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  4. Stress-related expression of the chloroplast EGY3 pseudoprotease and its possible impact on chloroplasts’ proteome composition
 
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Stress-related expression of the chloroplast EGY3 pseudoprotease and its possible impact on chloroplasts’ proteome composition

Type
Journal article
Language
English
Date issued
2022
Author
Adamiec, Małgorzata
Dobrogojski, Jędrzej 
Wojtyla, Łukasz
Luciński, Robert
Faculty
Wydział Rolnictwa, Ogrodnictwa i Bioinżynierii
Journal
Frontiers in Plant Science
ISSN
1664-462X
DOI
10.3389/fpls.2022.965143
Web address
https://www.frontiersin.org/journals/plant-science/articles/10.3389/fpls.2022.965143/full
Volume
13
Number
22 July 2022
Pages from-to
art. 965143
Abstract (EN)
The EGY3 is a pseudoprotease, located in the thylakoid membrane, that shares homology with the family of site-2-proteases (S2P). Although S2P proteases are present in the cells of all living organisms, the EGY3 was found only in plant cells. The sequence of the pseudoprotease is highly conserved in the plant kingdom; however, little is known about its physiological importance. Results obtained with real-time PCR indicated that the expression of the EGY3 gene is dramatically induced during the first few hours of exposure to high light and high-temperature stress. The observed increase in transcript abundance correlates with protein accumulation level, which indicates that EGY3 participates in response to both high-temperature and high light stresses. The lack of the pseudoprotease leads, in both stresses, to lower concentrations of hydrogen peroxide. However, the decrease of chloroplast copper/zinc superoxide dismutase 2 level was observed only during the high light stress. In both analyzed stressful conditions, proteins related to RubisCO folding, glycine metabolism, and photosystem I were identified as differently accumulating in egy3 mutant lines and WT plants; however, the functional status of PSII during analyzed stressful conditions remains very similar. Our results lead to a conclusion that EGY3 pseudoprotease participates in response to high light and high-temperature stress; however, its role is associated rather with photosystem I and light-independent reactions of photosynthesis.
Keywords (EN)
  • Arabidopsis thaliana

  • chloroplast

  • EGY3

  • high light stress

  • high-temperature stress

  • pseudoprotease

License
cc-bycc-by CC-BY - Attribution
Open access date
July 22, 2022
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