Structural basis of water-specific transport through the AQP1 water channel

被引:0
|
作者
Haixin Sui
Bong-Gyoon Han
John K. Lee
Peter Walian
Bing K. Jap
机构
[1] University of California,Life Sciences Division, Lawrence Berkeley National Laboratory
[2] University of California,Graduate Group in Comparative Biochemistry
来源
Nature | 2001年 / 414卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Water channels facilitate the rapid transport of water across cell membranes in response to osmotic gradients. These channels are believed to be involved in many physiological processes that include renal water conservation, neuro-homeostasis, digestion, regulation of body temperature and reproduction. Members of the water channel superfamily have been found in a range of cell types from bacteria to human. In mammals, there are currently 10 families of water channels, referred to as aquaporins (AQP): AQP0–AQP9. Here we report the structure of the aquaporin 1 (AQP1) water channel to 2.2 Å resolution. The channel consists of three topological elements, an extracellular and a cytoplasmic vestibule connected by an extended narrow pore or selectivity filter. Within the selectivity filter, four bound waters are localized along three hydrophilic nodes, which punctuate an otherwise extremely hydrophobic pore segment. This unusual combination of a long hydrophobic pore and a minimal number of solute binding sites facilitates rapid water transport. Residues of the constriction region, in particular histidine 182, which is conserved among all known water-specific channels, are critical in establishing water specificity. Our analysis of the AQP1 pore also indicates that the transport of protons through this channel is highly energetically unfavourable.
引用
收藏
页码:872 / 878
页数:6
相关论文
共 50 条
  • [21] Comparison of the water transporting properties of MIP and AQP1
    Chandy, G
    Zampighi, GA
    Kreman, M
    Hall, JE
    JOURNAL OF MEMBRANE BIOLOGY, 1997, 159 (01): : 29 - 39
  • [22] Comparison of the Water Transporting Properties of MIP and AQP1
    G. Chandy
    G.A. Zampighi
    M. Kreman
    J.E. Hall
    The Journal of Membrane Biology, 1997, 159 : 29 - 39
  • [24] The water channel AQP1 is expressed in human atherosclerotic vascular lesions and AQP1 deficiency augments angiotensin II-induced atherosclerosis in mice
    Wintmo, P.
    Johansen, S. H.
    Hansen, P. B. L.
    Lindholt, J. S.
    Urbonavicius, S.
    Rasmussen, L. M.
    Bie, P.
    Jensen, B. L.
    Stubbe, J.
    ACTA PHYSIOLOGICA, 2017, 220 (04) : 446 - 460
  • [25] New control mechanisms of water transport identified in AQP1 with molecular dynamics simulations
    Chong, M. Ng Fuk
    Etchebest, C.
    FEBS JOURNAL, 2014, 281 : 631 - 631
  • [26] AQP1 Is Not Only a Water Channel: It Contributes to Cell Migration through Lin7/Beta-Catenin
    Monzani, Elena
    Bazzotti, Riccardo
    Perego, Carla
    La Porta, Caterina A. M.
    PLOS ONE, 2009, 4 (07):
  • [27] EXPRESSION OF 3 TYPES OF WATER CHANNEL (AQP1, AQP2 AND AQP3) IN RAT KIDNEYS DURING DEVELOPMENT
    YAMAMOTO, T
    SASAKI, S
    YAOITA, E
    KAWASAKI, K
    FUSHIMI, K
    ISHIBASHI, K
    MARUMO, F
    KIHARA, I
    JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 1995, 6 (03): : 331 - 331
  • [28] Close association of water channel AQP1 with amyloid-β deposition in Alzheimer disease brains
    Misawa, Tamako
    Arima, Kunimasa
    Mizusawa, Hidehiro
    Satoh, Jun-ichi
    ACTA NEUROPATHOLOGICA, 2008, 116 (03) : 247 - 260
  • [29] Water channel protein AQP1 in cytoplasm is a critical factor in breast cancer local invasion
    Guo, Zhifang
    Zhang, Huikun
    Liu, Xiaoli
    Zhao, Yawen
    Chen, Yongzi
    Jin, Jiaqi
    Guo, Caixia
    Zhang, Ming
    Gu, Feng
    Ma, Yongjie
    JOURNAL OF EXPERIMENTAL & CLINICAL CANCER RESEARCH, 2023, 42 (01)
  • [30] The CO2 permeability of the AQP1 water channel, expressed in Xenopus oocytes.
    Cooper, GJ
    Boron, WF
    JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 1997, 8 : A0074 - A0074