Literature DB >> 28252285

Water-Soluble Chlorophyll Protein (WSCP) Stably Binds Two or Four Chlorophylls.

Daniel M Palm1, Alessandro Agostini1,2, Stefan Tenzer3, Barbara M Gloeckle1, Mara Werwie1, Donatella Carbonera2, Harald Paulsen1.   

Abstract

Water-soluble chlorophyll proteins (WSCPs) of class IIa from Brassicaceae form tetrameric complexes containing one chlorophyll (Chl) per apoprotein but no carotenoids. The complexes are remarkably stable toward dissociation and protein denaturation even at 100 °C and extreme pH values, and the Chls are partially protected against photooxidation. There are several hypotheses that explain the biological role of WSCPs, one of them proposing that they function as a scavenger of Chls set free upon plant senescence or pathogen attack. The biochemical properties of WSCP described in this paper are consistent with the protein acting as an efficient and flexible Chl scavenger. At limiting Chl concentrations, the recombinant WSCP apoprotein binds substoichiometric amounts of Chl (two Chls per tetramer) to form complexes that are as stable toward thermal dissociation, denaturation, and photodamage as the fully pigmented ones. If more Chl is added, these two-Chl complexes can bind another two Chls to reach the fully pigmented state. The protection of WSCP Chls against photodamage has been attributed to the apoprotein serving as a diffusion barrier for oxygen, preventing its access to triplet excited Chls and, thus, the formation of singlet oxygen. By contrast, the sequential binding of Chls by WSCP suggests a partially open or at least flexible structure, raising the question of how WSCP photoprotects its Chls without the help of carotenoids.

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Year:  2017        PMID: 28252285     DOI: 10.1021/acs.biochem.7b00075

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  7 in total

1.  Signatures of intramolecular vibrational and vibronic Q[Formula: see text]-Q[Formula: see text] coupling effects in absorption and CD spectra of chlorophyll dimers.

Authors:  Joachim Seibt; Dominik Lindorfer; Thomas Renger
Journal:  Photosynth Res       Date:  2022-08-30       Impact factor: 3.429

2.  Magnetophotoselection in the Investigation of Excitonically Coupled Chromophores: The Case of the Water-Soluble Chlorophyll Protein.

Authors:  Susanna Ciuti; Alessandro Agostini; Antonio Barbon; Marco Bortolus; Harald Paulsen; Marilena Di Valentin; Donatella Carbonera
Journal:  Molecules       Date:  2022-06-07       Impact factor: 4.927

3.  Controlling synthetic membraneless organelles by a red-light-dependent singlet oxygen-generating protein.

Authors:  Manjia Li; Byung Min Park; Xin Dai; Yingjie Xu; Jinqing Huang; Fei Sun
Journal:  Nat Commun       Date:  2022-06-09       Impact factor: 17.694

4.  New homologues of Brassicaceae water-soluble chlorophyll proteins shed light on chlorophyll binding, spectral tuning, and molecular evolution.

Authors:  Vadivel Prabahar; Livnat Afriat-Jurnou; Irina Paluy; Yoav Peleg; Dror Noy
Journal:  FEBS J       Date:  2019-10-10       Impact factor: 5.542

5.  The pigment binding behaviour of water-soluble chlorophyll protein (WSCP).

Authors:  Philipp Girr; Jessica Kilper; Anne-Christin Pohland; Harald Paulsen
Journal:  Photochem Photobiol Sci       Date:  2020-05-20       Impact factor: 3.982

6.  An unusual role for the phytyl chains in the photoprotection of the chlorophylls bound to Water-Soluble Chlorophyll-binding Proteins.

Authors:  Alessandro Agostini; Daniel M Palm; Franz-Josef Schmitt; Marco Albertini; Marilena Di Valentin; Harald Paulsen; Donatella Carbonera
Journal:  Sci Rep       Date:  2017-08-08       Impact factor: 4.379

7.  How water-mediated hydrogen bonds affect chlorophyll a/b selectivity in Water-Soluble Chlorophyll Protein.

Authors:  Alessandro Agostini; Elena Meneghin; Lucas Gewehr; Danilo Pedron; Daniel M Palm; Donatella Carbonera; Harald Paulsen; Elmar Jaenicke; Elisabetta Collini
Journal:  Sci Rep       Date:  2019-12-03       Impact factor: 4.379

  7 in total

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