Marin-Toledo Jonnathan P, Greenan Daniel, Celis Nohemy, Haske Laura, Lewandowska Agnieszka, Rakowski Christopher K, Shastry Shashank, Maji Arun, Green Kelsie J, Pogorelov Taras V, Welsh Michael J, Thornell Ian M, Burke Martin D
Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, IL, USA.
Department of Internal Medicine, Pappajohn Biomedical Institute, Roy J. and Lucille A. Carver College of Medicine, University of Iowa, Iowa City, IA, USA.
bioRxiv. 2025 Aug 28:2025.08.28.671923. doi: 10.1101/2025.08.28.671923.
The ion channel-forming natural product amphotericin B (AmB) can serve as a molecular prosthetic for the cystic fibrosis transmembrane conductance regulator (CFTR) anion channel and thereby restore host defenses in cultured cystic fibrosis (CF) airway epithelia. This is despite the fact that the permeability of AmB-based channels favors cations, and these channels lose their capacity to increase airway surface liquid (ASL) pH in CF airway epithelia at high concentrations. We hypothesize that modifying such channels to favor anion permeability would make them more CFTR-like and thus increase their potential therapeutic effects compared to AmB. Here we show that a synthetic derivative of AmB, AmB-AA, which has an added positively charged appendage and forms ion channels with an improved relative permeability to anions, outperformed AmB in increasing the ASL pH in CF airway epithelia at both low and high concentrations. Further modifications led to another AmB derivative, C2'epiAmB-AA, that also minimized cholesterol binding and thus toxicity to cultured CF airway epithelia and was an effective surrogate for CFTR in primary cultured airway epithelia from people with CF.
形成离子通道的天然产物两性霉素B(AmB)可作为囊性纤维化跨膜传导调节因子(CFTR)阴离子通道的分子替代物,从而恢复培养的囊性纤维化(CF)气道上皮细胞的宿主防御功能。尽管基于AmB的通道对阳离子的通透性更高,且在高浓度时这些通道失去了增加CF气道上皮细胞气道表面液体(ASL)pH值的能力。我们推测,修饰此类通道以利于阴离子通透将使其更类似CFTR,因此与AmB相比,其潜在治疗效果会增强。在此我们表明,AmB的一种合成衍生物AmB-AA,带有一个额外的带正电荷的附加物,形成的离子通道对阴离子的相对通透性有所改善,在低浓度和高浓度下,其在增加CF气道上皮细胞ASL pH值方面均优于AmB。进一步修饰产生了另一种AmB衍生物C2'epiAmB-AA,它还将胆固醇结合降至最低,从而降低了对培养的CF气道上皮细胞的毒性,并且是CF患者原代培养气道上皮细胞中CFTR的有效替代物。