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1.
Biosens Bioelectron ; 78: 87-91, 2016 Apr 15.
Article in English | MEDLINE | ID: mdl-26594890

ABSTRACT

Here we propose a carbon nanotube (CNT) field-effect transistor (FET) functionalized with aquaporin-4 (AQP4) extracellular loop peptides for the rapid detection of AQP4 antibody without pretreatment. Neuromyelitis optica (NMO) is a rare disease of the central nerve system that affects the optic nerves and the spinal cord. NMO-IgG, a serum antibody in patients, is highly specific for NMO and targets AQP4. We synthesized AQP4 extracellular loop peptides, known as primary autoimmune target in NMO, and immobilized them onto CNT-FET. The sensor showed p-type FET characteristics after the functionalization of peptides. The sensor was able to detect antibody with a detection limit of 1 ng l(-1). Moreover, AQP4 antibody in human serum was detected without any pretreatment. These results indicate that the biosensor can be used for rapid and simple detection of NMO antibody.


Subject(s)
Antibodies/isolation & purification , Aquaporin 4/isolation & purification , Biosensing Techniques/methods , Neuromyelitis Optica/blood , Antibodies/immunology , Aquaporin 4/immunology , Humans , Immunoglobulin G/blood , Immunoglobulin G/immunology , Nanotubes, Carbon/chemistry , Neuromyelitis Optica/immunology
2.
J Neurosci Methods ; 211(1): 31-9, 2012 Oct 15.
Article in English | MEDLINE | ID: mdl-22967487

ABSTRACT

Aquaporin-4 (AQP4) is known to have two main isoforms M1 and M23 in the brain. Immunoblot analyses have provided evidence of additional AQP4 immunopositive bands, suggesting that the repertoire of AQP4 isoforms is broader than previously assumed. As isoforms beyond M1 and M23 are not observed in recombinant systems, investigation of novel isoforms requires the use of a native source. Here we report purification of AQP4 to three silver-stained proteins on SDS-PAGE. This was achieved by organelle separation, alkaline stripping of cellular membranes, detergent solubilization and multiple chromatographic steps. The three proteins that co-purified were identified as AQP4 by mass spectrometry. These results represent the first purification of AQP4 from a native source and demonstrate by mass spectrometry the presence of a third AQP4 isoform of 36 kDa in the rat brain. Immunoblots revealed that the same isoform is present in the mouse, pig, and human brain.


Subject(s)
Aquaporin 4/chemistry , Brain Chemistry/physiology , Ammonium Sulfate , Animals , Aquaporin 4/isolation & purification , Cell Membrane/chemistry , Chromatography, Gel , Chromatography, Ion Exchange , Detergents/chemistry , Durapatite/chemistry , Electrophoresis, Polyacrylamide Gel , Female , Immunochemistry , Isomerism , Mass Spectrometry , Rats , Rats, Wistar , Solvents , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
3.
PLoS One ; 5(9): e12972, 2010 Sep 24.
Article in English | MEDLINE | ID: mdl-20885983

ABSTRACT

The continuous progress in the structural and functional characterization of aquaporins increasingly attracts attention to study their roles in certain mammalian diseases. Although several structures of aquaporins have already been solved by crystallization, the challenge of producing sufficient amounts of functional proteins still remains. CF (cell free) expression has emerged in recent times as a promising alternative option in order to synthesize large quantities of membrane proteins, and the focus of this report was to evaluate the potential of this technique for the production of eukaryotic aquaporins. We have selected the mouse aquaporin 4 as a representative of mammalian aquaporins. The protein was synthesized in an E. coli extract based cell-free system with two different expression modes, and the efficiencies of two modes were compared. In both, the P-CF (cell-free membrane protein expression as precipitate) mode generating initial aquaporin precipitates as well as in the D-CF (cell-free membrane protein expression in presence of detergent) mode, generating directly detergent solubilized samples, we were able to obtain mg amounts of protein per ml of cell-free reaction. Purified aquaporin samples solubilized in different detergents were reconstituted into liposomes, and analyzed for the water channel activity. The calculated P(f) value of proteoliposome samples isolated from the D-CF mode was 133 µm/s at 10°C, which was 5 times higher as that of the control. A reversible inhibitory effect of mercury chloride was observed, which is consistent with previous observations of in vitro reconstituted aquaporin 4. In this study, a fast and convenient protocol was established for functional expression of aquaporins, which could serve as basis for further applications such as water filtration.


Subject(s)
Aquaporin 4/genetics , Aquaporin 4/metabolism , Protein Engineering/methods , Animals , Aquaporin 4/isolation & purification , Cell-Free System/metabolism , Escherichia coli/chemistry , Escherichia coli/genetics , Escherichia coli/metabolism , Gene Expression , Membrane Proteins/genetics , Membrane Proteins/isolation & purification , Membrane Proteins/metabolism , Mice
4.
Biochemistry ; 47(8): 2631-7, 2008 Feb 26.
Article in English | MEDLINE | ID: mdl-18247481

ABSTRACT

Square arrays are prominent structures in plasma membranes of brain, muscle, and kidneys with an unknown function. So far, the analysis of these arrays has been restricted to freeze fracture preparations, which have shown square arrays to contain the water channel Aquaporin-4 (AQP4). Using Blue-Native PAGE immunoblots, we provide evidence that higher-order AQP4 complexes correspond to square arrays, with the AQP4 isoform M23 playing a dominant role. Our data are consistent with the idea that square arrays consist of aggregates of AQP4 tetramers complexed with multiples of dimers. By comparison, Aquaporin-1 and Aquaporin-9 form tetramers, but not higher-order complexes. AQP4 square arrays are stable under several biochemical purification steps. Analyzing the internal composition of the higher-order complexes by 2D gels, we demonstrate that the square arrays in addition to M23 also invariably contain AQP4, M1, and a novel AQP4 isoform that we call Mz. The visualization AQP4 square arrays by a rapid, biochemical assay provides new insight in the molecular organization of square arrays and gives further proof of the heterogeneity of AQP4 square arrays in vivo.


Subject(s)
Aquaporin 4/metabolism , Brain/metabolism , Cell Membrane Structures/metabolism , Animals , Aquaporin 4/isolation & purification , Brain/drug effects , Cell Membrane Structures/drug effects , Detergents/pharmacology , Dimerization , Electrophoresis, Gel, Two-Dimensional/methods , HeLa Cells , Humans , Male , Mice , Nasal Mucosa/metabolism , Protein Isoforms/metabolism , Rats , Rats, Wistar
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