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Keywords: plant biology
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Essays Biochem (2022) 66 (2): 229–242.
Published: 05 August 2022
... peroxin peroxisomes plant biology proteolysis Harvesting energy, orchestrating development, and adapting to environmental changes are critical to organismal success—peroxisomes contribute to all three processes. Peroxisomes isolate β-oxidation and other oxidative reactions that produce toxic...
Articles
Essays Biochem (2022) 66 (2): 179–188.
Published: 05 August 2022
... of the Biochemical Society 2022 ERAD plant biology protein degradation selective autophagy Endoplasmic reticulum (ER)-associated degradation (ERAD) is a mechanism that involves retrotranslocation of an ER luminal-localized or ER-membrane-anchored protein into cytosolic proteasomal degradation, which...
Articles
Essays Biochem (2022) 66 (2): 147–154.
Published: 05 August 2022
... of Edinburgh in an all-inclusive Read & Publish agreement with Portland Press and the Biochemical Society under a transformative agreement with JISC. deubiquitinase plant biology post translational modification proteostasis ubiquitin To properly grow, reproduce and respond...
Articles
Essays Biochem (2022) 66 (2): 99–110.
Published: 05 August 2022
... Trujillo ( marco.trujillo@biologie.uni-freiburg.de ) 16 03 2022 10 06 2022 13 06 2022 © 2022 The Author(s). Published by Portland Press Limited on behalf of the Biochemical Society 2022 plant biology Ubiquitin ubiquitin ligases ubiquitin signalling ubiquitin-conjugating...
Includes: Supplementary data
Articles
Essays Biochem (2019) 63 (6): 743–755.
Published: 11 October 2019
... 4.0 (CC BY-NC-ND) . chromatin epigenetics epigenomics methylation plant biology Methylation of cytosines is a widespread modification of DNA and is found across both eukaryotes [ 1 , 2 ] and prokaryotes [ 3 ]. Because it is a modification of DNA itself, it can persist through both...
Articles
Essays Biochem (2018) 62 (1): 1–11.
Published: 13 April 2018
... chlorophyll extreme environments photosynthesis plant biology RuBisCo In C 4 plants where the influence of higher atmospheric CO 2 concentrations on yield is much less than C 3 plants due to negligible photorespiration, most impact of higher temperature is on activase [ 23 ] limiting...