Freeze-fracture and immunogold analysis of aquaporin-4 (AQP4) square arrays, with models of AQP4 lattice assembly (original) (raw)
The 4.5Å Structure of Human AQP2
Andreas Engel
Journal of Molecular Biology, 2005
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The 4.5 � Structure of Human AQP2
Andreas Engel
J Mol Biol, 2005
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Faculty of 1000 evaluation for Lipid-protein interactions in double-layered two-dimensional AQP0 crystals
Eileen Lafer
F1000 - Post-publication peer review of the biomedical literature, 2005
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Three-dimensional fold of the human AQP1 water channel determined at 4 Å resolution by electron crystallography of two-dimensional crystals embedded in ice1
sai reddy
Journal of Molecular Biology, 2000
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Three-dimensional fold of the human AQP1 water channel determined at 4 Å resolution by electron crystallography of two-dimensional crystals embedded in ice
vijay reddy
Journal of Molecular Biology, 2000
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Structural basis of water-specific transport through the AQP1 water channel
Haixin Sui
Nature, 2001
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Structural models of the supramolecular organization of AQP0 and connexons in junctional microdomains
Szymon Jarosławski
Journal of structural biology, 2007
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Aquaporin-4 square array assembly: Opposing actions of M1 and M23 isoforms
John Rash
Proceedings of the National Academy of Sciences, 2003
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A general protocol for the crystallization of membrane proteins for X-ray structural investigation
Larry Miercke
Nature Protocols, 2009
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AQP4e-Based Orthogonal Arrays Regulate Rapid Cell Volume Changes in Astrocytes
Robert Zorec
The Journal of neuroscience : the official journal of the Society for Neuroscience, 2017
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Structure of Functional Single AQP0 Channels in Phospholipid Membranes
Eric Turk
Journal of Molecular Biology, 2003
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Structural Determinants of Oligomerization of the Aquaporin-4 Channel
Roslyn M Bill
Journal of Biological Chemistry, 2016
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Crystal structure of human aquaporin 4 at 1.8 A and its mechanism of conductance
Larry Miercke
Proceedings of the National Academy of Sciences, 2009
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Structure and functions of aquaporin-4-based orthogonal arrays of particles
Andreas F Mack
International review of cell and molecular biology, 2011
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The Structure of the Aquaporin-1 Water Channel: A Comparison between Cryo-electron Microscopy and X-ray Crystallography
Andreas Engel
Journal of Molecular Biology, 2003
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Structural Determinants of Water Permeation through the Sodium-Galactose Transporter vSGLT
Andreas Engel
Biophysical Journal, 2014
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Regulation of Plasma Membrane Nano-Domains of the Water Channel Aquaporin-3 Revealed by Fixed and Live Photoactivated Localization Microscopy
Ute Hahn
Nano Letters
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Indirect Role of AQP4b and AQP4d Isoforms in Dynamics of Astrocyte Volume and Orthogonal Arrays of Particles
Jernej Jorgačevski
Cells
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The channel architecture of aquaporin 0 at a 2.2-A resolution
Larry Miercke
Proceedings of the National Academy of Sciences, 2004
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Transprotein-Electropore Characterization: A Molecular Dynamics Investigation on Human AQP4
Micaela Liberti
ACS Omega, 2018
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Identification and Structure of a Putative Ca2+-binding Domain at the C Terminus of AQP1
Andreas Engel
Journal of Molecular Biology, 2002
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Factors determining the density of AQP4 water channel molecules at the brain–blood interface
Mahmood Amiry-Moghaddam
Brain Structure and Function, 2016
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Studies of Molecular Energy Changes in AQP5 in the Presence and Absence of Water Using Computational Method
Mehdi Pooladi
2019
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Co-axial Association of Recombinant Eye Lens Aquaporin-0 Observed in Loosely Packed 3D Crystals
David Kozono
Journal of Molecular Biology, 2006
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Secondary structures comparison of aquaporin-1 and bacteriorhodopsin: a Fourier transform infrared spectroscopy study of two-dimensional membrane crystals
Petr Pancoska, Véronique Cabiaux
Biophysical Journal, 1997
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Insights into Cell Surface Expression, Supramolecular Organization, and Functions of Aquaporin 4 Isoforms in Astrocytes
Jernej Jorgačevski
Cells
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Orthogonal arrays of particle assembly are essential for normal aquaporin‐4 expression level in the brain
Mahmood Amiry-Moghaddam
Glia, 2020
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Simultaneous Binding of the N- and C-terminal Cytoplasmic Domains of Aquaporin 4 to Calmodulin May Contribute to Vesicular Trafficking
Roslyn M Bill
bioRxiv (Cold Spring Harbor Laboratory), 2021
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The C-terminus of Aquaporin-2 is necessary, but not sufficient, for routing of AQP2 to the apical membrane
Bas Van Balkom
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A feast of membrane protein structures in Madrid: Workshop: Pumps, channels and transporters: structure and function
Christopher Tate
EMBO reports, 2001
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Reconstitution of water channel function and 2D-crystallization of human aquaporin 8
Andreas Engel
Biochimica et Biophysica Acta (BBA) - Biomembranes, 2012
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Aquaporins within a Tetramer Exhibit Different Structural Conformations: An in Silico Study of the Human Aquaporin 5
Lorant Janosi
Biophysical Journal, 2013
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The Hidden Intricacies of Aquaporins: Remarkable Details in a Common Structural Scaffold
Natasha Trajkovska
Small
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