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1.
J Agric Food Chem ; 72(19): 10772-10780, 2024 May 15.
Artigo em Inglês | MEDLINE | ID: mdl-38703122

RESUMO

Protoporphyrinogen IX oxidase (PPO, E.C. 1.3.3.4) plays a pivotal role in chlorophyll biosynthesis in plants, making it a prime target for herbicide development. In this study, we conducted an investigation aimed at discovering PPO-inhibiting herbicides. Through this endeavor, we successfully identified a series of novel compounds based on the pyridazinone scaffold. Following structural optimization and biological assessment, compound 10ae, known as ethyl 3-((6-fluoro-5-(6-oxo-4-(trifluoromethyl)pyridazin-1(6H)-yl)benzo[d]thiazol-2-yl)thio)propanoate, emerged as a standout performer. It exhibited robust activity against Nicotiana tabacum PPO (NtPPO) with an inhibition constant (Ki) value of 0.0338 µM. Concurrently, we employed molecular simulations to obtain further insight into the binding mechanism with NtPPO. Additionally, another compound, namely, ethyl 2-((6-fluoro-5-(5-methyl-6-oxo-4-(trifluoromethyl)pyridazin-1(6H)-yl)benzo[d]thiazol-2-yl)thio)propanoate (10bh), demonstrated broad-spectrum and highly effective herbicidal properties against all six tested weeds (Leaf mustard, Chickweed, Chenopodium serotinum, Alopecurus aequalis, Poa annua, and Polypogon fugax) at the dosage of 150 g a.i./ha through postemergence application in a greenhouse. This work identified a novel lead compound (10bh) that showed good activity in vitro and excellent herbicidal activity in vivo and had promising prospects as a new PPO-inhibiting herbicide lead.


Assuntos
Desenho de Fármacos , Inibidores Enzimáticos , Herbicidas , Nicotiana , Proteínas de Plantas , Protoporfirinogênio Oxidase , Piridazinas , Protoporfirinogênio Oxidase/antagonistas & inibidores , Protoporfirinogênio Oxidase/metabolismo , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/genética , Piridazinas/química , Piridazinas/farmacologia , Herbicidas/farmacologia , Herbicidas/química , Herbicidas/síntese química , Inibidores Enzimáticos/química , Inibidores Enzimáticos/farmacologia , Inibidores Enzimáticos/síntese química , Relação Estrutura-Atividade , Nicotiana/metabolismo , Nicotiana/enzimologia , Proteínas de Plantas/química , Proteínas de Plantas/metabolismo , Proteínas de Plantas/antagonistas & inibidores , Proteínas de Plantas/genética , Simulação de Acoplamento Molecular , Estrutura Molecular , Plantas Daninhas/efeitos dos fármacos , Plantas Daninhas/enzimologia , Cinética
2.
J Agric Food Chem ; 72(18): 10218-10226, 2024 May 08.
Artigo em Inglês | MEDLINE | ID: mdl-38666644

RESUMO

In this work, a series of pyrrolidinone-containing 2-phenylpyridine derivatives were synthesized and evaluated as novel protoporphyrinogen IX oxidase (PPO, EC 1.3.3.4) inhibitors for herbicide development. At 150 g ai/ha, compounds 4d, 4f, and 4l can inhibit the grassy weeds of Echinochloa crus-galli (EC), Digitaria sanguinalis (DS), and Lolium perenne (LP) with a range of 60 to 90%. Remarkably, at 9.375 g ai/ha, these compounds showed 100% inhibition effects against broadleaf weeds of Amaranthus retroflexus (AR) and Abutilon theophrasti (AT), which were comparable to the performance of the commercial herbicides flumioxazin (FLU) and saflufenacil (SAF) and better than that of acifluorfen (ACI). Molecular docking analyses revealed significant hydrogen bonding and π-π stacking interactions between compounds 4d and 4l with Arg98, Asn67, and Phe392, respectively. Additionally, representative compounds were chosen for in vivo assessment of PPO inhibitory activity, with compounds 4d, 4f, and 4l demonstrating excellent inhibitory effects. Notably, compounds 4d and 4l induced the accumulation of reactive oxygen species (ROS) and a reduction in the chlorophyll (Chl) content. Consequently, compounds 4d, 4f, and 4l are promising lead candidates for the development of novel PPO herbicides.


Assuntos
Desenho de Fármacos , Inibidores Enzimáticos , Herbicidas , Simulação de Acoplamento Molecular , Plantas Daninhas , Protoporfirinogênio Oxidase , Pirrolidinonas , Protoporfirinogênio Oxidase/antagonistas & inibidores , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/metabolismo , Herbicidas/farmacologia , Herbicidas/química , Herbicidas/síntese química , Plantas Daninhas/efeitos dos fármacos , Plantas Daninhas/enzimologia , Inibidores Enzimáticos/química , Inibidores Enzimáticos/farmacologia , Inibidores Enzimáticos/síntese química , Relação Estrutura-Atividade , Pirrolidinonas/química , Pirrolidinonas/farmacologia , Pirrolidinonas/síntese química , Proteínas de Plantas/química , Proteínas de Plantas/antagonistas & inibidores , Piridinas/química , Piridinas/farmacologia , Piridinas/síntese química , Amaranthus/efeitos dos fármacos , Amaranthus/química , Echinochloa/efeitos dos fármacos , Echinochloa/enzimologia , Digitaria/efeitos dos fármacos , Digitaria/enzimologia , Digitaria/química , Lolium/efeitos dos fármacos , Lolium/enzimologia , Estrutura Molecular
3.
Int J Mol Sci ; 23(19)2022 Sep 21.
Artigo em Inglês | MEDLINE | ID: mdl-36232394

