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Published on: May 23, 2025
Ca2+ influx via TRPC channels induces NF-kappaB-dependent A20 expression to prevent thrombin-induced apoptosis in
Prabhakar B Thippegowda1, Vandana Singh, Premanand C Sundivakkam
1Dept. of Pharmacology, College of Medicine, Univ. of Illinois, 835 South Wolcott Ave., Chicago, IL 60612, USA.
Abstract:
NF-kappaB signaling is known to induce the expression of antiapoptotic and proinflammatory genes in endothelial cells (ECs). We have shown recently that Ca(2+) influx through canonical transient receptor potential (TRPC) channels activates NF-kappaB in ECs. Here we show that Ca(2+) influx signal prevents thrombin-induced apoptosis by inducing NF-kappaB-dependent A20 expression in ECs. Knockdown of TRPC1 expressed in human umbilical vein ECs with small interfering RNA (siRNA) suppressed thrombin-induced Ca(2+) influx and NF-kappaB activation in ECs. Interestingly, we observed that thrombin induced >25% of cell death (apoptosis) in TRPC1-knockdown ECs whereas thrombin had no effect on control or control siRNA-transfected ECs. To understand the basis of EC survival, we performed gene microarray analysis using ECs. Thrombin stimulation increased only a set of NF-kappaB-regulated genes 3- to 14-fold over basal levels in ECs. Expression of the antiapoptotic gene A20 was the highest among these upregulated genes. Like TRPC1 knockdown, thrombin induced apoptosis in A20-knockdown ECs. To address the importance of Ca(2+) influx signal, we measured thrombin-induced A20 expression in control and TRPC1-knockdown ECs. Thrombin-induced p65/RelA binding to A20 promoter-specific NF-kappaB sequence and A20 protein expression were suppressed in TRPC1-knockdown ECs compared with control ECs. Furthermore, in TRPC1-knockdown ECs, thrombin induced the expression of proapoptotic proteins caspase-3 and BAX. Importantly, thrombin-induced apoptosis in TRPC1-knockdown ECs was prevented by adenovirus-mediated expression of A20. These results suggest that Ca(2+) influx via TRPC channels plays a critical role in the mechanism of cell survival signaling through A20 expression in ECs.
Insights
Calcium influx via TRPC channels activates NF-kappaB signaling, preventing endothelial cell apoptosis. This pathway induces A20 expression, crucial for cell survival against thrombin. TRPC1 knockdown disrupts this protective mechanism.
Area of Science:
- Molecular Biology
- Cell Biology
- Cardiovascular Research
Background:
- NF-kappaB signaling regulates antiapoptotic and proinflammatory genes in endothelial cells (ECs).
- Canonical transient receptor potential (TRPC) channels mediate Ca(2+) influx, which activates NF-kappaB in ECs.
Purpose of the Study:
- To investigate the role of Ca(2+) influx through TRPC channels in preventing thrombin-induced apoptosis in ECs.
- To elucidate the mechanism involving NF-kappaB-dependent A20 expression in EC survival.
Main Methods:
- Small interfering RNA (siRNA) knockdown of TRPC1 in human umbilical vein ECs.
- Measurement of Ca(2+) influx, NF-kappaB activation, and gene/protein expression (A20, caspase-3, BAX).
- Gene microarray analysis to identify NF-kappaB-regulated genes.
- Adenovirus-mediated A20 expression.
Main Results:
- TRPC1 knockdown suppressed thrombin-induced Ca(2+) influx and NF-kappaB activation, leading to >25% EC apoptosis.
- Thrombin stimulation upregulated A20 expression, an antiapoptotic gene, via NF-kappaB.
- A20 knockdown mimicked TRPC1 knockdown effects; A20 re-expression prevented thrombin-induced apoptosis in TRPC1-knockdown ECs.
Conclusions:
- Ca(2+) influx via TRPC channels is critical for NF-kappaB activation and subsequent A20 expression.
- This signaling pathway plays a vital role in protecting ECs from thrombin-induced apoptosis.
- TRPC channels are key regulators of endothelial cell survival.
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