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Polyene antibiotic that inhibits membrane transport proteins

机译:抑制膜转运蛋白的多烯抗生素

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摘要

The limited therapeutic arsenal and the increase in reports of fungal resistance to multiple antifungal agents have made fungal infections a major therapeutic challenge. The polyene antibiotics are the only group of antifungal antibiotics that directly target the plasma membrane via a specific interaction with the main fungal sterol, ergosterol, often resulting in membrane permeabilization. In contrast to other polyene antibiotics that form pores in the membrane, the mode of action of natamycin has remained obscure but is not related to membrane permeabilization. Here, we demonstrate that natamycin inhibits growth of yeasts and fungi via the immediate inhibition of amino acid and glucose transport across the plasma membrane. This is attributable to ergosterol-specific and reversible inhibition of membrane transport proteins. It is proposed that ergosterol-dependent inhibition of membrane proteins is a general mode of action of all the polyene antibiotics, of which some have been shown additionally to permeabilize the plasma membrane. Our results imply that sterol-protein interactions are fundamentally important for protein function even for those proteins that are not known to reside in sterol-rich domains.
机译:有限的治疗武库和对多种抗真菌剂的真菌耐药性报告的增加已使真菌感染成为主要的治疗挑战。多烯类抗生素是唯一通过与主要真菌固醇麦角固醇的特异性相互作用直接靶向质膜的抗真菌抗生素,通常会导致膜透化。与其他在膜上形成孔的多烯抗生素相反,那他霉素的作用方式仍然不清楚,但与膜通透性无关。在这里,我们证明那他霉素通过立即抑制氨基酸和葡萄糖跨质膜转运而抑制酵母和真菌的生长。这归因于麦角固醇特异性和可逆的膜转运蛋白抑制作用。有人提出麦角固醇依赖性的膜蛋白抑制作用是所有多烯抗生素的一般作用方式,其中的一些已被证明另外能渗透质膜。我们的结果表明,固醇相互作用对蛋白质功能至关重要,即使对于那些未知的富含固醇结构域的蛋白质也是如此。

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