首页> 外文期刊>Antimicrobial agents and chemotherapy. >Distinct antifungal mechanisms: beta-defensins require Candida albicans Ssa1 protein, while Trk1p mediates activity of cysteine-free cationic peptides.
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Distinct antifungal mechanisms: beta-defensins require Candida albicans Ssa1 protein, while Trk1p mediates activity of cysteine-free cationic peptides.

机译:独特的抗真菌机制:β-防御素需要白色念珠菌Ssa1蛋白,而Trk1p介导无半胱氨酸阳离子肽的活性。

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摘要

Salivary histatin 5 (Hst 5) kills the fungal pathogen Candida albicans via a multistep process which includes binding to Ssa1/2 proteins on the cell surface and requires the TRK1 potassium transporter. Hst 5-induced membrane permeability to propidium iodide (PI) was nearly abolished in strain CaTK1 (TRK1/trk1), suggesting that Hst 5-induced influx of PI is via Trk1p. To explore the functional role of Trk1p in the mechanism of other antifungal peptides, we evaluated candidacidal activity and PI uptake in wild-type strain CaTK2 (TRK1/TRK1) and strain CaTK1 following treatment with lactoferricin 11 (LFcn 11), bactenecin 16 (BN 16), and virion-associated protein VPR 12. Strain CaTK1 was resistant to killing with these peptides (VPR 12 > LFcn 11 > BN 16), showing the requirement of Trk1p for fungicidal activity. In contrast, human neutrophil defensin 1 (HNP-1), human beta-defensin 2 (hBD-2), and hBD-3 effects on viability of and membrane permeability to PI were not different between mutant and wild-type strains, clearly showing that their candidacidal mechanism does not involve Trk1p as a functional effector. To test whether defensins require binding to Candida surface Ssa1/2 proteins for their activity, we measured the killing effectiveness in SSA1/2 mutant strains. Both hBD-2 and hBD-3, but not HNP-1, exhibited reduced killing of ssa1Delta and ssa2Delta strains compared to the wild type, showing that Ssa1 and Ssa2 proteins are required for their fungicidal activity. These results demonstrate that (i) Trk1p mediates candidacidal activities of cysteine-free peptides, but not of defensins, and (ii) hBD-2 and hBD-3, but not HNP-1, require Ssa1/2p for antifungal activity.
机译:唾液组蛋白5(Hst 5)通过多步过程杀死了真菌病原体白色念珠菌,该过程包括与细胞表面Ssa1 / 2蛋白结合并需要TRK1钾转运蛋白。 Hst 5诱导的CaTK1(TRK1 / trk1)菌株对碘化丙啶(PI)的膜通透性几乎被废除,这表明Hst 5诱导的PI流入是通过Trk1p。为了探索Trk1p在其他抗真菌肽机制中的功能作用,我们评估了乳铁蛋白11(LFcn 11),细菌素16(BN)处理后野生型菌株CaTK2(TRK1 / TRK1)和菌株CaTK1中的候选酸活性和PI摄取。 16)以及与病毒体相关的蛋白VPR12。菌株CaTK1抵抗这些肽的杀伤作用(VPR 12> LFcn 11> BN 16),表明Trk1p具有杀真菌活性。相比之下,突变型和野生型菌株中人嗜中性粒细胞防御素1(HNP-1),人β防御素2(hBD-2)和hBD-3对PI的活力和膜通透性的影响没有差异。他们的候选酸机制不涉及Trk1p作为功能性效应子。为了测试防御素是否需要结合假丝酵母表面Ssa1 / 2蛋白才能发挥其活性,我们测量了SSA1 / 2突变菌株的杀伤效果。与野生型相比,hBD-2和hBD-3(而非HNP-1)均显示出对ssa1Delta和ssa2Delta菌株的杀灭力降低,表明Ssa1和Ssa2蛋白具有杀真菌活性。这些结果表明:(i)Trk1p介导不含半胱氨酸的肽的候选酸活性,但不防御防御素的活性;(ii)hBD-2和hBD-3,而不是HNP-1,要求Ssa1 / 2p具有抗真菌活性。

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