RESUMO

To find novel herbicidal compounds with high activity and broad spectrum, a series of phenylpyridine moiety-containing α-trifluoroanisole derivatives were designed, synthesized, and identified via nuclear magnetic resonance (NMR) and high-resolution mass spectrometry (HRMS). Greenhouse-based herbicidal activity assays revealed that compound 7a exhibited > 80% inhibitory activity against Abutilon theophrasti, Amaranthus retroflexus, Eclipta prostrate, Digitaria sanguinalis, and Setaria viridis at a dose of 37.5 g a.i./hm2, which was better than fomesafen. Compound 7a further exhibited excellent herbicidal activity against Abutilon theophrasti and Amaranthus retroflexus in this greenhouse setting, with respective median effective dose (ED50) values of 13.32 and 5.48 g a.i./hm2, both of which were slightly superior to fomesafen (ED50 = 36.39, 10.09 g a.i./hm2). The respective half-maximal inhibitory concentration (IC50) for compound 7a and fomesafen when used to inhibit the Nicotiana tabacum protoporphyrinogen oxidase (NtPPO) enzyme, were 9.4 and 110.5 nM. The docking result of compound 7a indicated that the introduction of 3-chloro-5-trifluoromethylpyridine and the trifluoromethoxy group was beneficial to the formation of stable interactions between these compounds and NtPPO. This work demonstrated that compound 7a could be further optimized as a PPO herbicide candidate to control various weeds.


Assuntos
Amaranthus , Herbicidas , Benzamidas/farmacologia , Herbicidas/química , Herbicidas/farmacologia , Plantas Daninhas , Protoporfirinogênio Oxidase/química , Relação Estrutura-Atividade , Nicotiana
4.
Biochem Biophys Res Commun ; 588: 182-186, 2022 01 15.
Artigo em Inglês | MEDLINE | ID: mdl-34968794

RESUMO

Variegate porphyria is caused by mutations in the protoporphyrinogen oxidase IX (PPOX, EC 1.3.3.4) gene, resulting in reduced overall enzymatic activity of PPOX in human tissues. Recently, we have identified the His333Arg mutation in the PPOX protein (PPOX(H333R)) as a putative founder mutation in the Moroccan Jewish population. Herein we report the molecular characterization of PPOX(H333R) in vitro and in cells. Purified recombinant PPOX(H333R) did not show any appreciable enzymatic activity in vitro, corroborating the clinical findings. Biophysical experiments and molecular modeling revealed that PPOX(H333R) is not folded properly and fails to adopt its native functional three-dimensional conformation due to steric clashes in the vicinity of the active site of the enzyme. On the other hand, PPOX(H333R) subcellular distribution, as evaluated by live-cell confocal microscopy, is unimpaired suggesting that the functional three-dimensional fold is not required for efficient transport of the polypeptide chain into mitochondria. Overall, the data presented here provide molecular underpinnings of the pathogenicity of PPOX(H333R) and might serve as a blueprint for deciphering whether a given PPOX variant represents a disease-causing mutation.


Assuntos
Flavoproteínas/genética , Proteínas Mitocondriais/genética , Mutação/genética , Protoporfirinogênio Oxidase/genética , Sequência de Aminoácidos , Fenômenos Biofísicos , Linhagem Celular , Estabilidade Enzimática , Flavoproteínas/química , Flavoproteínas/isolamento & purificação , Humanos , Cinética , Proteínas Mitocondriais/química , Proteínas Mitocondriais/isolamento & purificação , Modelos Moleculares , Multimerização Proteica , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/isolamento & purificação , Frações Subcelulares/metabolismo , Temperatura
5.
Biochem Biophys Res Commun ; 557: 20-25, 2021 06 11.
Artigo em Inglês | MEDLINE | ID: mdl-33857841

RESUMO

Protoporphyrinogen IX oxidase (PPO) is the last common enzyme in chlorophyll and heme biosynthesis pathways. In human, point mutations on PPO are responsible for the dominantly inherited disorder disease, Variegate Porphyria (VP). Of the VP-causing mutation site, the Arg59 is by far the most prevalent VP mutation residue identified. Multiple sequences alignment of PPOs shows that the Arg59 of human PPO (hPPO) is not conserved, and experiments have shown that the equivalent residues in PPO from various species are essential for enzymatic activity. In this work, it was proposed that the Arg59 performs its function by forming a hydrogen-bonding (HB) network around it in hPPO, and we investigated the role of the HB network via site-directed mutagenesis, enzymatic kinetics and computational studies. We found the integrity of the HB network around Arg59 is important for enzyme activity. The HB network maintains the substrate binding chamber by holding the side chain of Arg59, while it stabilizes the micro-environment of the isoalloxazine ring of FAD, which is favorable for the substrate-FAD interaction. Our result provides a new insight to understanding the relationship between the structure and function for hPPO that non-conserved residues can form a conserved element to maintain the function of protein.


