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1.
Environ Microbiol ; 25(4): 786-799, 2023 04.
Artículo en Inglés | MEDLINE | ID: mdl-36567445

RESUMEN

Isoprene (2-methyl-1,3-butadiene) is emitted to the atmosphere each year in sufficient quantities to rival methane (>500 Tg C yr-1 ), primarily due to emission by trees and other plants. Chemical reactions of isoprene with other atmospheric compounds, such as hydroxyl radicals and inorganic nitrogen species (NOx ), have implications for global warming and local air quality, respectively. For many years, it has been estimated that soil-dwelling bacteria consume a significant amount of isoprene (~20 Tg C yr-1 ), but the mechanisms underlying the biological sink for isoprene have been poorly understood. Studies have indicated or confirmed the ability of diverse bacterial genera to degrade isoprene, whether by the canonical iso-type isoprene degradation pathway or through other less well-characterized mechanisms. Here, we review current knowledge of isoprene metabolism and highlight key areas for further research. In particular, examples of isoprene-degraders that do not utilize the isoprene monooxygenase have been identified in recent years. This has fascinating implications both for the mechanism of isoprene uptake by bacteria, and also for the ecology of isoprene-degraders in the environments.


Asunto(s)
Bacterias , Hemiterpenos , Hemiterpenos/química , Hemiterpenos/metabolismo , Bacterias/genética , Bacterias/metabolismo , Butadienos/química , Butadienos/metabolismo , Plantas/metabolismo , Pentanos/química , Pentanos/metabolismo
2.
Bioorg Med Chem Lett ; 75: 128971, 2022 11 01.
Artículo en Inglés | MEDLINE | ID: mdl-36064124

RESUMEN

Type I isopentenyl diphosphate isomerase is a metal-dependent enzyme that generates a tertiary carbocation intermediate during catalysis. This study describes an inhibitor (2-guanidinoethyl(dihydroxyphosphorylmethyl)phosphinate) of the isomerase that bears a guanidinium as a carbocation mimic and a phosphinylphosphonate as a non-hydrolyzable metal binding functionality. Inhibition kinetics show that the compound acts in a competitive manner with a Ki value of 129 nM (KM,IPP/Ki = 27). An analogous inhibitor bearing a tertiary ammonium as the carbocation mimic was 50-fold less potent, suggesting that the planar guanidinium is a more effective carbocation mimic. Inhibitors bearing an acylated methanesulfonamide or a hydroxamate group in place of the pyrophosphate inhibited the enzyme at millimolar concentrations indicating that the isomerase is highly specific for binding to the diphosphate portion of the intermediate.


Asunto(s)
Compuestos de Amonio , Difosfatos , Guanidina/farmacología , Hemiterpenos/química , Isomerasas , Cinética , Compuestos Organofosforados
3.
ACS Macro Lett ; 11(1): 140-148, 2022 01 18.
Artículo en Inglés | MEDLINE | ID: mdl-35574795

RESUMEN

We designed and synthesized high χ-low N-maltoheptaose-(triazolium+/N(SO2CF3)2-)-polyisoprene-(triazolium+/N(SO2CF3)2-)-maltoheptaose ABA triblock elastomers featuring triazolium+/N(SO2CF3)2- (TFSI-) counteranion ionic interfaces separating their constituting polymeric sub-blocks. Spin-coated and solvent-vapor-annealed (SVA) MH1.2k-(T+/TFSI-)-PI4.3k-(T+/TFSI-)-MH1.2k thin films demonstrate interface-induced charge cohesion through ca. 1 nm "thick" ionic nanochannels which facilitate the self-assembly of a perpendicularly aligned lamellar structure. Atomic force microscopy (AFM) and (grazing-incidence) small-angle X-ray scattering ((GI)SAXS) characterizations of MH1.2k-(T+/TFSI-)-PI4.3k-(T+/TFSI-)-MH1.2k and pristine triBCP analogous thin films revealed sub-10 nm block copolymer (BCP) self-assembly and unidirectionally aligned nanostructures developed over several µm2 areas. Solvated TFSI- counterions enhance the oligosaccharide sub-block packing during SVA. The overall BCP phase behavior was mapped through SAXS characterizations comparing di- vs triblock polymeric architectures, a middle PI sub-block with two different molecular masses, and TFSI- or I- counteranion effects. This work highlights the benefits of inducing single-point electrostatic interactions within chemical structures of block copolymers to master the long-range self-assembly of prescribed morphologies.


