Bicarbonate activation of the monomeric photosystem II-PsbS/Psb27 complex

Author:

Fantuzzi Andrea1ORCID,Haniewicz Patrycja23ORCID,Farci Domenica4ORCID,Loi M Cecilia5ORCID,Park Keunha1ORCID,Büchel Claudia6ORCID,Bochtler Matthias37ORCID,Rutherford A William1ORCID,Piano Dario35ORCID

Affiliation:

1. Department of Life Sciences, Imperial College London , London SW7 2AZ , UK

2. Department of Plant Physiology, Warsaw University of Life Sciences - SGGW , Warsaw 02-776 , Poland

3. Laboratory of Structural Biology, International Institute of Molecular and Cell Biology , Warsaw 02-109 , Poland

4. Department of Chemistry, Umea University , 90187 Umea , Sweden

5. Department of Life and Environmental Sciences, University of Cagliari , Cagliari 09123 , Italy

6. Institute of Molecular Biosciences, University of Frankfurt , Frankfurt am Main 60438 , Germany

7. Polish Academy of Science, Institute of Biochemistry and Biophysics , Warsaw 02-106 , Poland

Abstract

Abstract In thylakoid membranes, photosystem II (PSII) monomers from the stromal lamellae contain the subunits PsbS and Psb27 (PSIIm-S/27), while PSII monomers (PSIIm) from granal regions lack these subunits. Here, we have isolated and characterized these 2 types of PSII complexes in tobacco (Nicotiana tabacum). PSIIm-S/27 showed enhanced fluorescence, the near absence of oxygen evolution, and limited and slow electron transfer from QA to QB compared to the near-normal activities in the granal PSIIm. However, when bicarbonate was added to PSIIm-S/27, water splitting and QA to QB electron transfer rates were comparable to those in granal PSIIm. The findings suggest that the binding of PsbS and/or Psb27 inhibits forward electron transfer and lowers the binding affinity for bicarbonate. This can be rationalized in terms of the recently discovered photoprotection role played by bicarbonate binding via the redox tuning of the QA/QA•− couple, which controls the charge recombination route, and this limits chlorophyll triplet-mediated 1O2 formation. These findings suggest that PSIIm-S/27 is an intermediate in the assembly of PSII in which PsbS and/or Psb27 restrict PSII activity while in transit using a bicarbonate-mediated switch and protective mechanism.

Funder

Homing Plus

Foundation for Polish Science

European Union

European Regional Development Funds

PRELUDIUM programme

National Science Centre

Biotechnology and Biological Sciences Research Council

Creative Commons Attribution

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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