Assuntos
Arginina/química , Arginina/metabolismo , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/metabolismo , Sequência de Aminoácidos , Arginina/genética , Ensaios Enzimáticos/métodos , Humanos , Ligação de Hidrogênio , Cinética , Modelos Moleculares , Mutagênese Sítio-Dirigida/métodos , Elementos Estruturais de Proteínas , Protoporfirinogênio Oxidase/genética , Proteínas Recombinantes/química , Proteínas Recombinantes/genética , Proteínas Recombinantes/metabolismo , Alinhamento de Sequência , Relação Estrutura-Atividade
6.
Int J Mol Sci ; 21(24)2020 Dec 14.
Artigo em Inglês | MEDLINE | ID: mdl-33327448

RESUMO

Protoporphyrinogen oxidase (PPO) is a critical enzyme across life as the last common step in the synthesis of many metalloporphyrins. The reaction mechanism of PPO was assessed in silico and the unstructured loop near the binding pocket was investigated. The substrate, intermediates, and product were docked in the catalytic domain of PPO using a modified Autodock method, introducing flexibility in the macrocycles. Sixteen PPO protein sequences across phyla were aligned and analyzed with Phyre2 and ProteinPredict to study the unstructured loop from residue 204-210 in the H. sapiens structure. Docking of the substrate, intermediates, and product all resulted in negative binding energies, though the substrate had a lower energy than the others by 40%. The α-H of C10 was found to be 1.4 angstroms closer to FAD than the ß-H, explaining previous reports of the reaction occurring on the meso face of the substrate. A lack of homology in sequence or length in the unstructured loop indicates a lack of function for the protein reaction. This docking study supports a reaction mechanism proposed previously whereby all hydride abstractions occur on the C10 of the tetrapyrrole followed by tautomeric rearrangement to prepare the intermediate for the next reaction.


Assuntos
Protoporfirinogênio Oxidase/metabolismo , Catálise , Simulação por Computador , Protoporfirinogênio Oxidase/química , Protoporfirinas/química , Tetrapirróis/química
7.
Molecules ; 24(23)2019 Nov 29.
Artigo em Inglês | MEDLINE | ID: mdl-31795340

RESUMO

Protoporphyrinogen oxidase (PPO) has been identified as one of the most promising targets for herbicide discovery. A series of novel phthalimide derivatives were designed by molecular docking studies targeting the crystal structure of mitochondrial PPO from tobacco (mtPPO, PDB: 1SEZ) by using Flumioxazin as a lead, after which the derivatives were synthesized and characterized, and their herbicidal activities were subsequently evaluated. The herbicidal bioassay results showed that compounds such as 3a (2-(4-bromo-2,6-difluorophenyl) isoindoline-1,3-dione), 3d (methyl 2-(4-chloro-1,3-dioxoisoindolin-2-yl)-5-fluorobenzoate), 3g (4-chloro-2-(5-methylisoxazol-3-yl) isoindoline-1,3-dione), 3j (4-chloro-2-(thiophen-2-ylmethyl) isoindoline-1,3-dione) and 3r (2-(4-bromo-2,6-difluorophenyl)-4-fluoroisoindoline-1,3-dione) had good herbicidal activities; among them, 3a showed excellent herbicidal efficacy against A. retroflexus and B. campestris via the small cup method and via pre-emergence and post-emergence spray treatments. The efficacy was comparable to that of the commercial herbicides Flumioxazin, Atrazine, and Chlortoluron. Further, the enzyme activity assay results suggest that the mode of action of compound 3a involves the inhibition of the PPO enzyme, and 3a showed better inhibitory activity against PPO than did Flumioxazin. These results indicate that our molecular design strategy contributes to the development of novel promising PPO inhibitors.


Assuntos
Inibidores Enzimáticos , Herbicidas , Simulação de Acoplamento Molecular , Proteínas de Plantas/antagonistas & inibidores , Plantas Daninhas/enzimologia , Protoporfirinogênio Oxidase/antagonistas & inibidores , Inibidores Enzimáticos/síntese química , Inibidores Enzimáticos/química , Inibidores Enzimáticos/farmacologia , Herbicidas/síntese química , Herbicidas/química , Herbicidas/farmacologia , Ftalimidas/síntese química , Ftalimidas/química , Ftalimidas/farmacologia , Proteínas de Plantas/química , Proteínas de Plantas/metabolismo , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/metabolismo
8.
J Agric Food Chem ; 67(45): 12382-12392, 2019 Nov 13.
Artigo em Inglês | MEDLINE | ID: mdl-31635461

