The small molecule raptinal can simultaneously induce apoptosis and inhibit PANX1 activity
Jascinta P Santavanond1,2, Yu-Hsin Chiu3,4, Rochelle Tixeira5,6
1Department of Biochemistry and Chemistry, La Trobe Institute for Molecular Science, La Trobe University, Melbourne, Victoria, 3086, Australia.
Abstract:
Discovery of new small molecules that can activate distinct programmed cell death pathway is of significant interest as a research tool and for the development of novel therapeutics for pathological conditions such as cancer and infectious diseases. The small molecule raptinal was discovered as a pro-apoptotic compound that can rapidly trigger apoptosis by promoting the release of cytochrome c from the mitochondria and subsequently activating the intrinsic apoptotic pathway. As raptinal is very effective at inducing apoptosis in a variety of different cell types in vitro and in vivo, it has been used in many studies investigating cell death as well as the clearance of dying cells. While examining raptinal as an apoptosis inducer, we unexpectedly identified that in addition to its pro-apoptotic activities, raptinal can also inhibit the activity of caspase-activated Pannexin 1 (PANX1), a ubiquitously expressed transmembrane channel that regulates many cell death-associated processes. By implementing numerous biochemical, cell biological and electrophysiological approaches, we discovered that raptinal can simultaneously induce apoptosis and inhibit PANX1 activity. Surprisingly, raptinal was found to inhibit cleavage-activated PANX1 via a mechanism distinct to other well-described PANX1 inhibitors such as carbenoxolone and trovafloxacin. Furthermore, raptinal also interfered with PANX1-regulated apoptotic processes including the release of the 'find-me' signal ATP, the formation of apoptotic cell-derived extracellular vesicles, as well as NLRP3 inflammasome activation. Taken together, these data identify raptinal as the first compound that can simultaneously induce apoptosis and inhibit PANX1 channels. This has broad implications for the use of raptinal in cell death studies as well as in the development new PANX1 inhibitors.
Insights
Raptinal, a pro-apoptotic compound, was found to also inhibit Pannexin 1 (PANX1) channels. This dual action offers new therapeutic potential for cancer and infectious diseases.
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- Small molecules activating programmed cell death are crucial for research and therapeutics.
- Raptinal is a known pro-apoptotic compound that triggers the intrinsic apoptotic pathway.
Purpose of the Study:
- To investigate the dual role of raptinal in apoptosis induction and Pannexin 1 (PANX1) channel activity.
- To explore raptinal's potential as a novel therapeutic agent and research tool.
Main Methods:
- Biochemical assays
- Cell biological studies
- Electrophysiological recordings
Main Results:
- Raptinal simultaneously induces apoptosis and inhibits caspase-activated PANX1 channels.
- Raptinal's PANX1 inhibition mechanism is distinct from known inhibitors.
- Raptinal interferes with PANX1-regulated processes like ATP release and NLRP3 inflammasome activation.
Conclusions:
- Raptinal is the first compound identified to both induce apoptosis and inhibit PANX1 channels.
- These findings have significant implications for cell death research and the development of new PANX1 inhibitors.
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