• 尊龙凯时

    <\/i>","library":""},"layout":"horizontal"}" data-widget_type="nav-menu.default">

    Structural insights into drug transport by an aquaglyceroporin

    Structural insights into drug transport by an aquaglyceroporin

    3 min read
    分享链接

    期刊:Nature Communications volume 15, Article number: 3985 (2024)

    作者:Wanbiao Chen, Rongfeng Zou, Yi Mei, Jiawei Li, Yumi Xuan, Bing Cui, Junjie Zou, Juncheng Wang, Shaoquan Lin, Zhe Zhang & Chongyuan Wang

    时间:2024.05.11

    Pentamidine and melarsoprol are primary drugs used to treat the lethal human sleeping sickness caused by the parasite Trypanosoma brucei. Cross-resistance to these two drugs has recently been linked to aquaglyceroporin 2 of the trypanosome (TbAQP2). TbAQP2 is the first member of the aquaporin family described as capable of drug transport; however, the underlying mechanism remains unclear. Here, we present cryo-electron microscopy structures of TbAQP2 bound to pentamidine or melarsoprol. Our structural studies, together with the molecular dynamic simulations, reveal the mechanisms shaping substrate specificity and drug permeation. Multiple amino acids in TbAQP2, near the extracellular entrance and inside the pore, create an expanded conducting tunnel, sterically and energetically allowing the permeation of pentamidine and melarsoprol. Our study elucidates the mechanism of drug transport by TbAQP2, providing valuable insights to inform the design of drugs against trypanosomiasis.

    阅读原文

    人工智能 + 机器人
    技术平台驱动行业创新

    推荐阅读

    Templated Nucleation of Clotrimazole and Ketoprofen on Polymer Substrates

    Tale of Two Polymorphs: Investigating the Structural Differences and Dynamic Relationship between Nirmatrelvir Solid Forms (Paxlovid)

    WUREN: Whole-modal union representation for epitope prediction

    Towards the efficient design of shared neoantigen peptide cancer vaccines using artificial intelligence

    <\/path><\/svg>","library":"fa-solid"}}" data-widget_type="nav-menu.default">