补体成分C8和C9结合,并在膜攻击复合物(MAC)形成过程中抑制C9的聚合。Ts-Pmy的C9结合域在Ts-Pmy C末端的14个氨基酸残基内被鉴定出来。生产一种特异性靶向C9结合位点的单克隆抗体对于进一步研究Ts-Pmy的功能是必要的,并且可作为旋毛虫感染的治疗剂。

方法

在本研究中,利用杂交瘤技术制备了一种针对Ts-Pmy补体C9结合域的单克隆抗体(mAb 9G3)。通过蛋白质印迹分析评估所产生的单克隆抗体对重组或天然Ts-Pmy的结合活性以及该单克隆抗体对Ts-Pmy与C9结合的阻断作用。通过在体外补体存在的情况下将旋毛虫与mAb 9G3共同孵育,以及在旋毛虫幼虫攻击后将该单克隆抗体被动转移至未感染小鼠体内,观察该单克隆抗体对旋毛虫活力的影响。

结果

成功制备了针对Ts-Pmy C9结合域的mAb 9G3,它不仅特异性结合重组Ts-Pmy,还特异性结合旋毛虫不同阶段表达的天然Ts-Pmy,包括成虫、新生幼虫和肌幼虫。mAb 9G3与Ts-Pmy的结合有效阻断了Ts-Pmy与人补体C9的结合,导致体外补体介导的新生幼虫杀伤显著增加,并且在被动转移该单克隆抗体的小鼠中旋毛虫幼虫的感染力降低。

结论

mAb 9G3是一种特异性抗体,它结合Ts-Pmy的C9结合域并干扰Ts-Pmy的补体结合活性。因此,这种单克隆抗体是一种保护性抗体,具有作为旋毛虫感染预防和治疗剂的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/470a/4101707/680edea45c33/1756-3305-7-313-1.jpg

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