Selectivity and transport in aquaporins from molecular simulation studies

被引:5
|
作者
Padhi, Siladitya [1 ]
Priyakumar, U. Deva [2 ]
机构
[1] Tata Consultancy Serv Ltd, TCS Innovat Labs Hyderabad, Div Life Sci, Hyderabad, India
[2] Int Inst Informat Technol, Ctr Computat Nat Sci & Bioinformat, Hyderabad, India
来源
AQUAPORIN REGULATION | 2020年 / 112卷
关键词
ADDITIVE FORCE-FIELD; WATER PERMEATION; STRUCTURAL DETERMINANTS; PROTEIN INTERACTIONS; PROTON EXCLUSION; SIDE-CHAIN; DYNAMICS; CHANNEL; MECHANISM; PERMEABILITY;
D O I
10.1016/bs.vh.2019.10.001
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The transport of water through aquaporins is a dynamic process that involves rapid-movement of a chain of water molecules through the pore of the aquaporin. Structures of aquaporins solved using X-ray crystallography have provided some insights into how water is transported through these channels, and how certain structural features of the pore might help exclude other solutes from passing through the pore. However, such techniques provide only a static picture, and a dynamic picture of the transport and selectivity mechanism at work in aquaporins is possible with molecular dynamics (MD) simulations. In MD simulations, the forces between the different atoms in a system are computed, and the atoms are then allowed to move under the influence of these forces. This allows the sampling of different conformations of the molecule being studied, including conformations that are crucial in driving biological phenomena like water transport. Simulation studies have provided insights into a number of aspects of aquaporins, including the role of the asparagine-proline-alanine (NPA) motif and the aromatic/arginine (ar/R) constriction, water transport mechanism, mechanisms defining the selectivity of the channel, interaction with lipids, response to external electric field, and binding of putative drugmolecules. This chapter provides a brief review of the current status of computational modeling of aquaporins using MD simulations. Initially, a brief account of force fields and MD simulations is presented followed by an account of how MD simulations have contributed to further our understanding of different aspects of aquaporins.
引用
收藏
页码:47 / 70
页数:24
相关论文
共 50 条
  • [1] Hydrogen peroxide transport by aquaporins: insights from molecular modeling and simulations
    Chevriau, Jonathan
    De Palma, Gerardo Zerbetto
    Alleva, Karina
    Zeida, Ari
    BIOPHYSICAL REVIEWS, 2025,
  • [2] Water transport in aquaporins: molecular dynamics simulations
    Ikeguchi, Mitsunori
    FRONTIERS IN BIOSCIENCE-LANDMARK, 2009, 14 : 1283 - 1291
  • [3] Molecular docking and molecular simulation studies for N-degron selectivity of chloroplastic ClpS from Chlamydomonas reinhardtii
    Wang, Ning
    Gao, Jian-Guo
    Wu, Ming-Wei
    COMPUTATIONAL BIOLOGY AND CHEMISTRY, 2023, 103
  • [4] Ammonia transport in aquaporins: molecular mechanisms and clinical relevance
    Holm, L. M.
    Zeuthen, T.
    Hepatic Encephalopathy and Nitrogen Metabolism, 2006, : 387 - 394
  • [5] Aquaporins with selectivity for unconventional permeants
    Wu, B.
    Beitz, E.
    CELLULAR AND MOLECULAR LIFE SCIENCES, 2007, 64 (18) : 2413 - 2421
  • [6] Mechanism of selectivity in aquaporins and aquaglyceroporins
    Hub, Jochen S.
    De Groot, Bert L.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2008, 105 (04) : 1198 - 1203
  • [7] Aquaporins with selectivity for unconventional permeants
    B. Wu
    E. Beitz
    Cellular and Molecular Life Sciences, 2007, 64 : 2413 - 2421
  • [8] Regulation of selectivity and translocation of aquaporins: an update
    Petrovic, M. M.
    Vales, K.
    Stojan, G.
    Basta-Jovanovic, G.
    Mitrovic, D. M.
    FOLIA BIOLOGICA, 2006, 52 (05) : 173 - 180
  • [9] Dissection of the cation selectivity filters in aquaporins
    Almasalmeh, A.
    Wu, B.
    Steinbronn, C.
    Beitz, E.
    EUROPEAN JOURNAL OF CLINICAL INVESTIGATION, 2010, 40 : 69 - 69
  • [10] Binding selectivity analysis of AURKs inhibitors through molecular dynamics simulation studies
    Alharthy, Rima D.
    Fatima, Ghulam
    Yousaf, Numan
    Iqbal, Muhammad Shaheen
    Sattar, Sadia
    Alanzi, Abdullah R.
    Ali, Ijaz
    Muddassar, Muhammad
    PLOS ONE, 2023, 18 (12):