Cell Cycle-Dependent Protein Fingerprint from a Single Cancer Cell: Image Cytometry Coupled with Single-Cell Capillary Sieving Electrophoresis
- 31 May 2003
- journal article
- research article
- Published by American Chemical Society (ACS) in Analytical Chemistry
- Vol. 75 (14) , 3495-3501
- https://doi.org/10.1021/ac034153r
Abstract
Study of cell cycle-dependent protein expression is important in oncology, stem cell research, and developmental biology. In this paper, we report the first protein fingerprint from a single cell with known phase in the cell cycle. To determine that phase, we treated HT-29 colon cancer cells with Hoescht 33342, a vital nuclear stain. A microscope was used to measure the fluorescence intensity from one treated cell; in this form of image cytometry, the fluorescence intensity is proportional to the cell's DNA content, which varies in a predictable fashion during the cell cycle. To generate the protein fingerprint, the cell was aspirated into the separation capillary and lysed. Proteins were fluorescently labeled with 3-(2-furoylquinoline-2-carboxaldehyde, separated by capillary sieving electrophoresis, and detected by laser-induced fluorescence. This form of electrophoresis is the capillary version of SDS−PAGE. The single-cell electropherogram partially resolved ∼25 components in a 30-min separation, and the dynamic range of the detector exceeded 5000. There was a large cell-to-cell variation in protein expression, averaging 40% relative standard deviation across the electropherogram. The dominant source of variation was the phase of the cell in the cell cycle; on average, ∼60% of the cell-to-cell variance in protein expression was associated with the cell cycle. Cells in the G1 and G2/M phases of the cell cycle had 27 and 21% relative standard deviations in protein expression, respectively. Cells in the G2/M phase generated signals that were twice the amplitude of the signals generated by G1 phase cells, as expected for cells that are soon to divide into two daughter cells. When electropherograms were normalized to total protein content, the expression of only one component was dependent on cell cycle at the 99% confidence limit. That protein is tentatively identified as cytokeratin 18 in a companion paper.Keywords
This publication has 12 references indexed in Scilit:
- Comprehensive karyotyping of the HT‐29 colon adenocarcinoma cell lineGenes, Chromosomes and Cancer, 2002
- Fully Automated Two-dimensional Capillary Electrophoresis for High Sensitivity Protein AnalysisMolecular & Cellular Proteomics, 2002
- Protein profiles of the Chinese hamster ovary cells in the resting and proliferating stagesElectrophoresis, 2001
- Dynamics of human keratin 18 phosphorylation: polarized distribution of phosphorylated keratins in simple epithelial tissues.The Journal of cell biology, 1995
- Analysis of Single Cells by Capillary Electrophoresis with On-Column Derivatization and Laser-Induced Fluorescence DetectionAnalytical Chemistry, 1995
- Checkpoints: Controls That Ensure the Order of Cell Cycle EventsScience, 1989
- Microcolumn Separations and the Analysis of Single CellsScience, 1989
- Infrared-enhanced multiphoton ionization detection of aromatic molecules in solutionAnalytical Chemistry, 1988
- Sequential protein analysis from single identified neurons of Aplysia californica. A microelectrophoretic technique involving polyacrylamide gradient gels and isoelectric focusing.Journal of Histochemistry & Cytochemistry, 1976
- Nucleotide Analysis on the Cyto-ScaleNature, 1953