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1.
Methods Enzymol ; 699: 59-87, 2024.
Article de Anglais | MEDLINE | ID: mdl-38942516

RÉSUMÉ

Structural biology research of terpene synthases (TSs) has provided a useful basis to understand their catalytic mechanisms in producing diverse terpene products with polycyclic ring systems and multiple chiral centers. However, compared to the large numbers of>95,000 terpenoids discovered to date, few structures of TSs have been solved and the understanding of their catalytic mechanisms is lagging. We here (i) introduce the basic catalytic logic, the structural architectures, and the metal-binding conserved motifs of TSs; (ii) provide detailed experimental procedures, in gene cloning and plasmid construction, protein purification, crystallization, X-ray diffraction data collection and structural elucidation, for structural biology research of TSs; and (iii) discuss the prospects of structure-based engineering and de novo design of TSs in generating valuable terpene molecules, which cannot be easily achieved by chemical synthesis.


Sujet(s)
Alkyl et aryl transferases , Alkyl et aryl transferases/composition chimique , Alkyl et aryl transferases/métabolisme , Alkyl et aryl transferases/génétique , Cristallographie aux rayons X/méthodes , Terpènes/métabolisme , Terpènes/composition chimique , Clonage moléculaire/méthodes , Modèles moléculaires , Conformation des protéines
2.
Angew Chem Int Ed Engl ; 63(23): e202405140, 2024 Jun 03.
Article de Anglais | MEDLINE | ID: mdl-38584136

RÉSUMÉ

Little is known about the structures and catalytic mechanisms of sesterterpene synthases (StTSs), which greatly hinders the structure-based engineering of StTSs for structural diversity expansion of sesterterpenes. We here report on the crystal structures of the terpene cyclization (TC) domains of two fungal StTSs: sesterfisherol synthase (NfSS) and sesterbrasiliatriene synthase (PbSS). Both TC structures contain benzyltriethylammonium chloride (BTAC), pyrophosphate (PPi), and magnesium ions (Mg2+), clearly defining the catalytic active sites. A combination of theory and experiments including carbocationic intermediates modeling, site-directed mutagenesis, and isotope labeling provided detailed insights into the structural basis for their catalytic mechanisms. Structure-based engineering of NfSS and PbSS resulted in the formation of 20 sesterterpenes including 13 new compounds and four pairs of epimers with different configurations at C18. These results expand the structural diversity of sesterterpenes and provide important insights for future synthetic biology research.


Sujet(s)
Sesterterpènes , Sesterterpènes/composition chimique , Sesterterpènes/métabolisme , Cyclisation , Terpènes/métabolisme , Terpènes/composition chimique , Alkyl et aryl transferases/métabolisme , Alkyl et aryl transferases/composition chimique , Alkyl et aryl transferases/génétique , Ingénierie des protéines , Domaine catalytique , Modèles moléculaires , Cristallographie aux rayons X
3.
J Am Chem Soc ; 2023 Apr 05.
Article de Anglais | MEDLINE | ID: mdl-37018048

RÉSUMÉ

The cyclization of farnesyl diphosphate (FPP) into highly strained polycyclic sesquiterpenes is challenging. We here determined the crystal structures of three sesquiterpene synthases (STSs, namely, BcBOT2, DbPROS, and CLM1) catalyzing the biosynthesis of the tricyclic sesquiterpenes presilphiperfolan-8ß-ol (1), Δ6-protoilludene (2), and longiborneol (3). All three STS structures contain a substrate mimic, the benzyltriethylammonium cation (BTAC), in their active sites, providing ideal templates for quantum mechanics/molecular mechanics (QM/MM) analyses toward their catalytic mechanisms. The QM/MM-based molecular dynamics (MD) simulations revealed the cascade reactions toward the enzyme products, and different key active site residues that play important roles in stabilizing reactive carbocation intermediates along the three pathways. Site-directed mutagenesis experiments confirmed the roles of these key residues and concomitantly resulted in 17 shunt products (4-20). Isotopic labeling experiments addressed the key hydride and methyl migrations toward the main and several shunt products. These combined methods provided deep insights into the catalytic mechanisms of the three STSs and demonstrated how the chemical space of STSs can rationally be expanded, which may facilitate applications in synthetic biology approaches toward pharmaceutical and perfumery agents.

4.
Angew Chem Int Ed Engl ; 61(36): e202209785, 2022 09 05.
Article de Anglais | MEDLINE | ID: mdl-35819825

RÉSUMÉ

The crystal structures of cattleyene synthase (apo-CyS), and CyS complexed with geranylgeranyl pyrophosphate (GGPP) were solved. The CySC59A variant exhibited an increased production of cattleyene and other diterpenes with diverse skeletons. Its structure showed a widened active site cavity explaining the relaxed selectivity. Isotopic labeling experiments revealed a remarkable cyclization mechanism involving several skeletal rearrangements for one of the novel diterpenes.


