Binding Properties of Photosynthetic Herbicides with the Q<sub>B</sub> Site of the D1 Protein in Plant Photosystem II: A Combined Functional and Molecular Docking Study
Photosystem II (PSII) is a multi-subunit enzymatic complex embedded in the thylakoid membranes responsible for the primary photosynthetic reactions vital for plants. Many herbicides used for weed control inhibit PSII by interfering with the photosynthetic electron transport at the level of the D1 pr...
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doaj-7088c3c6d1414f98a84b1cb3fa55c20b2021-08-26T14:13:50ZengMDPI AGPlants2223-77472021-07-01101501150110.3390/plants10081501Binding Properties of Photosynthetic Herbicides with the Q<sub>B</sub> Site of the D1 Protein in Plant Photosystem II: A Combined Functional and Molecular Docking StudyBeatrice Battaglino0Alessandro Grinzato1Cristina Pagliano2Applied Science and Technology Department—BioSolar Lab, Politecnico di Torino, Environment Park, Via Livorno 60, 10144 Torino, ItalyDepartment of Biomedical Sciences, University of Padova, Via Ugo Bassi 58 B, 35121 Padova, ItalyApplied Science and Technology Department—BioSolar Lab, Politecnico di Torino, Environment Park, Via Livorno 60, 10144 Torino, ItalyPhotosystem II (PSII) is a multi-subunit enzymatic complex embedded in the thylakoid membranes responsible for the primary photosynthetic reactions vital for plants. Many herbicides used for weed control inhibit PSII by interfering with the photosynthetic electron transport at the level of the D1 protein, through competition with the native plastoquinone for the Q<sub>B</sub> site. Molecular details of the interaction of these herbicides in the D1 Q<sub>B</sub> site remain to be elucidated in plants. Here, we investigated the inhibitory effect on plant PSII of the PSII-inhibiting herbicides diuron, metobromuron, bentazon, terbuthylazine and metribuzin. We combined analysis of OJIP chlorophyll fluorescence kinetics and PSII activity assays performed on thylakoid membranes isolated from pea plants with molecular docking using the high-resolution PSII structure recently solved from the same plant. Both approaches showed for terbuthylazine, metribuzin and diuron the highest affinity for the D1 Q<sub>B</sub> site, with the latter two molecules forming hydrogen bonds with His215. Conversely, they revealed for bentazon the lowest PSII inhibitory effect accompanied by a general lack of specificity for the Q<sub>B</sub> site and for metobromuron an intermediate behavior. These results represent valuable information for future design of more selective herbicides with enhanced Q<sub>B</sub> binding affinities to be effective in reduced amounts.https://www.mdpi.com/2223-7747/10/8/1501Photosystem IID1 protein<i>Pisum sativum</i>herbicidesoptical assaysOJIP transient |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Beatrice Battaglino Alessandro Grinzato Cristina Pagliano |
spellingShingle |
Beatrice Battaglino Alessandro Grinzato Cristina Pagliano Binding Properties of Photosynthetic Herbicides with the Q<sub>B</sub> Site of the D1 Protein in Plant Photosystem II: A Combined Functional and Molecular Docking Study Plants Photosystem II D1 protein <i>Pisum sativum</i> herbicides optical assays OJIP transient |
author_facet |
Beatrice Battaglino Alessandro Grinzato Cristina Pagliano |
author_sort |
Beatrice Battaglino |
title |
Binding Properties of Photosynthetic Herbicides with the Q<sub>B</sub> Site of the D1 Protein in Plant Photosystem II: A Combined Functional and Molecular Docking Study |
title_short |
Binding Properties of Photosynthetic Herbicides with the Q<sub>B</sub> Site of the D1 Protein in Plant Photosystem II: A Combined Functional and Molecular Docking Study |
title_full |
Binding Properties of Photosynthetic Herbicides with the Q<sub>B</sub> Site of the D1 Protein in Plant Photosystem II: A Combined Functional and Molecular Docking Study |
title_fullStr |
Binding Properties of Photosynthetic Herbicides with the Q<sub>B</sub> Site of the D1 Protein in Plant Photosystem II: A Combined Functional and Molecular Docking Study |
title_full_unstemmed |
Binding Properties of Photosynthetic Herbicides with the Q<sub>B</sub> Site of the D1 Protein in Plant Photosystem II: A Combined Functional and Molecular Docking Study |
title_sort |
binding properties of photosynthetic herbicides with the q<sub>b</sub> site of the d1 protein in plant photosystem ii: a combined functional and molecular docking study |
publisher |
MDPI AG |
series |
Plants |
issn |
2223-7747 |
publishDate |
2021-07-01 |
description |
Photosystem II (PSII) is a multi-subunit enzymatic complex embedded in the thylakoid membranes responsible for the primary photosynthetic reactions vital for plants. Many herbicides used for weed control inhibit PSII by interfering with the photosynthetic electron transport at the level of the D1 protein, through competition with the native plastoquinone for the Q<sub>B</sub> site. Molecular details of the interaction of these herbicides in the D1 Q<sub>B</sub> site remain to be elucidated in plants. Here, we investigated the inhibitory effect on plant PSII of the PSII-inhibiting herbicides diuron, metobromuron, bentazon, terbuthylazine and metribuzin. We combined analysis of OJIP chlorophyll fluorescence kinetics and PSII activity assays performed on thylakoid membranes isolated from pea plants with molecular docking using the high-resolution PSII structure recently solved from the same plant. Both approaches showed for terbuthylazine, metribuzin and diuron the highest affinity for the D1 Q<sub>B</sub> site, with the latter two molecules forming hydrogen bonds with His215. Conversely, they revealed for bentazon the lowest PSII inhibitory effect accompanied by a general lack of specificity for the Q<sub>B</sub> site and for metobromuron an intermediate behavior. These results represent valuable information for future design of more selective herbicides with enhanced Q<sub>B</sub> binding affinities to be effective in reduced amounts. |
topic |
Photosystem II D1 protein <i>Pisum sativum</i> herbicides optical assays OJIP transient |
url |
https://www.mdpi.com/2223-7747/10/8/1501 |
work_keys_str_mv |
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