Internal translation of Gja1 (Connexin43) to produce GJA1-20k: Implications for arrhythmia and ischemic-preconditioning
Internal translation is a form of post-translation modification as it produces different proteins from one mRNA molecule by beginning translation at a methionine coding triplet downstream of the first methionine. Internal translation can eliminate domains of proteins that otherwise restrict movement...
| Published in: | Frontiers in Physiology |
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| Main Authors: | , |
| Format: | Article |
| Language: | English |
| Published: |
Frontiers Media S.A.
2022-12-01
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| Subjects: | |
| Online Access: | https://www.frontiersin.org/articles/10.3389/fphys.2022.1058954/full |
| _version_ | 1856973563513274368 |
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| author | Claire C. Whisenant Robin M. Shaw |
| author_facet | Claire C. Whisenant Robin M. Shaw |
| author_sort | Claire C. Whisenant |
| collection | DOAJ |
| container_title | Frontiers in Physiology |
| description | Internal translation is a form of post-translation modification as it produces different proteins from one mRNA molecule by beginning translation at a methionine coding triplet downstream of the first methionine. Internal translation can eliminate domains of proteins that otherwise restrict movement or activity, thereby creating profound functional diversity. Connexin43 (Cx43), encoded by the gene Gja1, is the main gap junction protein necessary for propagating action potentials between adjacent cardiomyocytes. Gja1 can be internally translated to produce a peptide 20 kD in length named GJA1-20k. This review focuses on the role of GJA1-20k in maintaining cardiac electrical rhythm as well as in ischemic preconditioning (IPC). Connexin43 is the only ion channel we are aware that has been reported to be subject to internal translation. We expect many other ion channels also undergo internal translation. The exploration of post-translational modification of ion channels, and in particular of internal translation, has the potential to greatly increase our understanding of both canonical and non-canonical ion channel biology. |
| format | Article |
| id | doaj-art-0a34c105bed64acda1704020a5c938cc |
| institution | Directory of Open Access Journals |
| issn | 1664-042X |
| language | English |
| publishDate | 2022-12-01 |
| publisher | Frontiers Media S.A. |
| record_format | Article |
| spelling | doaj-art-0a34c105bed64acda1704020a5c938cc2025-08-19T19:59:18ZengFrontiers Media S.A.Frontiers in Physiology1664-042X2022-12-011310.3389/fphys.2022.10589541058954Internal translation of Gja1 (Connexin43) to produce GJA1-20k: Implications for arrhythmia and ischemic-preconditioningClaire C. WhisenantRobin M. ShawInternal translation is a form of post-translation modification as it produces different proteins from one mRNA molecule by beginning translation at a methionine coding triplet downstream of the first methionine. Internal translation can eliminate domains of proteins that otherwise restrict movement or activity, thereby creating profound functional diversity. Connexin43 (Cx43), encoded by the gene Gja1, is the main gap junction protein necessary for propagating action potentials between adjacent cardiomyocytes. Gja1 can be internally translated to produce a peptide 20 kD in length named GJA1-20k. This review focuses on the role of GJA1-20k in maintaining cardiac electrical rhythm as well as in ischemic preconditioning (IPC). Connexin43 is the only ion channel we are aware that has been reported to be subject to internal translation. We expect many other ion channels also undergo internal translation. The exploration of post-translational modification of ion channels, and in particular of internal translation, has the potential to greatly increase our understanding of both canonical and non-canonical ion channel biology.https://www.frontiersin.org/articles/10.3389/fphys.2022.1058954/fullGJA1-20kConnexin43mitochondriaischemiareperfusionischemic precondioning |
| spellingShingle | Claire C. Whisenant Robin M. Shaw Internal translation of Gja1 (Connexin43) to produce GJA1-20k: Implications for arrhythmia and ischemic-preconditioning GJA1-20k Connexin43 mitochondria ischemia reperfusion ischemic precondioning |
| title | Internal translation of Gja1 (Connexin43) to produce GJA1-20k: Implications for arrhythmia and ischemic-preconditioning |
| title_full | Internal translation of Gja1 (Connexin43) to produce GJA1-20k: Implications for arrhythmia and ischemic-preconditioning |
| title_fullStr | Internal translation of Gja1 (Connexin43) to produce GJA1-20k: Implications for arrhythmia and ischemic-preconditioning |
| title_full_unstemmed | Internal translation of Gja1 (Connexin43) to produce GJA1-20k: Implications for arrhythmia and ischemic-preconditioning |
| title_short | Internal translation of Gja1 (Connexin43) to produce GJA1-20k: Implications for arrhythmia and ischemic-preconditioning |
| title_sort | internal translation of gja1 connexin43 to produce gja1 20k implications for arrhythmia and ischemic preconditioning |
| topic | GJA1-20k Connexin43 mitochondria ischemia reperfusion ischemic precondioning |
| url | https://www.frontiersin.org/articles/10.3389/fphys.2022.1058954/full |
| work_keys_str_mv | AT clairecwhisenant internaltranslationofgja1connexin43toproducegja120kimplicationsforarrhythmiaandischemicpreconditioning AT robinmshaw internaltranslationofgja1connexin43toproducegja120kimplicationsforarrhythmiaandischemicpreconditioning |
