Discovery of a component of the chloroplast-associated protein degradation system
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Publisher
Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s41477-024-01770-4.pdf
Reference5 articles.
1. Ling, Q. H. et al. Ubiquitin-dependent chloroplast-associated protein degradation in plants. Science 363, 836–848 (2019). This paper reports the discovery and analysis of the CHLORAD system.
2. Ling, Q. H. & Jarvis, P. Regulation of chloroplast protein import by the ubiquitin E3 ligase SP1 is important for stress tolerance in plants. Curr. Biol. 25, 2527–2534 (2015). This article presents findings on the role of the CHLORAD component SP1 in plant abiotic stress tolerance.
3. Ling, Q. H. et al. The chloroplast-associated protein degradation pathway controls chromoplast development and fruit ripening in tomato. Nat. Plants 7, 655–666 (2021). This paper reports on the role of CHLORAD in leaf senescence and fruit ripening.
4. Zhang, J. R., Vancea, A. I., Hameed, U. F. S. & Arold, S. T. Versatile control of the CDC48 segregase by the plant UBX-containing (PUX) proteins. Comput. Struct. Biotec. 19, 3125–3132 (2021). This review summarizes information on Cdc48 adaptors in plants.
5. Li, J. L. et al. The CDC48 complex mediates ubiquitin-dependent degradation of intra-chloroplast proteins in plants. Cell Rep. 39, 110664 (2022). This study presents findings on the role of Ufd1–Npl4–Cdc48 in the degradation of chloroplast proteins.
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