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热带利什曼原虫循环后期和无鞭毛体样阶段蛋白质谱的鉴定:蛋白质组学方法

Identification of protein profile in metacyclic and amastigote-like stages of Leishmania tropica: a proteomic approach.

作者信息

Ashrafmansouri Marzieh, Amiri-Dashatan Nasrin, Ahmadi Nayebali

机构信息

Department of Medical Laboratory Sciences, School of Paramedical Sciences, Shiraz University of Medical Sciences, Shiraz, Iran.

Diagnostic Laboratory Sciences and Technology Research Center, School of Paramedical Sciences, Shiraz University of Medical Sciences, Shiraz, Iran.

出版信息

AMB Express. 2022 Nov 12;12(1):142. doi: 10.1186/s13568-022-01481-z.

Abstract

Leishmaniasis is a tropical disease that leads to various clinical phenotypes. This study aimed to investigate protein expression changes in metacyclic and amastigote-like stages of L. tropica isolated from Iranian cutaneous leishmaniasis patients. Isolated samples were cultured and species type identified using PCR-RFLP technique. The promastigotes were grown in RPMI1640 media and differentiated to metacyclic and amastigote-like forms, followed by the extracted proteins of both successive stages carried out for proteomics and bioinformatics analysis. Using SWATH-MS quantitative proteomics technique, a total 176 and 155 distinct proteins were identified in metacyclic and axenic amastigote stages, respectively. Of these, 65 proteins were altered significantly (p-value < 0.05 and fold change ≥ 2) between studied stages. Several gene ontology (GO) categories were enriched for biological process during conversion of metacyclic promastigotes into amastigote-like, which "metabolic process" (GO: 0044281, P-Value: 6.52e-5), and "translation" (GO: 0006412, p-value: 5.01e-14) were disclosed as the top category in up and down-regulated proteins, respectively. Also, the KEGG pathway analysis indicated "metabolic pathways" and "ribosome" term as the most important pathways in up and down-regulated proteins, respectively. According to protein interaction network analysis, enolase (ENOL) has been detected as main hub proteins during differentiation, followed by Putative NADH-dependent fumarate reductase (LmjF.35.1180) and 40S ribosomal protein S2 (LmjF.32.0450). Overall, protein changes possibly play important roles in L. tropica biology. Anabolic pathways were down-regulated, whereas catabolic pathways were up-regulated during L. tropica differentiation. These protein expression changes could provide parasite survival in host macrophages, and could use as novel potential drug and vaccine targets for leishmaniasis.

摘要

利什曼病是一种会导致多种临床表型的热带疾病。本研究旨在调查从伊朗皮肤利什曼病患者中分离出的热带利什曼原虫在循环前鞭毛体和无鞭毛体样阶段的蛋白质表达变化。对分离出的样本进行培养,并使用PCR-RFLP技术鉴定物种类型。前鞭毛体在RPMI1640培养基中生长,并分化为循环前鞭毛体和无鞭毛体样形式,随后对这两个连续阶段提取的蛋白质进行蛋白质组学和生物信息学分析。使用SWATH-MS定量蛋白质组学技术,在循环前鞭毛体和无菌无鞭毛体阶段分别鉴定出总共176种和155种不同的蛋白质。其中,65种蛋白质在研究阶段之间有显著变化(p值<0.05且变化倍数≥2)。在循环前鞭毛体转化为无鞭毛体样的过程中,几个基因本体(GO)类别在生物学过程方面显著富集,“代谢过程”(GO: 0044281,P值: 6.52e-5)和“翻译”(GO: 0006412,p值: 5.01e-14)分别被揭示为上调和下调蛋白质中的顶级类别。此外,KEGG通路分析表明“代谢通路”和“核糖体”术语分别是上调和下调蛋白质中最重要的通路。根据蛋白质相互作用网络分析,烯醇化酶(ENOL)在分化过程中被检测为主要枢纽蛋白,其次是假定的NADH依赖性延胡索酸还原酶(LmjF.35.1180)和40S核糖体蛋白S2(LmjF.32.0450)。总体而言,蛋白质变化可能在热带利什曼原虫生物学中发挥重要作用。在热带利什曼原虫分化过程中,合成代谢途径下调,而分解代谢途径上调。这些蛋白质表达变化可以为寄生虫在宿主巨噬细胞中的存活提供条件,并可作为利什曼病新的潜在药物和疫苗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4a0/9653527/c8a3121eaf16/13568_2022_1481_Fig1_HTML.jpg

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