Immunogenicity and Neutralization Potential of Recombinant Chimeric Protein Comprising the Catalytic Region of Gp63 of Leishmania and LTB against Leishmania donovani.

IF 1 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Anuja Krishnan, Gunjan Malik, Lalit C Garg
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引用次数: 0

Abstract

Aim: To study the inhibition potential of antibody against a recombinant chimera comprising of the catalytic epitope of gp63 of Leishmania donovani and B subunit of heat-labile enterotoxin (LTB) in the functional activity of L. donovani.

Background: Visceral leishmaniasis, caused by the protozoan parasite Leishmania donovani, is a major health problem and causes mortality in tropical regions. Protozoan proteases play a crucial role in the pathogenesis of the disease and in establishing infection by countering the host's innate immune responses, namely complement-mediated lysis and phagocytosis. A surface-bound metalloprotease (gp63) has been reported to be a major virulence factor resulting in the evasion of complement- mediated lysis, cleaving host extracellular and intracellular substrates, resulting in intra- phagolysosomal survival.

Methods: The epitope corresponding to the catalytic motif of gp63 of Leishmania donovani was fused with the B subunit of heat-labile enterotoxin, which is known to be immunogenic. The chimera was cloned to a prokaryotic expression vector and purified using Ni NTA affinity chromatography. Antibodies were generated against the purified fusion protein and analyzed for its ability to bind to the gp63 catalytic motif peptide by ELISA. The effect of fusion protein antibody on the functional activity of gp63 was evaluated by assessing the effect of purified IgGs on the protease activity and complement-mediated lysis of L. donovani promastigotes in vitro.

Results: The present study reports that a recombinant chimera of the catalytic epitope of gp63 and B subunit of heat-labile enterotoxin (LTB) of E. coli, a potent adjuvant of humoral response can mount significant immune response towards the catalytic epitope. ELISA and Western blot analysis showed that the anti-fusion protein antiserum could recognize the native gp63. Also, it significantly inhibited the protease activity of promastigotes and subsequently increased complement-mediated lysis of the promastigotes in vitro.

Conclusion: It could be concluded that the hybrid protein containing catalytic motif L. donovani gp63 protein and carrier protein (LTB) could elicit antibodies that could neutralise the functional activity of gp63 and thus could be a potential candidate for subunit leishmaniasis vaccine.

由利什曼原虫 Gp63 催化区和 LTB 组成的重组嵌合蛋白对多纳瓦尼利什曼原虫的免疫原性和中和潜力。
目的:研究由多诺万利什曼原虫gp63催化表位和热嗜性肠毒素[LTB]B亚基组成的重组嵌合体抗体对多诺万利什曼原虫功能活性的抑制潜力:背景:由原生寄生虫唐氏利什曼病(Leishmania donavani)引起的内脏利什曼病是热带地区的一个主要健康问题,并导致死亡。原生动物蛋白酶通过对抗宿主的先天性免疫反应(即补体介导的裂解和吞噬作用),在疾病的发病机制和建立感染中发挥着至关重要的作用。据报道,一种表面结合的金属蛋白酶[gp63]是一种主要的毒力因子,它能逃避补体介导的溶解,裂解宿主细胞外和细胞内底物,从而在吞噬溶酶体内存活:将与唐氏利什曼原虫 gp63 催化基团相对应的表位与已知具有免疫原性的热嗜性肠毒素 B 亚基融合。该嵌合体被克隆到原核表达载体中,并使用 Ni NTA 亲和层析法进行纯化。针对纯化的融合蛋白生成抗体,并通过 ELISA 分析其与 gp63 催化基序肽结合的能力。融合蛋白抗体对 gp63 功能活性的影响通过评估纯化的 IgG 对体外唐诺瓦尼原虫蛋白酶活性和补体介导的裂解的影响进行评估:本研究报告了 gp63 催化表位与大肠杆菌热毒肠毒素 [LTB] B 亚基的重组嵌合体(一种有效的体液反应佐剂)可对催化表位产生显著的免疫反应。ELISA 和 Western 印迹分析表明,抗融合蛋白抗血清能识别原生 gp63。此外,它还能明显抑制原虫的蛋白酶活性,从而增加体外补体介导的原虫裂解:结论:可以得出结论,含有催化基团的多诺万病毒gp63蛋白和载体蛋白[LTB]的杂交蛋白能激发抗体,从而中和gp63的功能活性,因此可能成为亚单位利什曼病疫苗的候选物质。
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来源期刊
Protein and Peptide Letters
Protein and Peptide Letters 生物-生化与分子生物学
CiteScore
2.90
自引率
0.00%
发文量
98
审稿时长
2 months
期刊介绍: Protein & Peptide Letters publishes letters, original research papers, mini-reviews and guest edited issues in all important aspects of protein and peptide research, including structural studies, advances in recombinant expression, function, synthesis, enzymology, immunology, molecular modeling, and drug design. Manuscripts must have a significant element of novelty, timeliness and urgency that merit rapid publication. Reports of crystallization and preliminary structure determination of biologically important proteins are considered only if they include significant new approaches or deal with proteins of immediate importance, and preliminary structure determinations of biologically important proteins. Purely theoretical/review papers should provide new insight into the principles of protein/peptide structure and function. Manuscripts describing computational work should include some experimental data to provide confirmation of the results of calculations. Protein & Peptide Letters focuses on: Structure Studies Advances in Recombinant Expression Drug Design Chemical Synthesis Function Pharmacology Enzymology Conformational Analysis Immunology Biotechnology Protein Engineering Protein Folding Sequencing Molecular Recognition Purification and Analysis
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