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Reduced numatrin/B23/nucleophosmin labeling in apoptotic Jurkat T-lymphoblasts
S D Patterson1, J S Grossman, P D'Andrea
1Cold Spring Harbor Laboratory, New York 11724-2208, USA.
Abstract:
Jurkat T-lymphoblasts were induced to undergo apoptosis by treatment with either EGTA (5 mM/24 h) or a high concentration of lovastatin (100 microM/48 h) to identify proteins that exhibited coordinate regulation between the two treatments and thus provide candidate proteins in the common apoptotic induction pathway. A pure population of apoptotic cells, as determined by morphology, "DNA laddering," and flow cytometry, was obtained by Percoll density gradient centrifugation. Cells of increased buoyant density were clearly apoptotic by all criteria. Following this gradient centrifugation, the cells were labeled with [35S]methionine/cysteine, and lysates were separated by two-dimensional polyacrylamide gel electrophoresis. Surprisingly, the two-dimensional polyacrylamide gel electrophoresis patterns generated from the apoptotic cells did not differ dramatically from that of control cells. Thus, apoptotic Jurkat cells are able to synthesize new proteins and do not exhibit extensive proteolysis. Subsequent quantitative analysis revealed that only five proteins exhibited decreases in turnover that were common to the two treatments. No increases in protein turnover were able to be confirmed across the replicate experiments. One of the proteins that showed decreased labeling by both apoptotic inductions was an abundant nuclear protein with a pI of 5.1 and M(r) 40,000. This protein was identified as numatrin/B23/nucleophosmin (NPM) based on internal amino acid sequence, and this identity was confirmed by immunoblotting and mass spectrometry. NPM is implicated in a range of diverse cellular functions, but its role in apoptosis is unclear.
Insights
Researchers identified nucleophosmin (NPM) as a key protein in apoptosis. Apoptotic Jurkat cells synthesize new proteins, with NPM showing decreased turnover in response to two different apoptotic stimuli.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Apoptosis, or programmed cell death, is crucial for development and disease.
- Identifying proteins involved in common apoptotic pathways is essential for understanding cell death.
- Previous studies have not fully elucidated the proteomic changes during apoptosis induction.
Purpose of the Study:
- To identify proteins with coordinated regulation during apoptosis.
- To find candidate proteins involved in common apoptotic pathways.
- To investigate the proteomic profile of apoptotic Jurkat T-lymphoblasts.
Main Methods:
- Induction of apoptosis in Jurkat T-lymphoblasts using EGTA or lovastatin.
- Isolation of pure apoptotic cells via Percoll density gradient centrifugation.
- Protein synthesis and turnover analysis using [35S]methionine/cysteine labeling and two-dimensional polyacrylamide gel electrophoresis.
- Protein identification using mass spectrometry and immunoblotting.
Main Results:
- Apoptotic Jurkat cells synthesize new proteins and do not exhibit significant proteolysis.
- Only five proteins showed decreased turnover common to both apoptotic treatments.
- Nucleophosmin (NPM), an abundant nuclear protein, was identified as one such protein with decreased labeling.
Conclusions:
- Apoptosis induction does not halt general protein synthesis in Jurkat cells.
- Nucleophosmin (NPM) turnover is coordinately regulated during apoptosis.
- The role of NPM in apoptosis requires further investigation.