Post-translational regulation of metabolic checkpoints in plant tetrapyrrole biosynthesis

Author:

Wang Peng1,Ji Shuiling1,Grimm Bernhard1ORCID

Affiliation:

1. Institute of Biology/Plant Physiology, Humboldt-Universität zu Berlin , Philippstraße 13 (Haus 12), 10115 Berlin , Germany

Abstract

Abstract Tetrapyrrole biosynthesis produces metabolites that are essential for critical reactions in photosynthetic organisms, including chlorophylls, heme, siroheme, phytochromobilins, and their derivatives. Due to the paramount importance of tetrapyrroles, a better understanding of the complex regulation of tetrapyrrole biosynthesis promises to improve plant productivity in the context of global climate change. Tetrapyrrole biosynthesis is known to be controlled at multiple levels—transcriptional, translational and post-translational. This review addresses recent advances in our knowledge of the post-translational regulation of tetrapyrrole biosynthesis and summarizes the regulatory functions of the various auxiliary factors involved. Intriguingly, the post-translational network features three prominent metabolic checkpoints, located at the steps of (i) 5-aminolevulinic acid synthesis (the rate-limiting step in the pathway), (ii) the branchpoint between chlorophyll and heme synthesis, and (iii) the light-dependent enzyme protochlorophyllide oxidoreductase. The regulation of protein stability, enzymatic activity, and the spatial organization of the committed enzymes in these three steps ensures the appropriate flow of metabolites through the tetrapyrrole biosynthesis pathway during photoperiodic growth. In addition, we offer perspectives on currently open questions for future research on tetrapyrrole biosynthesis.

Funder

German Research Foundation

Chinese Scholarship Council

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

Reference98 articles.

1. GUN4-porphyrin complexes bind the ChlH/GUN5 subunit of Mg-Chelatase and promote chlorophyll biosynthesis in Arabidopsis.;Adhikari;The Plant Cell,2011

2. Porphyrins promote the association of GENOMES UNCOUPLED 4 and a Mg-chelatase subunit with chloroplast membranes.;Adhikari;Journal of Biological Chemistry,2009

3. Signal recognition particle: an essential protein-targeting machine.;Akopian;Annual Review of Biochemistry,2013

4. A structural phylogenetic map for chloroplast photosynthesis.;Allen;Trends in Plant Science,2011

5. LCAA, a novel factor required for magnesium protoporphyrin monomethylester cyclase accumulation and feedback control of aminolevulinic acid biosynthesis in tobacco.;Albus;Plant Physiology,2012

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