Asunto(s)
Elastómeros , Polímeros , Triazoles/química , Butadienos/química , Elastómeros/química , Gases/química , Hemiterpenos/química , Oligosacáridos , Polímeros/química , Dispersión del Ángulo Pequeño , Solventes/química , Difracción de Rayos X
4.
Molecules ; 26(23)2021 Nov 26.
Artículo en Inglés | MEDLINE | ID: mdl-34885764

RESUMEN

Lactate and isoprene are two common monomers for the industrial production of polyesters and synthetic rubbers. The present study tested the co-production of D-lactate and isoprene by engineered Escherichia coli in microaerobic conditions. The deletion of alcohol dehydrogenase (adhE) and acetate kinase (ackA) genes, along with the supplementation with betaine, improved the co-production of lactate and isoprene from the substrates of glucose and mevalonate. In fed-batch studies, microaerobic fermentation significantly improved the isoprene concentration in fermentation outlet gas (average 0.021 g/L), compared with fermentation under aerobic conditions (average 0.0009 g/L). The final production of D-lactate and isoprene can reach 44.0 g/L and 3.2 g/L, respectively, through fed-batch microaerobic fermentation. Our study demonstrated a dual-phase production strategy in the co-production of isoprene (gas phase) and lactate (liquid phase). The increased concentration of gas-phase isoprene could benefit the downstream process and decrease the production cost to collect and purify the bio-isoprene from the fermentation outlet gas. The proposed microaerobic process can potentially be applied in the production of other volatile bioproducts to benefit the downstream purification process.


Asunto(s)
Escherichia coli/genética , Hemiterpenos/biosíntesis , Ácido Láctico/biosíntesis , Ingeniería Metabólica , Aerobiosis/genética , Butadienos/química , Escherichia coli/metabolismo , Fermentación , Hemiterpenos/química , Ácido Láctico/química , Ácido Mevalónico/química
5.
ChemMedChem ; 16(15): 2375-2380, 2021 08 05.
Artículo en Inglés | MEDLINE | ID: mdl-33899332

RESUMEN

Aryloxy triester phosphoramidate prodrugs of the monophosphate derivatives of isopentenyl pyrophosphate (IPP) and dimethylallyl pyrophosphate (DMAPP) were synthesized as lipophilic derivatives that can improve cell uptake. Despite the structural similarity of IPP and DMAPP, it was noted that their phosphoramidate prodrugs exhibited distinct stability profiles in aqueous environments, which we show is due to the position of the allyl bond in the backbones of the IPP and DMAPP monophosphates. As the IPP monophosphate aryloxy triester phosphoramidates showed favorable stability, they were subsequently investigated for their ability to activate Vγ9/Vδ2 T cells and they showed promising activation of this subset of T cells. Together, these findings represent the first report of IPP and DMAPP monophosphate prodrugs and the ability of IPP aryloxy triester phosphoramidate prodrugs to activate Vγ9/Vδ2 T cells highlighting their potential as possible immunotherapeutics.


Asunto(s)
Amidas/farmacología , Hemiterpenos/farmacología , Compuestos Organofosforados/farmacología , Ácidos Fosfóricos/farmacología , Linfocitos T/efectos de los fármacos , Amidas/síntesis química , Amidas/química , Voluntarios Sanos , Hemiterpenos/química , Humanos , Compuestos Organofosforados/química , Ácidos Fosfóricos/síntesis química , Ácidos Fosfóricos/química
6.
J Neuroimaging ; 31(3): 517-523, 2021 05.
Artículo en Inglés | MEDLINE | ID: mdl-33783911

RESUMEN

BACKGROUND AND PURPOSE: The role of the cerebellum in olfactory function is not fully understood. In this study, we tried to combine resting state and task functional MRI (fMRI) to improve the understanding of the cerebellum during olfactory processing. METHODS: A resting state and a block paradigm of olfactory stimulation fMRI were scanned in 50 subjects. The olfactory stimuli, including phenylethyl alcohol and isovaleric acid, were alternately delivered to the subject using a custom-built olfactometer through air flow. The cerebellar activations elicited by isovaleric acid were subsequently used in the seed-based resting-state functional connectivity study. RESULTS: Phenylethyl alcohol did not induce any cerebellum activation, while isovaleric acid with a more unpleasant smell elicited significant cerebellum activations, primarily in the bilateral posterior lateral hemispheres (bilateral lobule crus I and right lobule VI). Seed-based functional connectivity analysis revealed significant within-cerebellum and corticocerebellar connections. CONCLUSIONS: The results imply that the cerebellum is probably involved in olfactory-related responses caused by unpleasant odor but does not directly participate in olfactory perception. Our results may further improve the understanding of the cerebellum in olfactory function.


