Literature DB >> 17059408

Reduced activity of plastid protoporphyrinogen oxidase causes attenuated photodynamic damage during high-light compared to low-light exposure.

Inna Lermontova1, Bernhard Grimm.   

Abstract

Protoporphyrinogen oxidase (EC 1.3.3.4, PPOX) is the last enzyme in the branched tetrapyrrole biosynthetic pathway, before its substrate protoporphyrin is directed to the Mg and Fe branches for chlorophyll and haem biosynthesis, respectively. The enzyme exists in many plants in two similar isoforms, which are either exclusively located in plastids (PPOX I) or in mitochondria and plastids (PPOX II). Antisense RNA expression inhibited the formation of PPOX I in transgenic tobacco plants, which showed reduced growth rate and necrotic leaf damage. The cytotoxic effect is attributed to accumulation of photodynamically acting protoporphyrin. The expression levels of PPOX I mRNA and protein and the cellular enzyme activities were reduced to similar extents in transgenic plants grown under low- or high-light conditions (70 and 530 mumol photons m(-2) sec(-1)). More necrotic leaf lesions were surprisingly generated under low- than under high-light exposure. Several reasons were explored to explain this paradox and the intriguing necrotic phenotype of PPOX-deficient plants under both light intensity growth conditions. The same reduction of PPOX expression and activity under both light conditions led to similar initial protoporphyrin, but to faster decrease in protoporphyrin content during high light. It is likely that a light intensity-dependent degradation of reduced and oxidized porphyrins prevents severe photodynamic leaf damage. Moreover, under high-light conditions, elevated contents of reduced and total low-molecular-weight antioxidants contribute to the protection against photosensitizing porphyrins. These reducing conditions stabilize protoporphyrinogen in plastids and allow their redirection into the metabolic pathway.

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Year:  2006        PMID: 17059408     DOI: 10.1111/j.1365-313X.2006.02894.x

Source DB:  PubMed          Journal:  Plant J        ISSN: 0960-7412            Impact factor:   6.417


  11 in total

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Journal:  Proc Natl Acad Sci U S A       Date:  2010-09-07       Impact factor: 11.205

2.  Tetrapyrrole Metabolism in Arabidopsis thaliana.

Authors:  Ryouichi Tanaka; Koichi Kobayashi; Tatsuru Masuda
Journal:  Arabidopsis Book       Date:  2011-07-31

3.  The cyanobacterial protoporphyrinogen oxidase HemJ is a new b-type heme protein functionally coupled with coproporphyrinogen III oxidase.

Authors:  Petra Skotnicová; Roman Sobotka; Mark Shepherd; Jan Hájek; Pavel Hrouzek; Martin Tichý
Journal:  J Biol Chem       Date:  2018-06-20       Impact factor: 5.157

4.  Porphyrin biosynthesis control under water stress: sustained porphyrin status correlates with drought tolerance in transgenic rice.

Authors:  Thu-Ha Phung; Ha-Il Jung; Joon-Heum Park; Jin-Gil Kim; Kyoungwhan Back; Sunyo Jung
Journal:  Plant Physiol       Date:  2011-10-20       Impact factor: 8.340

5.  Mutation of Protoporphyrinogen IX Oxidase Gene Causes Spotted and Rolled Leaf and Its Overexpression Generates Herbicide Resistance in Rice.

Authors:  Xin Liu; Xiao-Jian Deng; Chun-Yan Li; Yong-Kang Xiao; Ke Zhao; Jia Guo; Xiao-Rong Yang; Hong-Shan Zhang; Cong-Ping Chen; Ya-Ting Luo; Yu-Lin Tang; Bin Yang; Chang-Hui Sun; Ping-Rong Wang
Journal:  Int J Mol Sci       Date:  2022-05-21       Impact factor: 6.208

Review 6.  Reactive oxygen species generation and signaling in plants.

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Journal:  Plant Signal Behav       Date:  2012-10-16

7.  Perturbations in the Photosynthetic Pigment Status Result in Photooxidation-Induced Crosstalk between Carotenoid and Porphyrin Biosynthetic Pathways.

Authors:  Joon-Heum Park; Lien H Tran; Sunyo Jung
Journal:  Front Plant Sci       Date:  2017-11-20       Impact factor: 5.753

8.  Effects of Light-Emitting Diode Irradiation on Growth Characteristics and Regulation of Porphyrin Biosynthesis in Rice Seedlings.

Authors:  Lien Hong Tran; Sunyo Jung
Journal:  Int J Mol Sci       Date:  2017-03-16       Impact factor: 5.923

9.  PORPHOBILINOGEN DEAMINASE deficiency alters vegetative and reproductive development and causes lesions in Arabidopsis.

Authors:  Víctor Quesada; Raquel Sarmiento-Mañús; Rebeca González-Bayón; Andrea Hricová; María Rosa Ponce; José Luis Micol
Journal:  PLoS One       Date:  2013-01-08       Impact factor: 3.240

10.  Molecular phylogeny and intricate evolutionary history of the three isofunctional enzymes involved in the oxidation of protoporphyrinogen IX.

Authors:  Koichi Kobayashi; Tatsuru Masuda; Naoyuki Tajima; Hajime Wada; Naoki Sato
Journal:  Genome Biol Evol       Date:  2014-08       Impact factor: 3.416

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