Sujet(s)
Diterpènes , Domaine catalytique , Cyclisation , Diterpènes/composition chimique , Mutagenèse
5.
Commun Chem ; 4(1): 140, 2021 Sep 30.
Article de Anglais | MEDLINE | ID: mdl-36697656

RÉSUMÉ

Pimarane-type diterpenoids are widely distributed in all domains of life, but no structures or catalytic mechanisms of pimarane-type diterpene synthases (DTSs) have been characterized. Here, we report that two class I DTSs, Sat1646 and Stt4548, each accept copalyl diphosphate (CPP) as the substrate to produce isopimara-8,15-diene (1). Sat1646 can also accept syn-CPP and produce syn-isopimaradiene/pimaradiene analogues (2-7), among which 2 possesses a previously unreported "6/6/7" ring skeleton. We solve the crystal structures of Sat1646, Sat1646 complexed with magnesium ions, and Stt4548, thereby revealing the active sites of these pimarane-type DTSs. Substrate modeling and subsequent site-directed mutagenesis experiments demonstrate different structural bases of Sat1646 and Stt4548 for 1 production. Comparisons with previously reported DTSs reveal their distinct carbocation intermediate stabilization mechanisms, which control the conversion of a single substrate CPP into structurally diverse diterpene products. These results illustrate the structural bases for enzymatic catalyses of pimarane-type DTSs, potentially facilitating future DTS engineering and combinatorial biosynthesis.

6.
J Nat Prod ; 83(7): 2246-2254, 2020 07 24.
Article de Anglais | MEDLINE | ID: mdl-32663025

RÉSUMÉ

Seven new 4-acyl-2-aminoimidazoles, designated strepimidazoles A-G (1-7), were discovered from the endophytic Streptomyces sp. PKU-EA00015 isolated from Salvia miltiorrhiza Bunge, whose dry root "Danshen" is one of the most widely used traditional Chinese medicines. The resonance signals of the 2-aminoimidazole moiety in 1-7 were absent in the NMR spectra due to tautomerization, and the structures of 1-7 were identified after preparation of their acetylation products 1a-7a, respectively. Compounds 1-7 represent a new family of 2-aminoimidazole-containing natural products, enriching the structural diversity of natural products from endophytic origin. Compounds 1-7 showed different degrees of inhibitory activities against the plant pathogenic fungus Verticillium dahliae V991, revealing structure-activity relationships on the acyl moieties. The plant pathogenic fungus V. dahliae has been confirmed to cause serious chlorosis of cultivated S. miltiorrhiza Bunge in China. This study opens the door for further investigation of mutualistic relationships between S. miltiorrhiza Bunge and their endophytic actinomycetes and for possible antifungal agent development for biological control of V. dahliae in the future.


Sujet(s)
Ascomycota/effets des médicaments et des substances chimiques , Imidazoles/pharmacologie , Plantes/microbiologie , Streptomyces/composition chimique , Ascomycota/pathogénicité , Lignée cellulaire tumorale , Tests de criblage d'agents antitumoraux , Humains , Imidazoles/composition chimique , Imidazoles/isolement et purification , Médecine traditionnelle chinoise , Tests de sensibilité microbienne , Structure moléculaire , Analyse spectrale/méthodes
7.
Org Lett ; 21(8): 2813-2817, 2019 04 19.
Article de Anglais | MEDLINE | ID: mdl-30924671

RÉSUMÉ

A new phenylamine-incorporated angucyclinone (1) featuring a unique 1-phenylbenzo[ cd]indol-3(1 H)-one moiety was discovered from marine Streptomyces sp. PKU-MA00218. A series of experimental investigations identified that 1 was produced from the nonenzymatic conversion of a C-ring-cleaved angucyclinone (2) with phenylamine. Utilizing the nonenzymatic conversion, 18 phenylamine-incorporated angucyclinone derivatives with halogen, methyl, methoxy, and carboxy substitutions were efficiently generated under mild conditions. These results highlighted the impressive roles of nonenzymatic reactions in expanding the structural diversity of angucyclinones.


Sujet(s)
Dérivés de l'aniline/composition chimique , Anthraquinones/composition chimique , Streptomyces/métabolisme , Organismes aquatiques , Voies de biosynthèse , Fermentation , Polycétides/synthèse chimique , Relation structure-activité
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