Asunto(s)
Mapeo Encefálico/métodos , Cerebelo/diagnóstico por imagen , Cerebelo/fisiología , Neuroimagen Funcional/métodos , Imagen por Resonancia Magnética/métodos , Olfato/fisiología , Adulto , Femenino , Hemiterpenos/química , Humanos , Masculino , Ácidos Pentanoicos/química , Alcohol Feniletílico/química
7.
Commun Biol ; 4(1): 215, 2021 02 16.
Artículo en Inglés | MEDLINE | ID: mdl-33594248

RESUMEN

Some plant trans-1,4-prenyltransferases (TPTs) produce ultrahigh molecular weight trans-1,4-polyisoprene (TPI) with a molecular weight of over 1.0 million. Although plant-derived TPI has been utilized in various industries, its biosynthesis and physiological function(s) are unclear. Here, we identified three novel Eucommia ulmoides TPT isoforms-EuTPT1, 3, and 5, which synthesized TPI in vitro without other components. Crystal structure analysis of EuTPT3 revealed a dimeric architecture with a central hydrophobic tunnel. Mutation of Cys94 and Ala95 on the central hydrophobic tunnel no longer synthesizd TPI, indicating that Cys94 and Ala95 were essential for forming the dimeric architecture of ultralong-chain TPTs and TPI biosynthesis. A spatiotemporal analysis of the physiological function of TPI in E. ulmoides suggested that it is involved in seed development and maturation. Thus, our analysis provides functional and mechanistic insights into TPI biosynthesis and uncovers biological roles of TPI in plants.


Asunto(s)
Dimetilaliltranstransferasa/metabolismo , Eucommiaceae/enzimología , Hemiterpenos/biosíntesis , Látex/biosíntesis , Proteínas de Plantas/metabolismo , Plantas Modificadas Genéticamente/enzimología , Dimetilaliltranstransferasa/química , Dimetilaliltranstransferasa/genética , Eucommiaceae/genética , Hemiterpenos/química , Látex/química , Modelos Moleculares , Peso Molecular , Mutación , Proteínas de Plantas/genética , Plantas Modificadas Genéticamente/genética , Conformación Proteica , Relación Estructura-Actividad
8.
Int J Mol Sci ; 22(3)2021 Feb 01.
Artículo en Inglés | MEDLINE | ID: mdl-33535426

RESUMEN

The free volume fraction of a macromolecular structure can be assessed theoretically by using a suitable model; however, it can also be evaluated from experimental data obtained from dilatometry and positron annihilation lifetime spectra. In this second case, a regular geometry of the sub-nanometric cavities forming the free volume has to be assumed, although in fact they are irregularly shaped. The most popular approach is to guess spherical holes, which implies an isotropic growth of these last with temperature. In this work, we compared the free volume fraction, as obtained from experiments in a set of polybutadiene and polyisoprene cured rubbers and their blends, with the analogous quantity expected by using the lattice-hole model. The results allowed us to obtain insights on the approximate shape of the holes. Indeed, a cylindrical flattened geometry of the cavities produced a better agreement with the theory than the spherical shape. Furthermore, the best fit was obtained for holes that expanded preferentially in the radial direction, with a consequent decrease of the aspect ratio with temperature.


Asunto(s)
Butadienos/química , Química/métodos , Elastómeros/química , Hemiterpenos/química , Goma/química , Ensayo de Materiales , Estructura Molecular , Presión , Temperatura , Termodinámica
9.
Chemosphere ; 262: 127771, 2021 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-32799139

RESUMEN

The review initiates with current state of information on the atmospheric reaction mechanism of biogenic volatile organic compounds (BVOCs) and its fate in the atmosphere. The plants release BVOCs, i.e., isoprene, monoterpenes, and sesquiterpenes, which form secondary organic aerosols (SOA) upon oxidation. These oxidation reactions are primarily influenced by solar radiations along with other meteorological parameters viz.; temperature and relative humidity, therefore, the chemistry behind SOA formation is different during day than the night time. The review throws light upon the day and nighttime formation mechanism of SOA, recent advancements in the analytical techniques available for the measurements, and its impact on the environment. Studies have revealed that day time SOA formation is dominated by OH and O3, however, NOx initiated SOA production is dominated during night. The formation mechanism addresses that the gaseous products of VOCs are firstly formed and then partitioned over the pre-existing particles. New particle formation and biomass-derived aerosols are found to be responsible for enhanced SOA formation. 2-Dimensional gas chromatography-mass spectrometer (2D-GC/MS) is observed to be best for the analysis of organic aerosols. Radiative forcing (RF) SOA is observed to be a useful parameter to evaluate the environmental impacts of SOA and reviewed studies have shown mean RF in the ranges of -0.27 to +0.20 W m-2.


