Inhibition of O-acetylserine (thiol) lyase as a promising new mechanism of action for herbicides

被引:3
|
作者
Foletto-Felipe, Marcela de Paiva [1 ,2 ]
Abrahao, Josielle [1 ]
Siqueira-Soares, Rita de Cassia [1 ]
Contesoto, Isabela de Carvalho [1 ]
Grizza, Luiz Henryque Escher [1 ]
Almeida, Guilherme Henrique Goncalves de [1 ]
Constantin, Renato Polimeni [1 ]
Philippsen, Gisele Strieder [3 ]
Seixas, Flavio Augusto Vicente [4 ]
Bueno, Paulo S. ergio Alves [4 ]
Oliveira, Marco Aurelio Schueler de [5 ]
Constantin, Rodrigo Polimeni [1 ]
Santos, Wanderley Dantas dos [1 ]
Ferrarese-Filho, Osvaldo [1 ]
Marchiosi, Rogerio [1 ,6 ]
机构
[1] Univ Estadual Maringa, Dept Biochem, Lab Plant Biochem, Maringa, Parana, Brazil
[2] Fed Technol Univ Parana, Coordinat Degree Biol Sci, Campus Dois Vizinhos, Dois Vizinhos, Parana, Brazil
[3] Univ Fed Parana, Curitiba, Parana, Brazil
[4] Univ Estadual Maringa, Dept Technol, Umuarama, Parana, Brazil
[5] Univ Estadual Maringa, Dept Biochem, Lab Mol Biol Prokaryotes, Maringa, Parana, Brazil
[6] Univ Maringa, Dept Biochem, Lab Plant Biochem, Av Colombo 5790, BR-87020900 Maringa, PR, Brazil
关键词
Bioinformatics; L-cysteine; Sulfur assimilation; New herbicidal action site; O-acetylserine (thiol) lyase; S-Benzyl-L-cysteine; CYSTEINE BIOSYNTHESIS; PROTEIN STRUCTURES; SULFHYDRYLASE; SYNTHASE; DESIGN; ENZYME; DYNAMICS; MODEL; ACIDS;
D O I
10.1016/j.plaphy.2023.108127
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Enzymes of the sulfur assimilation pathway of plants have been identified as potential targets for herbicide development, given their crucial role in synthesizing amino acids, coenzymes, and various sulfated compounds. In this pathway, O-acetylserine (thiol) lyase (OAS-TL; EC 2.5.1.47) catalyzes the synthesis of L-cysteine through the incorporation of sulfate into O-acetylserine (OAS). This study used an in silico approach to select seven in-hibitors for OAS-TL. The in silico experiments revealed that S-benzyl-L-cysteine (SBC) had a better docking score (-7.0 kcal mol-1) than the substrate OAS (-6.6 kcal mol-1), indicating its suitable interaction with the active site of the enzyme. In vitro experiments showed that SBC is a non-competitive inhibitor of OAS-TL from Arabi-dopsis thaliana expressed heterologously in Escherichia coli, with a Kic of 4.29 mM and a Kiu of 5.12 mM. When added to the nutrient solution, SBC inhibited the growth of maize and morning glory weed plants due to the reduction of L-cysteine synthesis. Remarkably, morning glory was more sensitive than maize. As proof of its mechanism of action, L-cysteine supplementation to the nutrient solution mitigated the inhibitory effect of SBC on the growth of morning glory. Taken together, our data suggest that reduced L-cysteine synthesis is the primary cause of growth inhibition in maize and morning glory plants exposed to SBC. Furthermore, our findings indicate that inhibiting OAS-TL could potentially be a novel approach for herbicidal action.
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页数:13
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