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CCPG1 recognizes endoplasmic reticulum luminal proteins for selective ER-phagy
The endoplasmic reticulum (ER) is a major cell compartment where protein synthesis, folding, and posttranslational modifications occur with assistance from a wide variety of chaperones and enzymes. Quality control systems selectively eliminate abnormal proteins that accumulate inside the ER due to c...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The American Society for Cell Biology
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10092646/ https://www.ncbi.nlm.nih.gov/pubmed/36735498 http://dx.doi.org/10.1091/mbc.E22-09-0432 |
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author | Ishii, Shunsuke Chino, Haruka Ode, Koji L. Kurikawa, Yoshitaka Ueda, Hiroki R. Matsuura, Akira Mizushima, Noboru Itakura, Eisuke |
author_facet | Ishii, Shunsuke Chino, Haruka Ode, Koji L. Kurikawa, Yoshitaka Ueda, Hiroki R. Matsuura, Akira Mizushima, Noboru Itakura, Eisuke |
author_sort | Ishii, Shunsuke |
collection | PubMed |
description | The endoplasmic reticulum (ER) is a major cell compartment where protein synthesis, folding, and posttranslational modifications occur with assistance from a wide variety of chaperones and enzymes. Quality control systems selectively eliminate abnormal proteins that accumulate inside the ER due to cellular stresses. ER-phagy, that is, selective autophagy of the ER, is a mechanism that maintains or reestablishes cellular and ER-specific homeostasis through removal of abnormal proteins. However, how ER luminal proteins are recognized by the ER-phagy machinery remains unclear. Here, we applied the aggregation-prone protein, six-repeated islet amyloid polypeptide (6xIAPP), as a model ER-phagy substrate and found that cell cycle progression 1 (CCPG1), which is an ER-phagy receptor, efficiently mediates its degradation via ER-phagy. We also identified prolyl 3-hydroxylase family member 4 (P3H4) as an endogenous cargo of CCPG1-dependent ER-phagy. The ER luminal region of CCPG1 contains several highly conserved regions that we refer to as cargo-interacting regions (CIRs); these interact directly with specific luminal cargos for ER-phagy. Notably, 6xIAPP and P3H4 interact directly with different CIRs. These findings indicate that CCPG1 is a bispecific ER-phagy receptor for ER luminal proteins and the autophagosomal membrane that contributes to the efficient removal of aberrant ER-resident proteins through ER-phagy. |
format | Online Article Text |
id | pubmed-10092646 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | The American Society for Cell Biology |
record_format | MEDLINE/PubMed |
spelling | pubmed-100926462023-05-22 CCPG1 recognizes endoplasmic reticulum luminal proteins for selective ER-phagy Ishii, Shunsuke Chino, Haruka Ode, Koji L. Kurikawa, Yoshitaka Ueda, Hiroki R. Matsuura, Akira Mizushima, Noboru Itakura, Eisuke Mol Biol Cell Articles The endoplasmic reticulum (ER) is a major cell compartment where protein synthesis, folding, and posttranslational modifications occur with assistance from a wide variety of chaperones and enzymes. Quality control systems selectively eliminate abnormal proteins that accumulate inside the ER due to cellular stresses. ER-phagy, that is, selective autophagy of the ER, is a mechanism that maintains or reestablishes cellular and ER-specific homeostasis through removal of abnormal proteins. However, how ER luminal proteins are recognized by the ER-phagy machinery remains unclear. Here, we applied the aggregation-prone protein, six-repeated islet amyloid polypeptide (6xIAPP), as a model ER-phagy substrate and found that cell cycle progression 1 (CCPG1), which is an ER-phagy receptor, efficiently mediates its degradation via ER-phagy. We also identified prolyl 3-hydroxylase family member 4 (P3H4) as an endogenous cargo of CCPG1-dependent ER-phagy. The ER luminal region of CCPG1 contains several highly conserved regions that we refer to as cargo-interacting regions (CIRs); these interact directly with specific luminal cargos for ER-phagy. Notably, 6xIAPP and P3H4 interact directly with different CIRs. These findings indicate that CCPG1 is a bispecific ER-phagy receptor for ER luminal proteins and the autophagosomal membrane that contributes to the efficient removal of aberrant ER-resident proteins through ER-phagy. The American Society for Cell Biology 2023-03-07 /pmc/articles/PMC10092646/ /pubmed/36735498 http://dx.doi.org/10.1091/mbc.E22-09-0432 Text en © 2023 Ishii et al. “ASCB®,” “The American Society for Cell Biology®,” and “Molecular Biology of the Cell®” are registered trademarks of The American Society for Cell Biology. https://creativecommons.org/licenses/by-nc-sa/4.0/This article is distributed by The American Society for Cell Biology under license from the author(s). Two months after publication it is available to the public under an Attribution–Noncommercial-Share Alike 4.0 International Creative Commons License. |
spellingShingle | Articles Ishii, Shunsuke Chino, Haruka Ode, Koji L. Kurikawa, Yoshitaka Ueda, Hiroki R. Matsuura, Akira Mizushima, Noboru Itakura, Eisuke CCPG1 recognizes endoplasmic reticulum luminal proteins for selective ER-phagy |
title | CCPG1 recognizes endoplasmic reticulum luminal proteins for selective ER-phagy |
title_full | CCPG1 recognizes endoplasmic reticulum luminal proteins for selective ER-phagy |
title_fullStr | CCPG1 recognizes endoplasmic reticulum luminal proteins for selective ER-phagy |
title_full_unstemmed | CCPG1 recognizes endoplasmic reticulum luminal proteins for selective ER-phagy |
title_short | CCPG1 recognizes endoplasmic reticulum luminal proteins for selective ER-phagy |
title_sort | ccpg1 recognizes endoplasmic reticulum luminal proteins for selective er-phagy |
topic | Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10092646/ https://www.ncbi.nlm.nih.gov/pubmed/36735498 http://dx.doi.org/10.1091/mbc.E22-09-0432 |
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