Molecular characterization of a novel serine proteinase from Trichinella spiralis and its participation in larval invasion of gut epithelium.

IF 3.8 2区 医学 Q1 Medicine
PLoS Neglected Tropical Diseases Pub Date : 2023-09-11 eCollection Date: 2023-09-01 DOI:10.1371/journal.pntd.0011629
Yan Yan Song, Xin Zhuo Zhang, Bo Ning Wang, Min Min Weng, Zhao Yu Zhang, Xin Guo, Xi Zhang, Zhong Quan Wang, Jing Cui
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引用次数: 0

Abstract

Background: A novel serine proteinase of Trichinells spiralis (TsSPc) has been identified in the excretion/secretion (ES) antigens, but its role in larval invasion is unclear. The aim of this study was to clone and express TsSPc, identify its biological and biochemical characteristics, and investigate its role on larval invasion of gut epithelium during T. spiralis infection.

Methodology/principal findings: TsSPc has a functional domain of serine proteinase, and its tertiary structure consists of three amino acid residues (His88, Asp139 and Ser229) forming a pocket like functional domain. Recombinant TsSPc (rTsSPc) was expressed and purified. The rTsSPc has good immunogenicity. On Western blot analysis, rTsSPc was recognized by infection serum and anti-rTsSPc serum, natural TsSPc in crude and ES antigens was identified by anti-rTsSPc serum. The results of qPCR, Western blot and indirect immunofluorescence test (IIFT) showed that TsSPc was expressed at diverse stage worms, and mainly localized at cuticle, stichosome and intrauterine embryos of this nematode. The rTsSPc had enzymatic activity of native serine protease, which hydrolyzed the substrate BAEE, casein and collagen I. After site directed mutation of enzymatic active sites of TsSPc, its antigenicity did not change but the enzyme activity was fully lost. rTsSPc specifically bound to intestinal epithelium cells (IECs) and the binding sites were mainly localized in cell membrane and cytoplasm. rTsSPc accelerated larval invasion of IECs, whereas anti-rTsSPc antibodies and TsSPc-specific dsRNA obviously hindered larval invasion.

Conclusions: TsSPc was a surface and secretory proteinase of the parasite, participated in larval invasion of gut epithelium, and may be considered as a candidate vaccine target molecule against Trichinella intrusion and infection.

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Abstract Image

旋毛虫一种新型丝氨酸蛋白酶的分子特征及其参与幼虫对肠上皮的侵袭。
背景:旋毛虫排泄/分泌(ES)抗原中发现了一种新型丝氨酸蛋白酶(TsSPc),但其在幼虫入侵中的作用尚不清楚。本研究的目的是克隆和表达TsSPc,鉴定其生物学和生化特性,并研究其在旋毛虫感染过程中对幼虫侵袭肠道上皮的作用。方法论/主要发现:TsSPc具有丝氨酸蛋白酶的功能结构域,其三级结构由三个氨基酸残基(His88、Asp139和Ser229)组成,形成口袋状功能结构域。表达并纯化了重组TsSPc(rTsSPc)。rtSPc具有良好的免疫原性。在Western印迹分析中,rtSPc被感染血清和抗rTsSPc血清识别,粗品中的天然TsSPc和ES抗原被抗rTsSPc血清识别。qPCR、Western blot和间接免疫荧光试验(IIFT)结果表明,TsSPc在不同阶段的蠕虫中均有表达,主要定位于该线虫的角质层、缝合体和宫内胚胎。rTsSPc具有天然丝氨酸蛋白酶的酶活性,可水解底物BAEE、酪蛋白和I型胶原。TsSPc酶活性位点的定点突变后,其抗原性没有改变,但酶活性完全丧失。rtSPc与肠上皮细胞特异性结合,结合位点主要定位于细胞膜和细胞质。rtSPc加速了IECs对幼虫的入侵,而抗rTSPc抗体和TsSPc特异性dsRNA明显阻碍了幼虫的入侵。结论:TsSPc是一种寄生虫的表面分泌型蛋白酶,参与幼虫对肠上皮的侵袭,可作为旋毛虫入侵和感染的候选疫苗靶分子。
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来源期刊
PLoS Neglected Tropical Diseases
PLoS Neglected Tropical Diseases Medicine-Infectious Diseases
CiteScore
7.40
自引率
10.50%
发文量
723
审稿时长
2-3 weeks
期刊介绍: PLOS Neglected Tropical Diseases publishes research devoted to the pathology, epidemiology, prevention, treatment and control of the neglected tropical diseases (NTDs), as well as relevant public policy. The NTDs are defined as a group of poverty-promoting chronic infectious diseases, which primarily occur in rural areas and poor urban areas of low-income and middle-income countries. Their impact on child health and development, pregnancy, and worker productivity, as well as their stigmatizing features limit economic stability. All aspects of these diseases are considered, including: Pathogenesis Clinical features Pharmacology and treatment Diagnosis Epidemiology Vector biology Vaccinology and prevention Demographic, ecological and social determinants Public health and policy aspects (including cost-effectiveness analyses).
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