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Plant function and evolutionary biology

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Two native types of phytochrome A, phyAʹ and phyAʹʹ, differ by the state of phosphorylation at the N-terminus as revealed by fluorescence investigations of the Ser/Ala mutant of rice phyA expressed in transgenic Arabidopsis

Vitaly A. Sineshchekov A C , Larissa A. Koppel A and Cordelia Bolle B
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A Biology Department, MV Lomonosov Moscow State University, Moscow 119 234, Russia.

B Biology Department, Ludwig Maximilian University, München, D–82 152 Planegg-Martinsried, Germany.

C Corresponding author. Email: vsineshchekov@gmail.com

This paper originates from a presentation at the Fourth International Symposium on Plant Signaling and Behavior, Komarov Botanical Institute RAS/Russian Science Foundation, Saint Petersburg, Russia, 1923 June 2016.

Functional Plant Biology 45(2) 150-159 https://doi.org/10.1071/FP16261
Submitted: 23 July 2016  Accepted: 1 November 2016   Published: 30 November 2016



8 articles found in Crossref database.

The dephosphorylated S8A and S18A mutants of (oat) phytochrome A comprise its two species, phyA’ and phyA’’, suggesting that autophosphorylation at these sites is not involved in the phyA differentiation
Sineshchekov V., Koppel L., Kim J. -I.
Photochemical & Photobiological Sciences. 2019 18(5). p.1242
Regulation of Chlorophyll Biogenesis by Phytochrome A
Sineshchekov V. A., Belyaeva O. B.
Biochemistry (Moscow). 2019 84(5). p.491
Phytochrome A and its Functional Manifestations in Etiolated and Far‐red Light‐grown Seedlings of the Wild‐type Rice and its Hebiba and Cpm2 Mutants Deficient in the Defense‐related Phytohormone Jasmonic Acid
Sineshchekov Vitaly, Koppel Larissa, Riemann Michael, Nick Peter
Photochemistry and Photobiology. 2021 97(2). p.335
Two molecular species of phytochrome A with distinct modes of action
Sineshchekov V.
Functional Plant Biology. 2019 46(2). p.118
Two Distinct Molecular Types of Phytochrome A in Plants: Evidence of Existence and Implications for Functioning
Sineshchekov Vitaly A.
International Journal of Molecular Sciences. 2023 24(9). p.8139
Applications of fluorescence spectroscopy in the investigation of plant phytochrome in vivo
Sineshchekov V.A.
Plant Physiology and Biochemistry. 2024 208 p.108434
The phosphatase/kinase balance affects phytochrome A and its native pools, phyA′ and phyA″, in etiolated maize roots: evidence from the induction of phyA′ destruction by a protein phosphatase inhibitor sodium fluoride
Sineshchekov Vitaly, Shor Ekaterina, Koppel Larissa
Photochemical & Photobiological Sciences. 2021 20(11). p.1429
Phytochrome A in plants comprises two structurally and functionally distinct populations — water-soluble phyA′ and amphiphilic phyA″
Sineshchekov V., Koppel L.
Biophysical Reviews. 2022 14(4). p.905

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