Search results for "Vinca alkaloid"

showing 6 items of 16 documents

A pilot study of vinorelbine on a weekly schedule in recurrent and/or metastatic squamous cell carcinoma of the head and neck.

1993

Vinorelbine (VNR), 5′-nor-anhydrovinblastine, is a new semi-synthetic vinka alkaloid with selective affinity for mitotic microtubules, which has been shown to be active against several non small cell lung cancer lines in vitro [1]. VNR has been reported to yield a 34.7 % and 20 % overall response rate in patients with squamous cell lung carcinoma and bronchial adenocarcinoma respectively [2]. Moreover, VNR has been shown to be active in advanced breast carcinoma where it may induce a 30–50 % response rate depending on the extent of pretreatment [3]. We tested the activity and toxicity of single agent VNR given on a weekly schedule in a series of patients with recurrent and/or metastatic squ…

OncologyMaleCancer Researchmedicine.medical_specialtymedicine.drug_classAntineoplastic AgentsPilot ProjectsVinorelbineVinblastineVinca alkaloidInternal medicineCarcinomamedicineHumansHead and neckLung cancerMitosisbusiness.industryVinorelbineMiddle Agedmedicine.diseaseVinblastineOncologyHead and Neck NeoplasmsToxicityCarcinoma Squamous CellFemalebusinessmedicine.drugEuropean journal of cancer (Oxford, England : 1990)
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Structure-based engineering of strictosidine synthase: auxiliary for alkaloid libraries.

2007

SummaryThe highly substrate-specific strictosidine synthase (EC 4.3.3.2) catalyzes the biological Pictet-Spengler condensation between tryptamine and secologanin, leading to the synthesis of about 2000 monoterpenoid indole alkaloids in higher plants. The crystal structure of Rauvolfia serpentina strictosidine synthase (STR1) in complex with strictosidine has been elucidated here, allowing the rational site-directed mutation of the active center of STR1 and resulting in modulation of its substrate acceptance. Here, we report on the rational redesign of STR1 by generation of a Val208Ala mutant, further describing the influence on substrate acceptance and the enzyme-catalyzed synthesis of 10-m…

TryptamineCHEMBIOLStrictosidine synthaseMICROBIOStereochemistryProtein ConformationClinical BiochemistryMutantDrug Evaluation PreclinicalMutation MissenseCrystallography X-RayProtein EngineeringBiochemistryIndole AlkaloidsSubstrate Specificitychemistry.chemical_compoundRauvolfia serpentinaDrug DiscoveryCatharanthusCarbon-Nitrogen LyasesMolecular BiologyVinca AlkaloidsPlant ProteinsPharmacologybiologyMolecular StructureGeneral Medicinebiology.organism_classificationLyaseBiochemistrychemistryStrictosidinebiology.proteinMutagenesis Site-DirectedMolecular MedicineSecologaninProtein BindingChemistrybiology
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A facile chemoenzymatic approach: one-step syntheses of monoterpenoid indole alkaloids.

2010

Facile chemoenzymatic syntheses of cytotoxic monoterpenoid indole alkaloids with novel skeletons and multiple chiral centers are described. Synthesis of these alkaloids was achieved by a simple one-step reaction using strictosidine and 12-aza-strictosidine as the key intermediates. Strictosidines were prepared by coupling of secologanin with tryptamine and 7-aza-tryptamine, respectively, using the immobilized recombinant Rauvolfia strictosidine synthase. A detailed stereochemical analysis is presented herein. The results provide an opportunity for a chemoenzymatic approach that leads to an increased diversification of complex alkaloids with improved structures and activities.

TryptamineModels MolecularRauvolfiaStrictosidine synthaseStereochemistryOne-StepBiochemistryRauwolfiachemistry.chemical_compoundCarbon-Nitrogen LyasesSecologanin Tryptamine AlkaloidsVinca AlkaloidsAza CompoundsbiologyMolecular StructureOrganic ChemistryGeneral Chemistrybiology.organism_classificationEnzymes ImmobilizedSecologanin Tryptamine AlkaloidsRecombinant ProteinschemistryBiocatalysisStrictosidinebiology.proteinBiocatalysisSecologaninChemistry, an Asian journal
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3D-Structure and function of strictosidine synthase--the key enzyme of monoterpenoid indole alkaloid biosynthesis.

