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Updated: Nov 15, 2025

Detection and Isolation of Apoptotic Bodies to High Purity
Published on: August 12, 2018
Pannexin-1 channel regulates nuclear content packaging into apoptotic bodies and their size
Thanh Kha Phan1, Pamali Fonseka1, Rochelle Tixeira2
1Department of Biochemistry and Genetics, La Trobe Institute for Molecular Science, La Trobe University, Melbourne, Victoria, Australia.
Abstract:
Apoptotic bodies (ApoBDs), which are large extracellular vesicles exclusively released by apoptotic cells, possess therapeutically exploitable properties including biomolecule loadability and transferability. However, current limited understanding of ApoBD biology has hindered its exploration for clinical use. Particularly, as ApoBD-accompanying cargoes (e.g., nucleic acids and proteins) have major influence on their functionality, further insights into the mechanism of biomolecule sorting into ApoBDs are critical to unleash their therapeutic potential. Previous studies suggested pannexin 1 (PANX1) channel, a negative regulator of ApoBD biogenesis, can modify synaptic vesicle contents. We also reported that trovafloxacin (a PANX1 inhibitor) increases proportion of ApoBDs containing DNA. Therefore, we sought to define the role of PANX1 in regulating the sorting of nuclear content into ApoBDs. Here, using flow cytometry and label-free quantitative proteomic analyses, we showed that targeting PANX1 activity during apoptosis, via either pharmacological inhibition or genetic disruption, resulted in enrichment of both DNA and nuclear proteins in ApoBDs that were unexpectedly smaller in size. Our data suggest that PANX1, besides being a key regulator of ApoBD formation, also functions as a negative regulator of nuclear content packaging and modulator of ApoBD size. Together, our findings provide further insights into ApoBD biology and form a novel conceptual framework for ApoBD-based therapies through pharmacologically manipulating ApoBD contents.
Insights
Pannexin 1 (PANX1) channel activity regulates the packaging of DNA and nuclear proteins into apoptotic bodies (ApoBDs). Inhibiting PANX1 enriches nuclear content in smaller ApoBDs, offering therapeutic potential.
Area of Science:
- Cell Biology
- Extracellular Vesicles
- Apoptosis
Background:
- Apoptotic bodies (AboBDs) are extracellular vesicles with therapeutic potential due to their biomolecule cargo.
- Understanding ApoBD cargo sorting is crucial for clinical applications.
- Pannexin 1 (PANX1) channel influences ApoBD biogenesis and cargo.
Purpose of the Study:
- To define the role of PANX1 in regulating nuclear content sorting into ApoBDs.
- To investigate how PANX1 activity affects ApoBD size and composition.
Main Methods:
- Flow cytometry analysis of ApoBDs.
- Label-free quantitative proteomic analysis.
- Pharmacological inhibition and genetic disruption of PANX1.
Main Results:
- Targeting PANX1 activity increased DNA and nuclear protein enrichment in ApoBDs.
- ApoBDs with enriched nuclear content were smaller in size.
- PANX1 acts as a negative regulator of nuclear content packaging and a modulator of ApoBD size.
Conclusions:
- PANX1 plays a dual role in regulating ApoBD formation and nuclear cargo sorting.
- Pharmacological manipulation of PANX1 offers a strategy for developing ApoBD-based therapies.
- Findings provide insights into ApoBD biology and therapeutic potential.
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