RESUMO

Protoporphyrinogen oxidase (PPO, EC 1.3.3.4) is a promising target for herbicide discovery. Search for new compounds with novel chemotypes is a key objective for agrochemists. Here, we describe the discovery and systematic SAR-based structure optimization of novel N-isoxazolinylphenyltriazinones 5-9 as PPO inhibitors. The in vivo herbicidal activity and in vitro Nicotiana tabacum PPO (NtPPO) inhibitory activity were explored in detail. A number of the new synthetic compounds displayed strong PPO inhibitory activity with Ki values in the nanomolar range. Some compounds exhibited excellent and broad-spectrum weed control at the rate of 9.375-37.5 g ai/ha by postemergence application and showed improved monocotyledonous weed control compared to saflufenacil. Most promisingly, ethyl 3-(2-chloro-5-(3,5-dimethyl-2,6-dioxo-4-thioxo-1,3,5-triazinan-1-yl)-4-fluorophenyl)-5-methyl-4,5-dihydroisoxazole-5-carboxylate, 5a, with a Ki value of 4.9 nM, displayed over 2- and 6-fold higher potency than saflufenacil (Ki = 10 nM) and trifludimoxazin (Ki = 31 nM), respectively. Moreover, 5a showed excellent and broad-spectrum weed control against 32 kinds of weeds at 37.5-75 g ai/ha. Rice exhibited relative tolerance to 5a at 150 g ai/ha by postemergence application, indicating that 5a could be a potential herbicide candidate for weed control in paddy fields.


Assuntos
Inibidores Enzimáticos/farmacologia , Herbicidas/química , Herbicidas/farmacologia , Proteínas de Plantas/antagonistas & inibidores , Protoporfirinogênio Oxidase/antagonistas & inibidores , Descoberta de Drogas , Inibidores Enzimáticos/química , Cinética , Proteínas de Plantas/química , Proteínas de Plantas/metabolismo , Plantas Daninhas/química , Plantas Daninhas/efeitos dos fármacos , Plantas Daninhas/enzimologia , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/metabolismo , Relação Quantitativa Estrutura-Atividade , Nicotiana/química , Nicotiana/efeitos dos fármacos , Nicotiana/enzimologia , Controle de Plantas Daninhas
9.
Biomolecules ; 9(10)2019 09 20.
Artigo em Inglês | MEDLINE | ID: mdl-31547161

RESUMO

The herbicide fomesafen has the advantages of low toxicity and high selectivity, and the target of this compound is protoporphyrinogen IX oxidase (PPO, EC 1.3.3.4). However, this herbicide has a long residual period and can have phytotoxic effects on succeeding crops. To protect maize from fomesafen, a series of thiazole phenoxypyridines were designed based on structure-activity relationships, active substructure combinations, and bioisosterism. Bioassays showed that thiazole phenoxypyridines could improve maize tolerance under fomesafen toxicity stress to varying degrees at a dose of 10 mg·kg-1. Compound 4i exhibited the best effects. After being treated by compound 4i, average recovery rates of growth index exceeded 72%, glutathione content markedly increased by 167% and glutathione S-transferase activity was almost 163% of fomesafen-treated group. More importantly, after being treated by compound 4i, the activity of PPO, the main target enzyme of fomesafen, recovered to 93% of the control level. The molecular docking result exhibited that the compound 4i could compete with fomesafen to bind with the herbicide target enzyme, which consequently attained the herbicide detoxification. The present work suggests that compound 4i could be developed as a potential safener to protect maize from fomesafen.


Assuntos
Protoporfirinogênio Oxidase/metabolismo , Piridinas/síntese química , Tiazóis/síntese química , Zea mays/crescimento & desenvolvimento , Benzamidas/efeitos adversos , Benzamidas/farmacologia , Desenho de Fármacos , Regulação da Expressão Gênica de Plantas/efeitos dos fármacos , Glutationa/metabolismo , Glutationa Transferase/metabolismo , Modelos Moleculares , Simulação de Acoplamento Molecular , Proteínas de Plantas/química , Proteínas de Plantas/metabolismo , Protoporfirinogênio Oxidase/química , Piridinas/química , Piridinas/farmacologia , Relação Estrutura-Atividade , Tiazóis/química , Tiazóis/farmacologia , Zea mays/efeitos dos fármacos , Zea mays/metabolismo
10.
J Agric Food Chem ; 67(33): 9254-9264, 2019 Aug 21.
Artigo em Inglês | MEDLINE | ID: mdl-31356740

RESUMO

In continuation of our search for potent protoporphyrinogen IX oxidase (PPO, EC 1.3.3.4) inhibitors, we designed and synthesized a series of novel herbicidal cycloalka[d]quinazoline-2,4-dione-benzoxazinones. The bioassay results of these synthesized compounds indicated that most of the compounds exhibited very strong Nicotiana tabacum PPO (NtPPO) inhibition activity. More than half of the 37 synthesized compounds displayed over 80% control of all three tested broadleaf weeds at 37.5-150 g ai/ha by postemergent application, and a majority of them showed no phytotoxicity toward at least one kind of crop at 150 g ai/ha. Promisingly, 17i (Ki = 6.7 nM) was 6 and 4 times more potent than flumioxazin (Ki = 46 nM) and trifludimoxazin (Ki = 31 nM), respectively. Moreover, 17i displayed excellent, broad-spectrum herbicidal activity, even at levels as low as 37.5 g ai/ha, and it was determined to be safe for wheat at 150 g ai/ha in postemergent application, indicating the great potential for 17i development as a herbicide for weed control in wheat fields.


