| Literature DB >> 22606027 |
Ali Mobasheri1, Elisa Trujillo2,3, Mari-Francis Arteaga3, Pablo Martín-Vasallo3.
Abstract
Membrane transport systems participate in fundamental activities such as cell cycle control, proliferation, survival, volume regulation, pH maintenance and regulation of extracellular matrix synthesis. Multiple isoforms of Na(+), K(+)-ATPase are expressed in primary chondrocytes. Some of these isoforms have previously been reported to be expressed exclusively in electrically excitable cells (i.e., cardiomyocytes and neurons). Studying the distribution of Na(+), K(+)-ATPase isoforms in chondrocytes makes it possible to document the diversity of isozyme pairing and to clarify issues concerning Na(+), K(+)-ATPase isoform abundance and the physiological relevance of their expression. In this study, we investigated the expression of Na(+), K(+)-ATPase in a human chondrocyte cell line (C-20/A4) using a combination of immunological and biochemical techniques. A panel of well-characterized antibodies revealed abundant expression of the α1, β1 and β2 isoforms. Western blot analysis of plasma membranes confirmed the above findings. Na(+), K(+)-ATPase consists of multiple isozyme variants that endow chondrocytes with additional homeostatic control capabilities. In terms of Na(+), K(+)-ATPase expression, the C-20/A4 cell line is phenotypically similar to primary and in situ chondrocytes. However, unlike freshly isolated chondrocytes, C-20/A4 cells are an easily accessible and convenient in vitro model for the study of Na(+), K(+)-ATPase expression and regulation in chondrocytes.Entities:
Keywords: C-20/A4; FACS analysis; Na+, K+-ATPase; cell line; chondrocyte; immunofluorescence; isoform; isozyme; subunit; western blotting
Mesh:
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Year: 2012 PMID: 22606027 PMCID: PMC3344263 DOI: 10.3390/ijms13045019
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 6.208
Figure 1Western blots showing expression of Na+, K+-ATPase α subunit isoforms in human brain and skeletal muscle (positive control tissues); α1, α2 and α3 (112 kDa). + or − refer to samples being heated or not heated before electrophoresis. The data presented confirms that the α6F, McB2 and XVIF9G10 monoclonal antibodies recognize their target isoforms (α1, α2 and α3, respectively) in human brain and skeletal muscle.
Figure 2(a) Electrophoretic separation of human chondrocyte microsomes using Coomassie blue stained NuPAGE polyacrylamide gel. Molecular weight markers are shown in kDa (lane M) together with human chondrocyte plasma membrane enriched microsomal fractions (lanes 1 and 2). Lane 3 is a representative densitometric scan of the membrane proteins resolved in lane 2 and shows that most of the membrane proteins expressed in human chondrocyte-like cells are between 30 and 200 kDa markers with large aggregate peaks around 200, 95, 68 and 50 kDa. (b) Western blots showing expression of Na+, K+-ATPase isoforms in human chondrocyte-like cells; α1 and α3 (110 kDa), β1 and β2 (55 kDa) and the absence of α2. (c) FACS analysis of chondrocytes immunostained with monoclonal antibodies to the α subunit of Na+, K+-ATPase. In each panel the density plot on the left shows the size distribution of the cells analyzed and the histogram on the right shows the FITC positive cells as a frequency distribution. The highest FITC staining was observed with the α1 specific antibody followed by the pan α antibody. The lowest staining was observed with the non-immune control anti-mouse IgG followed by α2 and α3 specific antibodies.
Quantitative analysis of Na+, K+-ATPase isoform distribution in C-20/A4 cells. Chondrocytes immunostained using α subunit specific antibodies and secondary FITC-conjugated anti-mouse IgG were examined by FACScan and the data analyzed using WinMDI 2.8 flow cytometry software [31].
| Antigen | Number of Cells Counted | Number of FITC Positive Cells | % FITC Labeling | Mean Fluorescence Intensity |
|---|---|---|---|---|
| α1 | 6800 | 4568 | 67.18 | 19.2 |
| α2 | 3963 | 45 | 1.14 | 16.5 |
| α3 | 5904 | 312 | 5.28 | 16.1 |
| β1 | 195 | 155 | 79.49 | 36.18 |
| β2 | 3287 | 2866 | 87.19 | 45.83 |
Figure 3Indirect immunofluorescence localization of α and β isoforms of Na+, K+-ATPase in human chondrocyte-like cells attached to poly-l-lysine coated slides. Cells were probed with α and β isoform specific antibodies and secondary Fluorescein-conjugated IgG. Nuclei were counterstained red with propidium iodide. Bar indicates 10 μm.
Figure 4Immunohistochemical detection of Na+, K+-ATPase α isoforms in human chondrocytes using alkaline phosphatase-labeled anti-mouse and anti-rabbit secondary antibodies. Detection was by Fast Red TR/Napthol AS-MX phosphate (4-chloro-2-methylbenzenediazonium/3-Hydroxy-2-naphtoic acid 2,4-dimethylanilide phosphate). The following antibodies were used: pan α antibody, α1 (α 6F) antibody, α2 (McB2) antibody and α3 (XVIF9G10) antibody. Original magnifications in each panel × 400. Bar indicates 10 μm.
Isoform specific monoclonal and polyclonal antibodies employed in this study.
| Antibody | Isoform | Working Dilution | Source | Reference |
|---|---|---|---|---|
| mAb 9A7 (pan α monoclonal) | α isoforms | 1:100 | M. Takahashi | [ |
| α5 | α isoforms | Neat Supernatant | D.M. Fambrough and DSHB | [ |
| α6F (monoclonal) | α1 | Neat Supernatant | D.M. Fambrough and DSHB | [ |
| α620 (polyclonal) | α1 | 1:100–1:200 | M. Caplan | [ |
| McB2 (monoclonal) | α2 | Neat Supernatant | K.J. Sweadner | [ |
| McBX3 (monoclonal) | α3 | Neat Supernatant | K.J. Sweadner | [ |
| XVIF9G10 (monoclonal) | α3 | Neat Supernatant | K.J. Sweadner | [ |
| SpETb1 (polyclonal) | β1 | 1:200–1:400 | P. Martín-Vasallo | [ |
| SpETb2 (polyclonal) | β2 | 1:200–1:400 | P. Martín-Vasallo | [ |
The α5 and α6F monoclonal antibodies were developed by D. Fambrough were obtained from the Developmental Studies Hybridoma Bank (DSHB [54]) developed under the auspices of the NICHD and maintained by The University of Iowa, Department of Biological Sciences, Iowa City, IA 52242, USA.
The α5 monoclonal broadly recognizes Na+, K+-ATPase α subunits of avian, mammalian and insect species. There are 4 known α isoforms and the designation “α5” does not indicate the existence of a fifth Na+, K+-ATPase α isoform.