2008

Strictosidine synthase (STR; EC 4.3.3.2) plays a key role in the biosynthesis of monoterpenoid indole alkaloids by catalyzing the Pictet-Spengler reaction between tryptamine and secologanin, leading exclusively to 3alpha-(S)-strictosidine. The structure of the native enzyme from the Indian medicinal plant Rauvolfia serpentina represents the first example of a six-bladed four-stranded beta-propeller fold from the plant kingdom. Moreover, the architecture of the enzyme-substrate and enzyme-product complexes reveals deep insight into the active centre and mechanism of the synthase highlighting the importance of Glu309 as the catalytic residue. The present review describes the 3D-structure and …

TryptamineStrictosidine synthaseATP synthasebiologyMolecular StructurePhysiologyStereochemistryProtein ConformationPlant Sciencebiology.organism_classificationSecologanin Tryptamine AlkaloidsSubstrate Specificitychemistry.chemical_compoundProtein structurechemistryBiosynthesisBiochemistryRauvolfia serpentinaStrictosidineCarbon-Nitrogen LyasesGeneticsbiology.proteinSecologaninVinca AlkaloidsPlant physiology and biochemistry : PPB
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Improved Expression of His6-Tagged Strictosidine Synthase cDNA for Chemo-Enzymatic Alkaloid Diversification

2010

Strictosidine synthase (STR1) catalyzes the stereoselective formation of 3alpha(S)-strictosidine from tryptamine and secologanin. Strictosidine is the key intermediate in the biosynthesis of 2,000 plant monoterpenoid indole alkaloids, and it is a key precursor of enzyme-mediated synthesis of alkaloids. An improved expression system is described which leads to optimized His(6)-STR1 synthesis in Escherichia coli. Optimal production of STR1 was achieved by determining the impact of co-expression of chaperones pG-Tf2 and pG-LJE8. The amount and activity of STR1 was doubled in the presence of chaperone pG-Tf2 alone. His(6)-STR1 immobilized on Ni-NTA can be used for enzymatic synthesis of stricto…

TryptamineStrictosidine synthaseCatharanthusStereochemistryRecombinant Fusion ProteinsIridoid GlucosidesBioengineeringBiochemistryEnzyme catalysischemistry.chemical_compoundAlkaloidsBiosynthesisCarbon-Nitrogen LyasesHistidineIridoidsVinca AlkaloidsMolecular Biologychemistry.chemical_classificationbiologyGeneral ChemistryGeneral MedicineTryptaminesEnzymechemistryBiochemistryChaperone (protein)StrictosidineBiocatalysisbiology.proteinMolecular MedicineSecologaninOligopeptidesMolecular ChaperonesChemistry & Biodiversity
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Molecular docking and pharmacogenomics of vinca alkaloids and their monomeric precursors, vindoline and catharanthine.

2011

International audience; Vinblastine and vincristine are dimeric indole alkaloids derived from (formerly: ). Their monomeric precursor molecules are vindoline and catharanthine. While vinblastine and vincristine are well-known mitotic spindle poisons, not much is known about vindoline and catharanthine. Vindoline and catharanthine showed weak cytotoxicity, while vinblastine, vincristine, and the semisynthetic vindesine and vinorelbine revealed high cytotoxicity towards cancer cells. This may reflect a general biological principle of poisonous plants. Highly toxic compounds are not only active towards predators, but also towards plant tissues. Hence, plants need mechanisms to protect themselv…

VincaStereochemistryCatharanthusSwineSpindle ApparatusVinblastineBiochemistryDrug Delivery Systemsmultidrug resistanceCell Line TumorCatharanthusmedicineAnimalsHumansVinca Alkaloidscentrosomal clusteringpharmacogenomicsPharmacologybiologyCell DeathDose-Response Relationship DrugAlkaloidmolecular dockingCatharanthineCatharanthus roseusbiology.organism_classificationTubulin ModulatorsVinblastineTubulinBiochemistryPharmacogenetics[SDV.SP.PHARMA]Life Sciences [q-bio]/Pharmaceutical sciences/Pharmacologybiology.proteinMultidrug Resistance-Associated Proteinsmedicine.drugVindolineProtein BindingBiochemical pharmacology
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