Assuntos
Benzoxazinas/química , Inibidores Enzimáticos/química , Inibidores Enzimáticos/farmacologia , Herbicidas/química , Herbicidas/farmacologia , Proteínas de Plantas/antagonistas & inibidores , Protoporfirinogênio Oxidase/antagonistas & inibidores , Quinazolinas/química , Benzoxazinas/farmacologia , Desenho de Fármacos , Cinética , Proteínas de Plantas/química , Plantas Daninhas/efeitos dos fármacos , Plantas Daninhas/enzimologia , Protoporfirinogênio Oxidase/química , Relação Quantitativa Estrutura-Atividade , Quinazolinas/farmacologia , Nicotiana/efeitos dos fármacos , Nicotiana/enzimologia , Controle de Plantas Daninhas
11.
J Biol Chem ; 293(32): 12394-12404, 2018 08 10.
Artigo em Inglês | MEDLINE | ID: mdl-29925590

RESUMO

Protoporphyrinogen IX oxidase (PPO), the last enzyme that is common to both chlorophyll and heme biosynthesis pathways, catalyzes the oxidation of protoporphyrinogen IX to protoporphyrin IX. PPO has several isoforms, including the oxygen-dependent HemY and an oxygen-independent enzyme, HemG. However, most cyanobacteria encode HemJ, the least characterized PPO form. We have characterized HemJ from the cyanobacterium Synechocystis sp. PCC 6803 (Synechocystis 6803) as a bona fide PPO; HemJ down-regulation resulted in accumulation of tetrapyrrole precursors and in the depletion of chlorophyll precursors. The expression of FLAG-tagged Synechocystis 6803 HemJ protein (HemJ.f) and affinity isolation of HemJ.f under native conditions revealed that it binds heme b The most stable HemJ.f form was a dimer, and higher oligomeric forms were also observed. Using both oxygen and artificial electron acceptors, we detected no enzymatic activity with the purified HemJ.f, consistent with the hypothesis that the enzymatic mechanism for HemJ is distinct from those of other PPO isoforms. The heme absorption spectra and distant HemJ homology to several membrane oxidases indicated that the heme in HemJ is redox-active and involved in electron transfer. HemJ was conditionally complemented by another PPO, HemG from Escherichia coli. If grown photoautotrophically, the complemented strain accumulated tripropionic tetrapyrrole harderoporphyrin, suggesting a defect in enzymatic conversion of coproporphyrinogen III to protoporphyrinogen IX, catalyzed by coproporphyrinogen III oxidase (CPO). This observation supports the hypothesis that HemJ is functionally coupled with CPO and that this coupling is disrupted after replacement of HemJ by HemG.


Assuntos
Coproporfirinogênio Oxidase/metabolismo , Heme/metabolismo , Protoporfirinogênio Oxidase/metabolismo , Synechocystis/enzimologia , Tetrapirróis/metabolismo , Coproporfirinogênio Oxidase/química , Heme/química , Modelos Moleculares , Oxirredução , Protoporfirinogênio Oxidase/química , Tetrapirróis/química
12.
Sci Rep ; 7(1): 8860, 2017 08 18.
Artigo em Inglês | MEDLINE | ID: mdl-28821733

RESUMO

Tyrosinases and catechol oxidases belong to the polyphenol oxidase (PPO) enzyme family, which is mainly responsible for the browning of fruits. Three cDNAs encoding PPO pro-enzymes have been cloned from leaves of Malus domestica (apple, MdPPO). The three pro-enzymes MdPPO1-3 were heterologously expressed in E. coli yielding substantial amounts of protein and have been characterized with regard to their optimum of activity resulting from SDS, acidic and proteolytic activation. Significant differences were found in the kinetic characterization of MdPPO1-3 when applying different mono- and diphenolic substrates. All three enzymes have been classified as tyrosinases, where MdPPO1 exhibits the highest activity with tyramine (kcat = 9.5 s-1) while MdPPO2 and MdPPO3 are also clearly active on this monophenolic substrate (kcat = 0.92 s-1 and kcat = 1.0 s-1, respectively). Based on the activity, sequence data and homology modelling it is proposed that the monophenolase and diphenolase activity of PPOs can be manipulated by the appropriate combination of two amino acids, which are located within the active site cleft and were therefore named "activity controllers".


