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Jouni Toivola

Explore the profile of Jouni Toivola including associated specialties, affiliations and a list of published articles. Areas
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Articles 15
Citations 275
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Recent Articles
1.
Diaz M, Nikkanen L, Himanen K, Toivola J, Rintamaki E
Plant J . 2020 Aug; 104(3):718-734. PMID: 32772439
Various regulatory mechanisms have evolved in plants to optimize photosynthetic activity under fluctuating light. Thioredoxins (TRX) are members of the regulatory network balancing activities of light and carbon fixation reactions...
2.
Nikkanen L, Toivola J, Trotta A, Diaz M, Tikkanen M, Aro E, et al.
Plant Direct . 2019 Jun; 2(11):e00093. PMID: 31245694
Linear electron transport in the thylakoid membrane drives photosynthetic NADPH and ATP production, while cyclic electron flow (CEF) around photosystem I only promotes the translocation of protons from stroma to...
3.
Nikkanen L, Diaz M, Toivola J, Tiwari A, Rintamaki E
Physiol Plant . 2018 Dec; 166(1):211-225. PMID: 30578537
In natural growth habitats, plants face constant, unpredictable changes in light conditions. To avoid damage to the photosynthetic apparatus on thylakoid membranes in chloroplasts, and to avoid wasteful reactions, it...
4.
Nikkanen L, Toivola J, Diaz M, Rintamaki E
Philos Trans R Soc Lond B Biol Sci . 2017 Aug; 372(1730). PMID: 28808108
Thioredoxins (TRXs) are protein oxidoreductases that control the structure and function of cellular proteins by cleavage of a disulphide bond between the side chains of two cysteine residues. Oxidized thioredoxins...
5.
Nikkanen L, Toivola J, Rintamaki E
Plant Cell Environ . 2016 Feb; 39(8):1691-705. PMID: 26831830
Thioredoxins (TRXs) mediate light-dependent activation of primary photosynthetic reactions in plant chloroplasts by reducing disulphide bridges in redox-regulated enzymes. Of the two plastid TRX systems, the ferredoxin-TRX system consists of...
6.
Toivola J, Nikkanen L, Dahlstrom K, Salminen T, Lepisto A, Vignols H, et al.
Front Plant Sci . 2013 Oct; 4:389. PMID: 24115951
Plant chloroplasts have versatile thioredoxin systems including two thioredoxin reductases and multiple types of thioredoxins. Plastid-localized NADPH-dependent thioredoxin reductase (NTRC) contains both reductase (NTRd) and thioredoxin (TRXd) domains in a...
7.
Lepisto A, Pakula E, Toivola J, Krieger-Liszkay A, Vignols F, Rintamaki E
J Exp Bot . 2013 Jul; 64(12):3843-54. PMID: 23881397
Plastid-localized NADPH-dependent thioredoxin reductase C (NTRC) is a unique NTR enzyme containing both reductase and thioredoxin domains in a single polypeptide. Arabidopsis thaliana NTRC knockout lines (ntrc) show retarded growth,...
8.
Richter A, Peter E, Rothbart M, Schlicke H, Toivola J, Rintamaki E, et al.
Plant Physiol . 2013 Apr; 162(1):63-73. PMID: 23569108
The NADPH-dependent thioredoxin reductase C (NTRC) is involved in redox-related regulatory processes in chloroplasts and nonphotosynthetic active plastids. Together with 2-cysteine peroxiredoxin, it forms a two-component peroxide-detoxifying system that acts...
9.
Lepisto A, Toivola J, Nikkanen L, Rintamaki E
Front Plant Sci . 2012 Dec; 3:286. PMID: 23267363
Structural and functional components of chloroplast are encoded by genes localized both to nuclear and plastid genomes of plant cell. Development from etioplasts to chloroplasts is triggered by light receptors...
10.
Michel P, Makela A, Korhonen E, Toivola J, Hedman L, Soderlund-Venermo M, et al.
J Virol Methods . 2008 Jul; 152(1-2):1-5. PMID: 18598721
Human parvovirus B19 is an autonomously replicating human pathogen with a specific tropism for human erythroid progenitor cells. There is an interest in producing empty nucleocapsids of B19 as they...