The sunflower jacalin Helja: biological and structural insights of its antifungal activity against Candida albicans.

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Glycobiology Pub Date : 2024-07-26 DOI:10.1093/glycob/cwae058
Marianela V Del Río, Melisa B Radicioni, Anabela M Cutine, Karina V Mariño, Héctor M Mora-Montes, Alejandro J Cagnoni, Mariana C Regente
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Abstract

The limited availability of efficient treatments for Candida infections and the increased emergence of antifungal-resistant strains stimulates the search for new antifungal agents. We have previously isolated a sunflower mannose-binding lectin (Helja) with antifungal activity against Candida albicans, capable of binding mannose-bearing oligosaccharides exposed on the cell surface. This work aimed to investigate the biological and biophysical basis of Helja's binding to C. albicans cell wall mannans and its influence on the fungicidal activity of the lectin. We evaluated the interaction of Helja with the cell wall mannans extracted from the isogenic parental strain (WT) and a glycosylation-defective C. albicans with altered cell wall phosphomannosylation (mnn4∆ null mutants) and investigated its antifungal effect. Helja exhibited stronger antifungal activity on the mutant strain, showing greater inhibition of fungal growth, loss of cell viability, morphological alteration, and formation of clusters with agglutinated cells. This differential biological activity of Helja was correlated with the biophysical parameters determined by solid phase assays and isothermal titration calorimetry, which demonstrated that the lectin established stronger interactions with the cell wall mannans of the mnn4∆ null mutant than with the WT strain. In conclusion, our results provide new evidence on the nature of the Helja molecular interactions with cell wall components, i.e. phosphomannan, and its impact on the antifungal activity. This study highlights the relevance of plant lectins in the design of effective antifungal therapies.

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向日葵茉莉苷 Helja:对白色念珠菌抗真菌活性的生物学和结构研究。
由于治疗念珠菌感染的有效药物有限,而且抗真菌药物耐药菌株的出现越来越多,因此人们开始寻找新的抗真菌药物。我们之前分离出了一种向日葵甘露糖结合凝集素(Helja),它对白色念珠菌具有抗真菌活性,能够结合暴露在细胞表面的甘露糖寡糖。这项工作旨在研究 Helja 与白念珠菌细胞壁甘露糖结合的生物和生物物理基础及其对凝集素杀菌活性的影响。我们评估了Helja与从同源亲本菌株(WT)和细胞壁磷酸甘露聚糖化改变的糖基化缺陷白僵菌(mnn4∆ null突变体)中提取的细胞壁甘露聚糖的相互作用,并研究了其抗真菌效果。Helja 对突变株表现出更强的抗真菌活性,对真菌生长、细胞活力丧失、形态改变和凝集细胞簇形成的抑制作用更强。Helja 的这种不同生物活性与固相测定法和等温滴定量热法测定的生物物理参数相关,这表明凝集素与 mnn4∆ 空缺突变体细胞壁的相互作用比与 WT 菌株的相互作用更强。总之,我们的研究结果为 Helja 分子与细胞壁成分(即磷甘露聚糖)相互作用的性质及其对抗真菌活性的影响提供了新的证据。这项研究强调了植物凝集素在设计有效抗真菌疗法中的相关性。
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来源期刊
Glycobiology
Glycobiology 生物-生化与分子生物学
CiteScore
7.50
自引率
4.70%
发文量
73
审稿时长
3 months
期刊介绍: Established as the leading journal in the field, Glycobiology provides a unique forum dedicated to research into the biological functions of glycans, including glycoproteins, glycolipids, proteoglycans and free oligosaccharides, and on proteins that specifically interact with glycans (including lectins, glycosyltransferases, and glycosidases). Glycobiology is essential reading for researchers in biomedicine, basic science, and the biotechnology industries. By providing a single forum, the journal aims to improve communication between glycobiologists working in different disciplines and to increase the overall visibility of the field.
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