Reorientation of Aquaporin-1 Topology during Maturation in the Endoplasmic Reticulum
- 1 September 2000
- journal article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 11 (9) , 2973-2985
- https://doi.org/10.1091/mbc.11.9.2973
Abstract
The topology of most eukaryotic polytopic membrane proteins is established cotranslationally in the endoplasmic reticulum (ER) through a series of coordinated translocation and membrane integration events. For the human aquaporin water channel AQP1, however, the initial four-segment-spanning topology at the ER membrane differs from the mature six-segment-spanning topology at the plasma membrane. Here we use epitope-tagged AQP1 constructs to follow the transmembrane (TM) orientation of key internal peptide loops in Xenopus oocyte and cell-free systems. This analysis revealed that AQP1 maturation in the ER involves a novel topological reorientation of three internal TM segments and two peptide loops. After the synthesis of TMs 4-6, TM3 underwent a 180-degree rotation in which TM3 C-terminal flanking residues were translocated from their initial cytosolic location into the ER lumen and N-terminal flanking residues underwent retrograde translocation from the ER lumen to the cytosol. These events convert TM3 from a type I to a type II topology and reposition TM2 and TM4 into transmembrane conformations consistent with the predicted six-segment-spanning AQP1 topology. AQP1 topological reorientation was also associated with maturation from a protease-sensitive conformation to a protease-resistant structure with water channel function. These studies demonstrate that initial protein topology established via cotranslational translocation events in the ER is dynamic and may be modified by subsequent steps of folding and/or maturation.Keywords
This publication has 61 references indexed in Scilit:
- The Aqueous Pore through the Translocon Has a Diameter of 40–60 Å during Cotranslational Protein Translocation at the ER MembraneCell, 1997
- Membrane topology of the high-affinity L-glutamate transporter (GLAST-1) of the central nervous system.The Journal of cell biology, 1996
- Biogenesis of Polytopic Membrane Proteins: Membrane Segments Assemble within Translocation Channels prior to Membrane IntegrationCell, 1996
- The Cotranslational Integration of Membrane Proteins into the Phospholipid Bilayer Is a Multistep ProcessCell, 1996
- A posttargeting signal sequence recognition event in the endoplasmic reticulum membraneCell, 1995
- Biogenesis and transmembrane topology of the CHIP28 water channel at the endoplasmic reticulum.The Journal of cell biology, 1994
- Appearance of Water Channels in Xenopus Oocytes Expressing Red Cell CHIP28 ProteinScience, 1992
- Membrane protein spanning segments as export signalsJournal of Molecular Biology, 1992
- Site-directed mutagenesis by overlap extension using the polymerase chain reactionGene, 1989
- Insertion of a multispanning membrane protein occurs sequentially and requires only one signal sequenceCell, 1988