Assuntos
Aminoácidos/química , Catecol Oxidase/química , Catecol Oxidase/metabolismo , Malus/enzimologia , Monofenol Mono-Oxigenase/química , Monofenol Mono-Oxigenase/metabolismo , Proteínas Recombinantes , Sequência de Aminoácidos , Catecol Oxidase/genética , Expressão Gênica , Malus/genética , Modelos Moleculares , Monofenol Mono-Oxigenase/genética , Monofenol Mono-Oxigenase/isolamento & purificação , Conformação Proteica , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/metabolismo , Espectrometria de Massas por Ionização por Electrospray , Espectrometria de Massas por Ionização e Dessorção a Laser Assistida por Matriz , Especificidade por Substrato
13.
J Agric Food Chem ; 65(26): 5278-5286, 2017 Jul 05.
Artigo em Inglês | MEDLINE | ID: mdl-28616976

RESUMO

To search for new protoporphyrinogen oxidase (PPO, EC 1.3.3.4) inhibitors with improved bioactivity, a series of novel pyrido[2,3-d]pyrimidine-2,4-dione-benzoxazinone hybrids, 9-13, were designed and synthesized. Several compounds with improved tobacco PPO (mtPPO)-inhibiting and promising herbicidal activities were found. Among them, the most potent compound, 3-(7-fluoro-3-oxo-4-(prop-2-yn-1-yl)-3,4-dihydro-2H-benzo[b][1,4] oxazin-6-yl)-1-methylpyrido[2,3-d]pyrimidine-2,4(1H,3H)-dione, 11q, with a Ki value of 0.0074 µM, showed six times more activity than flumioxazin (Ki = 0.046 µM) against mtPPO. Compound 11q displayed a strong and broad spectrum of weed control at 37.5-150 g of active ingredient (ai)/ha by both post- and pre-emergence application, which was comparable to that of flumioxazin. 11q was safe to maize, soybean, peanut, and cotton at 150 g ai/ha, and selective to rice and wheat at 75 g ai/ha by pre-emergence application, indicating potential applicability in these fields.


Assuntos
Inibidores Enzimáticos/síntese química , Inibidores Enzimáticos/farmacologia , Herbicidas/síntese química , Herbicidas/farmacologia , Proteínas de Plantas/antagonistas & inibidores , Protoporfirinogênio Oxidase/antagonistas & inibidores , Pirimidinas/química , Benzoxazinas/química , Inibidores Enzimáticos/química , Herbicidas/química , Cinética , Proteínas de Plantas/química , Plantas Daninhas/efeitos dos fármacos , Plantas Daninhas/enzimologia , Protoporfirinogênio Oxidase/química , Relação Estrutura-Atividade , Nicotiana/enzimologia
14.
J Agric Food Chem ; 65(28): 5581-5588, 2017 Jul 19.
Artigo em Inglês | MEDLINE | ID: mdl-28654285

RESUMO

Tuning the binding selectivity through appropriate ways is a primary goal in the design and optimization of a lead toward agrochemical discovery. However, how to achieve rational design of selectivity is still a big challenge. Herein, we developed a novel computational fragment generation and coupling (CFGC) strategy that led to a series of highly potent and bioselective inhibitors targeting protoporphyrinogen IX oxidase. This enzyme plays a vital role in heme and chlorophyll biosynthesis, which has been proven to be associated with many drugs and agrochemicals. However, existing agrochemicals are nonbioselective, resulting in a great threat to nontargeted organisms. To the best of our knowledge, this is the first bioselective inhibitor targeting the tetrapyrrole biosynthesis pathway. In addition, the candidate showed excellent in vivo bioactivity and much better safety toward humans.


Assuntos
Inibidores Enzimáticos/química , Protoporfirinogênio Oxidase/antagonistas & inibidores , Clorofila/metabolismo , Biologia Computacional , Heme/metabolismo , Humanos , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/metabolismo , Nicotiana/química , Nicotiana/enzimologia
15.
Mol Inform ; 35(10): 476-482, 2016 10.
Artigo em Inglês | MEDLINE | ID: mdl-27712043

RESUMO

Protoporphyrinogen IX oxidase (PPO, EC 1.3.3.4) catalyzes the oxidation of protoporphyrinogen IX (protogen IX) to protoporphyrin IX (proto IX) in the haem/chlorophyll biosynthetic pathway. Although extensive studies of PPO have already afforded many insights into its biological function and its significance to agriculture and medicine, details of the enzymatic mechanism as well as the nature of the specific amino acids involved in substrate binding still remain largely unknown due to the lack of structural information about protogen IX binding to PPO. In this study, we carried out a detailed and systematic investigation on the binding mode of protogen IX in the Nicotiana tabacum PPO (mtPPO) by performing a computational docking followed by molecular simulations, quantum mechanics calculations, and an integrated analysis. The proposed binding mode was consistent with experimental studies, and several potential key residues that have not been investigated in previous studies, such as Thr70, Arg233, Ser235, Ser474 and Lys477, were identified. In addition, we compared the binding modes of protogen IX in mtPPO and Homo sapiens PPO, and found their differences. Considering the low sequence identity and the differences of biochemical properties among the PPOs from various species, the investigation could provide a valuable basis for the design of PPO inhibitors with high potency and species-selectivity.


