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Proteolytic cleavage of phospholipase C-gamma1 during apoptosis in Molt-4 cells
1Department of Signal Transduction, Division of Molecular and Life Science, Pohang University of Science and Technology, Kyungbuk, Pohang 790-784, Republic of Korea.
Abstract:
Apoptosis is a cell suicide mechanism that requires the activation of cellular death proteases for its induction. We examined whether the progress of apoptosis involves cleavage of phospholipase C-gamma1 (PLC-gamma1), which plays a pivotal role in mitogenic signaling pathway. Pretreatment of T leukemic Molt-4 cells with PLC inhibitors such as U-73122 or ET-18-OCH(3) potentiated etoposide-induced apoptosis in these cells. PLC-gamma1 was fragmented when Molt-4 cells were treated with several apoptotic stimuli such as etoposide, ceramides, and tumor necrosis factor alpha. Cleavage of PLC-gamma1 was blocked by overexpression of Bcl-2 and by specific inhibitors of caspases such as Z-DEVD-CH(2)F and YVAD-cmk. Purified caspase-3 and caspase-7, group II caspases, cleaved PLC-gamma1 in vitro and generated a cleavage product of the same size as that observed in vivo, suggesting that PLC-gamma1 is cleaved by group II caspases in vivo. From point mutagenesis studies, Ala-Glu-Pro-Asp(770) was identified to be a cleavage site within PLC-gamma1. Epidermal growth factor receptor (EGFR) -induced tyrosine phosphorylation of PLC-gamma1 resulted in resistance to cleavage by caspase-3 in vitro. Furthermore, cleaved PLC-gamma1 could not be tyrosine-phosphorylated by EGFR in vitro. In addition, tyrosine-phosphorylated PLC-gamma1 was not significantly cleaved during etoposide-induced apoptosis in Molt-4 cells. This suggests that the growth factor-induced tyrosine phosphorylation may suppress apoptosis-induced fragmentation of PLC-gamma1. We provide evidence for the biochemical relationship between PLC-gamma1-mediated signal pathway and apoptotic signal pathway, indicating that the defect of PLC-gamma1-mediated signaling pathway can facilitate an apoptotic progression.
Insights
Apoptosis involves phospholipase C-gamma1 (PLC-gamma1) fragmentation by caspases. Growth factor signaling via tyrosine phosphorylation of PLC-gamma1 may inhibit this cell death process.
Area of Science:
- Biochemistry
- Cell Biology
- Molecular Biology
Background:
- Apoptosis is a regulated cell death process crucial for development and tissue homeostasis.
- Phospholipase C-gamma1 (PLC-gamma1) is a key enzyme in mitogenic signaling pathways.
- The interplay between signaling pathways and apoptosis is not fully understood.
Purpose of the Study:
- To investigate the role of PLC-gamma1 cleavage during apoptosis.
- To identify the caspases responsible for PLC-gamma1 fragmentation.
- To determine if tyrosine phosphorylation affects PLC-gamma1 cleavage in apoptosis.
Main Methods:
- Treatment of Molt-4 cells with apoptotic stimuli and PLC inhibitors.
- Analysis of PLC-gamma1 fragmentation using Western blotting.
- In vitro cleavage assays with purified caspases.
- Point mutagenesis to identify cleavage sites.
- Investigation of epidermal growth factor receptor (EGFR)-induced tyrosine phosphorylation.
Main Results:
- PLC-gamma1 fragmentation was observed during etoposide, ceramide, and TNF-alpha-induced apoptosis.
- Caspase inhibitors and Bcl-2 overexpression blocked PLC-gamma1 cleavage.
- Caspase-3 and caspase-7 directly cleaved PLC-gamma1 at Asp770.
- EGFR-induced tyrosine phosphorylation of PLC-gamma1 conferred resistance to caspase-3 cleavage.
- Tyrosine-phosphorylated PLC-gamma1 was resistant to cleavage during apoptosis.
Conclusions:
- PLC-gamma1 is a novel substrate for caspases during apoptosis.
- Tyrosine phosphorylation of PLC-gamma1 by growth factors may serve as a protective mechanism against apoptosis.
- A link exists between PLC-gamma1 signaling and apoptotic pathways, suggesting defects can promote cell death.