Kavanagh Oisín N, Bhattacharya Shayon, Marchetti Luke, Elmes Robert, O'Sullivan Finbarr, Farragher John P, Robinson Shane, Thompson Damien, Walker Gavin M
SSPC, The Science Foundation Ireland Research Centre for Pharmaceuticals, V94 T9PX Limerick, Ireland.
School of Pharmacy, Newcastle University, Newcastle upon Tyne NE1 7RU, UK.
Pharmaceutics. 2022 Apr 20;14(5):899. doi: 10.3390/pharmaceutics14050899.
Drug-mediated correction of abnormal biological zinc homeostasis could provide new routes to treating neurodegeneration, cancer, and viral infections. Designing therapeutics to facilitate zinc transport intracellularly is hampered by inadequate concentrations of endogenous zinc, which is often protein-bound in vivo. We found strong evidence that hydroxychloroquine, a drug used to treat malaria and employed as a potential treatment for COVID-19, does not bind and transport zinc across biological membranes through ionophoric mechanisms, contrary to recent claims. In vitro complexation studies and liposomal transport assays are correlated with cellular zinc assays in A549 lung epithelial cells to confirm the indirect mechanism of hydroxychloroquine-mediated elevation in intracellular zinc without ionophorism. Molecular simulations show hydroxychloroquine-triggered helix perturbation in zinc-finger protein without zinc chelation, a potential alternative non-ionophoric mechanism.
药物介导的异常生物锌稳态校正可为治疗神经退行性疾病、癌症和病毒感染提供新途径。由于内源性锌浓度不足(其在体内通常与蛋白质结合),设计促进锌在细胞内运输的疗法受到阻碍。我们发现有力证据表明,用于治疗疟疾并被用作COVID-19潜在治疗药物的羟氯喹,与最近的说法相反,它不会通过离子载体机制结合并转运锌穿过生物膜。体外络合研究和脂质体转运测定与A549肺上皮细胞中的细胞锌测定相关,以确认羟氯喹介导的细胞内锌升高的间接机制,而不存在离子载体作用。分子模拟显示羟氯喹在无锌螯合的情况下引发锌指蛋白中的螺旋扰动,这是一种潜在的替代性非离子载体机制。