Assuntos
Simulação de Acoplamento Molecular , Simulação de Dinâmica Molecular , Protoporfirinogênio Oxidase/química , Protoporfirinas/química , Conformação Molecular , Estrutura Molecular , Protoporfirinogênio Oxidase/metabolismo , Protoporfirinas/metabolismo
16.
J Agric Food Chem ; 64(3): 552-62, 2016 Jan 27.
Artigo em Inglês | MEDLINE | ID: mdl-26728549

RESUMO

Protoporphyrinogen oxidase (PPO, E.C. 1.3.3.4) is known as a key action target for several structurally diverse herbicides. As a continuation of our research work on the development of new PPO-inhibiting herbicides, a series of novel 3-(2'-halo-5'-substituted-benzothiazol-1'-yl)-1-methyl-6-(trifluoromethyl)pyrimidine-2,4-diones 9 were designed and synthesized. The bioassay results indicated that a number of the newly synthesized compounds exhibited higher inhibition activity against tobacco PPO (mtPPO) than the controls, saflufenacil and sulfentrazone. Compound 9F-5 was identified as the most potent inhibitor with a Ki value of 0.0072 µM against mtPPO, showing about 4.2-fold and 1.4-fold higher potency than sulfentrazone (Ki = 0.03 µM) and saflufenacil (Ki = 0.01 µM), respectively. An additional green house assay demonstrated that compound 9F-6 (Ki = 0.012 µM) displayed the most promising postemergence herbicidal activity with a broad spectrum even at a concentration as low as 37.5 g of active ingredient (ai)/ha. Maize exhibits relative tolerance against compound 9F-6 at the dosage of 150 g ai/ha, but it is susceptible to saflufenacil even at 75 g ai/ha. Thus, compound 9F-6 exhibits the potential to be a new herbicide for weed control in maize fields.


Assuntos
Inibidores Enzimáticos/farmacologia , Herbicidas/farmacologia , Nicotiana/enzimologia , Proteínas de Plantas/química , Protoporfirinogênio Oxidase/química , Inibidores Enzimáticos/química , Herbicidas/síntese química , Herbicidas/química , Cinética , Proteínas de Plantas/metabolismo , Protoporfirinogênio Oxidase/metabolismo , Pirimidinonas/química , Pirimidinonas/farmacologia , Relação Quantitativa Estrutura-Atividade , Sulfonamidas/química , Sulfonamidas/farmacologia , Nicotiana/efeitos dos fármacos , Triazóis/química , Triazóis/farmacologia
17.
Genome Biol Evol ; 6(8): 2141-55, 2014 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-25108393

RESUMO

Tetrapyrroles such as heme and chlorophyll are essential for biological processes, including oxygenation, respiration, and photosynthesis. In the tetrapyrrole biosynthesis pathway, protoporphyrinogen IX oxidase (Protox) catalyzes the formation of protoporphyrin IX, the last common intermediate for the biosynthesis of heme and chlorophyll. Three nonhomologous isofunctional enzymes, HemG, HemJ, and HemY, for Protox have been identified. To reveal the distribution and evolution of the three Protox enzymes, we identified homologs of each along with other heme biosynthetic enzymes by whole-genome clustering across three domains of life. Most organisms possess only one of the three Protox types, with some exceptions. Detailed phylogenetic analysis revealed that HemG is mostly limited to γ-Proteobacteria whereas HemJ may have originated within α-Proteobacteria and transferred to other Proteobacteria and Cyanobacteria. In contrast, HemY is ubiquitous in prokaryotes and is the only Protox in eukaryotes, so this type may be the ancestral Protox. Land plants have a unique HemY homolog that is also shared by Chloroflexus species, in addition to the main HemY homolog originating from Cyanobacteria. Meanwhile, organisms missing any Protox can be classified into two groups; those lacking most heme synthetic genes, which necessarily depend on external heme supply, and those lacking only genes involved in the conversion of uroporphyrinogen III into heme, which would use a precorrin2-dependent alternative pathway. However, hemN encoding coproporphyrinogen IX oxidase was frequently found in organisms lacking Protox enzyme, which suggests a unique role of this gene other than in heme biosynthesis.


Assuntos
Filogenia , Protoporfirinogênio Oxidase/genética , Protoporfirinas/metabolismo , Animais , Bactérias/enzimologia , Bactérias/genética , Bactérias/metabolismo , Vias Biossintéticas , Heme/genética , Heme/metabolismo , Isoenzimas/química , Isoenzimas/genética , Isoenzimas/metabolismo , Modelos Moleculares , Oxirredução , Plantas/enzimologia , Plantas/genética , Plantas/metabolismo , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/metabolismo , Protoporfirinas/genética , Tetrapirróis/genética , Tetrapirróis/metabolismo
18.
J Agric Food Chem ; 62(29): 7209-15, 2014 Jul 23.
Artigo em Inglês | MEDLINE | ID: mdl-24983412

RESUMO

The potential of protoporphyrinogen oxidase (PPO) to develop resistance against five PPO-inhibiting herbicides has been studied using computational mutation scanning (CMS) protocol, leading to valuable insights into the resistance mechanisms and structure-resistance relationship of the PPO inhibitors. The calculated shifts in the binding free energies caused by the mutations correlated very well with those derived from the corresponding experimental data obtained from site-directed mutagenesis of PPO, leading to valuable insights into the resistance mechanisms of PPO inhibitors. The calculated entropy change was related to the conformational flexibility of the inhibitor, which demonstrated that inhibitors with appropriate conformational flexibility may inhibit both the wild type and mutants simultaneously. The reasonable correlation between the computational and experimental data further validate that CMS protocol is valuable for predicting resistance associated with amino acid mutations on target proteins.


