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Regulation of gap junction intercellular communication by connexin ubiquitination: physiological and pathophysiological implications

Permanent lenke
https://hdl.handle.net/10037/17248
DOI
https://doi.org/10.1007/s00018-019-03285-0
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article.pdf (1.383Mb)
Publisert versjon (PDF)
Dato
2019-09-09
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Forfatter
Totland, Max; Rasmussen, Nikoline Lander; Knudsen, Lars Mørland; Leithe, Edward
Sammendrag
Gap junctions consist of arrays of intercellular channels that enable adjacent cells to communicate both electrically and metabolically. Gap junctions have a wide diversity of physiological functions, playing critical roles in both excitable and non-excitable tissues. Gap junction channels are formed by integral membrane proteins called connexins. Inherited or acquired alterations in connexins are associated with numerous diseases, including heart failure, neuropathologies, deafness, skin disorders, cataracts and cancer. Gap junctions are highly dynamic structures and by modulating the turnover rate of connexins, cells can rapidly alter the number of gap junction channels at the plasma membrane in response to extracellular or intracellular cues. Increasing evidence suggests that ubiquitination has important roles in the regulation of endoplasmic reticulum-associated degradation of connexins as well as in the modulation of gap junction endocytosis and post-endocytic sorting of connexins to lysosomes. In recent years, researchers have also started to provide insights into the physiological roles of connexin ubiquitination in specific tissue types. This review provides an overview of the advances made in understanding the roles of connexin ubiquitination in the regulation of gap junction intercellular communication and discusses the emerging physiological and pathophysiological implications of these processes.
Forlag
Springer
Sitering
Totland MZ, Rasmussen NL, Knudsen LM, Leithe E. Regulation of gap junction intercellular communication by connexin ubiquitination: physiological and pathophysiological implications. Cellular and Molecular Life Sciences (CMLS). 2019:1-19
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  • Artikler, rapporter og annet (medisinsk biologi) [1103]
Copyright 2019 The Author(s)

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