首页> 外文期刊>Antimicrobial agents and chemotherapy. >Endocytosis-mediated vacuolar accumulation of the human ApoE apolipoprotein-derived ApoEdpL-W antimicrobial peptide contributes to its antifungal activity in Candida albicans.
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Endocytosis-mediated vacuolar accumulation of the human ApoE apolipoprotein-derived ApoEdpL-W antimicrobial peptide contributes to its antifungal activity in Candida albicans.

机译:内吞作用介导的人ApoE载脂蛋白衍生的ApoEdpL-W抗菌肽的液泡积累有助于其在白色念珠菌中的抗真菌活性。

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摘要

The 18-amino-acid cationic, tryptophan-rich ApoEdpL-W peptide derived from human ApoE apolipoprotein was shown to have antifungal activity against pathogenic yeasts of the Candida genus (except C. glabrata). ApoEdpL-W was active against planktonic cells and early-stage biofilms but less active against mature biofilms, possibly because of its affinity for extracellular matrix beta-glucans. Moreover, ApoEdpL-W absorbed to medically relevant materials partially prevented the formation of biofilms on these materials. The exposure of C. albicans cells to sublethal doses of ApoEdpL-W triggered a transcriptional response reminiscent of that associated with the inactivation of the MYO5 gene required for endocytosis as well as the upregulation of amino acid transporter genes. A fluorescent derivative of ApoEdpL-W accumulated at the cytoplasmic membrane and subsequently was translocated to the vacuole. Strikingly, the inactivation of MYO5 or addition of latrunculin, an inhibitor of endocytosis, prevented the vacuolar accumulation of fluorescein-labeled ApoEdpL-W and reduced the antifungal activity of ApoEdpL-W. This, together with the insensitivity of ApoEdpL-W to alterations in membrane fluidity and high salt, suggested that the ApoEdpL-W mode of action was dependent upon vacuolar targeting and differed significantly from that of other antifungal peptides, such as Histatin-5 and Magainin 2.
机译:衍生自人ApoE载脂蛋白的18个氨基酸的阳离子型,富含色氨酸的ApoEdpL-W肽被证明对念珠菌属的病原性酵母具有抗真菌活性(除光滑念珠菌外)。 ApoEdpL-W对浮游细胞和早期生物膜有活性,但对成熟生物膜没有活性,可能是因为它对细胞外基质β-葡聚糖具有亲和力。此外,被医学相关材料吸收的ApoEdpL-W部分阻止了这些材料上生物膜的形成。白色念珠菌细胞暴露于亚致死剂量的ApoEdpL-W引发的转录反应让人联想到与胞吞作用所需的MYO5基因失活以及氨基酸转运蛋白基因上调相关的转录反应。 ApoEdpL-W的荧光衍生物积聚在细胞质膜上,随后转移到液泡中。引人注目的是,MYO5的失活或内吞抑制剂的latrunculin的添加阻止了荧光素标记的ApoEdpL-W的液泡积累,并降低了ApoEdpL-W的抗真菌活性。这与ApoEdpL-W对膜流动性和高盐变化的不敏感性一起,表明ApoEdpL-W的作用方式取决于液泡靶向,并且与其他抗真菌肽(如Histatin-5和Magainin)有显着差异2。

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