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Connexins: substrates and regulators of autophagy

Jegan Iyyathurai, Jean-Paul Decuypere, Luc Leybaert, Catheleyne D’hondt, Geert Bultynck

BMC Cell Biology · 2016 · ▲ 52 citations

Abstract

Connexins mediate intercellular communication by assembling into hexameric channel complexes that act as hemichannels and gap junction channels. Most connexins are characterized by a very rapid turn-over in a variety of cell systems. The regulation of connexin turn-over by phosphorylation and ubiquitination events has been well documented. Moreover, different pathways have been implicated in connexin degradation, including proteasomal and lysosomal-based pathways. Only recently, autophagy(definition) emerged as an important connexin-degradation pathway for different connexin isoforms. As such, conditions well known to induce autophagy have an immediate impact on the connexin-expression levels. This is not only limited to experimental conditions but also several pathophysiological conditions associated with autophagy (dys)function affect connexin levels and their presence at the cell surface as gap junctions. Finally, connexins are not only substrates of autophagy but also emerge as regulators of the autophagy process. In particular, several connexin isoforms appear to recruit pre-autophagosomal autophagy-related proteins, including Atg16 and PI3K-complex components, to the plasma membrane, thereby limiting their availability and capacity for regulating autophagy.

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Provenance

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OpenAlex
DOI
10.1186/s12860-016-0093-9
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2026-06-06 MST

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APA
Iyyathurai, J., Decuypere, J., Leybaert, L., D’hondt, C., &amp; Bultynck, G. (2016). Connexins: substrates and regulators of autophagy. <em>BMC Cell Biology</em>. https://doi.org/10.1186/s12860-016-0093-9
Vancouver
Iyyathurai J, Decuypere J, Leybaert L, D’hondt C, Bultynck G. Connexins: substrates and regulators of autophagy. BMC Cell Biology. 2016. doi:10.1186/s12860-016-0093-9.
BibTeX
@article{jegan2016Connex, title = {Connexins: substrates and regulators of autophagy}, author = {Jegan Iyyathurai and Jean-Paul Decuypere and Luc Leybaert and Catheleyne D’hondt and Geert Bultynck}, journal = {BMC Cell Biology}, year = {2016}, doi = {10.1186/s12860-016-0093-9}, }

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