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萝卜防御素RsAFP1和RsAFP2与卡泊芬净协同作用对抗白色念珠菌生物膜。

The radish defensins RsAFP1 and RsAFP2 act synergistically with caspofungin against Candida albicans biofilms.

作者信息

Vriens Kim, Cools Tanne L, Harvey Peta J, Craik David J, Braem Annabel, Vleugels Jozef, De Coninck Barbara, Cammue Bruno P A, Thevissen Karin

机构信息

Centre of Microbial and Plant Genetics, KU Leuven, Kasteelpark Arenberg 20, 3001 Heverlee, Belgium.

Institute for Molecular Bioscience, The University of Queensland, Brisbane, Australia.

出版信息

Peptides. 2016 Jan;75:71-9. doi: 10.1016/j.peptides.2015.11.001. Epub 2015 Nov 28.

Abstract

The radish defensin RsAFP2 was previously characterized as a peptide with potent antifungal activity against several plant pathogenic fungi and human pathogens, including Candida albicans. RsAFP2 induces apoptosis and impairs the yeast-to-hypha transition in C. albicans. As the yeast-to-hypha transition is considered important for progression to mature biofilms, we analyzed the potential antibiofilm activity of recombinant (r)RsAFP2, heterologously expressed in Pichia pastoris, against C. albicans biofilms. We found that rRsAFP2 prevents C. albicans biofilm formation with a BIC-2 (i.e., the minimal rRsAFP2 concentration that inhibits biofilm formation by 50% as compared to control treatment) of 1.65 ± 0.40 mg/mL. Moreover, biofilm-specific synergistic effects were observed between rRsAFP2 doses as low as 2.5 μg/mL to 10 μg/mL and the antimycotics caspofungin and amphotericin B, pointing to the potential of RsAFP2 as a novel antibiofilm compound. In addition, we characterized the solution structure of rRsAFP2 and compared it to that of RsAFP1, another defensin present in radish seeds. These peptides have similar amino acid sequences, except for two amino acids, but rRsAFP2 is more potent than RsAFP1 against planktonic and biofilm cultures. Interestingly, as in case of rRsAFP2, also RsAFP1 acts synergistically with caspofungin against C. albicans biofilms in a comparable low dose range as rRsAFP2. A structural comparison of both defensins via NMR analysis revealed that also rRsAFP2 adopts the typical cysteine-stabilized αβ-motif of plant defensins, however, no structural differences were found between these peptides that might result in their differential antifungal/antibiofilm potency. This further suggests that the conserved structure of RsAFP1 and rRsAFP2 bears the potential to synergize with antimycotics against C. albicans biofilms.

摘要

萝卜防御素RsAFP2先前被鉴定为一种对包括白色念珠菌在内的多种植物病原真菌和人类病原体具有强大抗真菌活性的肽。RsAFP2可诱导白色念珠菌凋亡并损害其酵母-菌丝转变。由于酵母-菌丝转变被认为对成熟生物膜的形成至关重要,我们分析了在毕赤酵母中异源表达的重组(r)RsAFP2对白色念珠菌生物膜的潜在抗生物膜活性。我们发现rRsAFP2可阻止白色念珠菌生物膜形成,其BIC-2(即与对照处理相比抑制生物膜形成50%的最低rRsAFP2浓度)为1.65±0.40 mg/mL。此外,在低至2.5 μg/mL至10 μg/mL的rRsAFP2剂量与抗真菌药物卡泊芬净和两性霉素B之间观察到生物膜特异性协同作用,这表明RsAFP2作为一种新型抗生物膜化合物的潜力。此外,我们对rRsAFP2的溶液结构进行了表征,并将其与萝卜种子中存在的另一种防御素RsAFP1的结构进行了比较。这些肽除了两个氨基酸外具有相似的氨基酸序列,但rRsAFP2对浮游和生物膜培养物的活性比RsAFP1更强。有趣的是,与rRsAFP2的情况一样,RsAFP1在与rRsAFP2相当的低剂量范围内也与卡泊芬净对白色念珠菌生物膜具有协同作用。通过核磁共振分析对两种防御素进行结构比较发现,rRsAFP2也采用了植物防御素典型的半胱氨酸稳定化αβ基序,然而,在这些肽之间未发现可能导致其抗真菌/抗生物膜效力差异的结构差异。这进一步表明RsAFP1和rRsAFP2的保守结构具有与抗真菌药物协同对抗白色念珠菌生物膜的潜力。

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