Assuntos
Herbicidas/farmacologia , Protoporfirinogênio Oxidase/antagonistas & inibidores , Estrutura Molecular , Mutagênese Sítio-Dirigida , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/genética
19.
J Bacteriol ; 195(18): 4221-30, 2013 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-23852872

RESUMO

Salicylidene acylhydrazides (SAHs) inhibit the type III secretion system (T3S) of Yersinia and other Gram-negative bacteria. In addition, SAHs restrict the growth and development of Chlamydia species. However, since the inhibition of Chlamydia growth by SAH is suppressed by the addition of excess iron and since SAHs have an iron-chelating capacity, their role as specific T3S inhibitors is unclear. We investigated here whether SAHs exhibit a function on C. trachomatis that goes beyond iron chelation. We found that the iron-saturated SAH INP0341 (IS-INP0341) specifically affects C. trachomatis infectivity with reduced generation of infectious elementary body (EB) progeny. Selection and isolation of spontaneous SAH-resistant mutant strains revealed that mutations in hemG suppressed the reduced infectivity caused by IS-INP0341 treatment. Structural modeling of C. trachomatis HemG predicts that the acquired mutations are located in the active site of the enzyme, suggesting that IS-INP0341 inhibits this domain of HemG and that protoporphyrinogen oxidase (HemG) and heme metabolism are important for C. trachomatis infectivity.


Assuntos
Proteínas de Bactérias/genética , Chlamydia trachomatis/efeitos dos fármacos , Chlamydia trachomatis/genética , Hidrazinas/farmacologia , Mutação , Protoporfirinogênio Oxidase/genética , Sequência de Aminoácidos , Proteínas de Bactérias/química , Proteínas de Bactérias/metabolismo , Domínio Catalítico , Chlamydia trachomatis/enzimologia , Chlamydia trachomatis/patogenicidade , Farmacorresistência Bacteriana , Células HeLa , Heme/metabolismo , Humanos , Ferro/metabolismo , Ferro/farmacologia , Modelos Moleculares , Dados de Sequência Molecular , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/metabolismo
20.
Bioorg Med Chem ; 21(11): 3245-55, 2013 Jun 01.
Artigo em Inglês | MEDLINE | ID: mdl-23623257

RESUMO

Protoporphyrinogen oxidase (PPO, E.C. 1.3.3.4) is the action target for several structurally diverse herbicides. A series of novel 4-(difluoromethyl)-1-(6-halo-2-substituted-benzothiazol-5-yl)-3-methyl-1H-1,2,4-triazol-5(4H)-ones 2a-z were designed and synthesized via the ring-closure of two ortho-substituents. The in vitro bioassay results indicated that the 26 newly synthesized compounds exhibited good PPO inhibition effects with K(i) values ranging from 0.06 to 17.79 µM. Compound 2e, ethyl 2-{[5-(4-(difluoromethyl)-3-methyl-5-oxo-4,5-dihydro-1H-1,2,4-triazol-1-yl)-6-fluorobenzo-thiazol-2-yl]thio}acetate, was the most potent inhibitor with K(i) value of 0.06 µM against mtPPO, comparable to (K(i)=0.03 µM) sulfentrazone. Further green house assays showed that compound 2f (K(i)=0.24 µM, mtPPO), ethyl 2-{[5-(4-(difluoromethyl)-3-methyl-5-oxo-4,5-dihydro-1H-1,2,4-triazol-1-yl)-6-fluorobenzothiazol-2-yl]thio}propanoate, showed the most promising post-emergence herbicidal activity with broad spectrum even at concentrations as low as 37.5 gai/ha. Soybean exhibited tolerance to compound 2f at the dosages of 150 gai/ha, whereas they are susceptible to sulfentrazone even at 75 gai/ha. Thus, compound 2f might be a potential candidate as a new herbicide for soybean fields.


Assuntos
Herbicidas/síntese química , Proteínas de Plantas/antagonistas & inibidores , Protoporfirinogênio Oxidase/antagonistas & inibidores , Tiazóis/síntese química , Bioensaio , Herbicidas/química , Herbicidas/farmacologia , Simulação de Acoplamento Molecular , Proteínas de Plantas/química , Proteínas de Plantas/metabolismo , Plantas Daninhas/efeitos dos fármacos , Plantas Daninhas/enzimologia , Plantas Daninhas/crescimento & desenvolvimento , Protoporfirinogênio Oxidase/química , Protoporfirinogênio Oxidase/metabolismo , Glycine max/efeitos dos fármacos , Glycine max/enzimologia , Glycine max/crescimento & desenvolvimento , Especificidade da Espécie , Relação Estrutura-Atividade , Sulfonamidas/química , Sulfonamidas/farmacologia , Tiazóis/química , Tiazóis/farmacologia , Triazóis/química , Triazóis/farmacologia
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