Asunto(s)
Aerosoles/análisis , Contaminantes Atmosféricos/análisis , Atmósfera/química , Butadienos/análisis , Hemiterpenos/análisis , Monoterpenos/análisis , Compuestos Orgánicos Volátiles/análisis , Aerosoles/química , Contaminantes Atmosféricos/química , Butadienos/química , Hemiterpenos/química , Monoterpenos/química , Oxidación-Reducción , Temperatura , Compuestos Orgánicos Volátiles/química
10.
Org Lett ; 23(2): 497-502, 2021 01 15.
Artículo en Inglés | MEDLINE | ID: mdl-33370122

RESUMEN

Biflavonoids are pharmaceutically important compounds. Prenylation usually improves bioactivity; however, prenylated biflavonoids are rare in nature. Here, we report successful prenylation or geranylation of biflavonoids using fungal prenyltransferase CdpC3PT and its mutants. F253 was identified as a key residue related to donor selectivity, which enables the switching from utilizing DMAPP to GPP precisely at the same C-3''' site of biflavonoids. Furthermore, another residue W181 was discovered to generally increase prenylation activity toward biflavonoids.


Asunto(s)
Biflavonoides/química , Dimetilaliltranstransferasa/metabolismo , Hemiterpenos/química , Compuestos Organofosforados/química , Aminoácidos/química , Aminoácidos/metabolismo , Biflavonoides/metabolismo , Dimetilaliltranstransferasa/química , Hongos/metabolismo , Estructura Molecular , Neopreno , Prenilación
11.
Molecules ; 25(18)2020 Sep 13.
Artículo en Inglés | MEDLINE | ID: mdl-32933154

RESUMEN

Kuromoji (Lindera umbellata) is a tree that grows throughout Japan. The components of kuromoji essential oil have antitumor and aromatherapy effects. However, the composition of the hydrosol, obtained as a by-product of the essential oil process, is unknown. Furthermore, it is unknown whether kuromoji essential oil has a deodorizing effect. Therefore, the purpose of the current study was to compare the chemical composition of kuromoji essential oil and hydrosol, as well as evaluate the deodorizing effect of the former. The chemical composition of samples was evaluated using gas chromatography-mass spectrometry (GC-MS). Additionally, the deodorizing effect of Kuromoji essential oil was investigated with the detector tube method using ammonia, hydrogen sulfide, methyl mercaptan, and isovaleric acid. Linalool was the most abundant component in both the essential oil and hydrosol; however, its proportion was higher in the hydrosol (57.5%) than in the essential oil (42.8%). The hydrosol contained fewer chemical components, but higher proportions of trans-geraniol and ethanol. Moreover, the essential oil eliminated 50% of ammonia and 97.6% or more of isovaleric acid. Interestingly, linalool was soluble in the hydrosol and did not irritate the skin. This suggests that the hydrosol may be an effective foot care product.


Asunto(s)
Monoterpenos Acíclicos/aislamiento & purificación , Desodorantes/aislamiento & purificación , Lindera/química , Aceites Volátiles/química , Aceites de Plantas/química , Monoterpenos Acíclicos/química , Monoterpenos Acíclicos/farmacología , Amoníaco/química , Desodorantes/farmacología , Etanol/química , Cromatografía de Gases y Espectrometría de Masas , Hemiterpenos/química , Sulfuro de Hidrógeno/química , Japón , Aceites Volátiles/farmacología , Ácidos Pentanoicos/química , Aceites de Plantas/farmacología , Compuestos de Sulfhidrilo/química
12.
Nature ; 585(7824): 225-233, 2020 09.
Artículo en Inglés | MEDLINE | ID: mdl-32908268

RESUMEN

Isoprene is the dominant non-methane organic compound emitted to the atmosphere1-3. It drives ozone and aerosol production, modulates atmospheric oxidation and interacts with the global nitrogen cycle4-8. Isoprene emissions are highly uncertain1,9, as is the nonlinear chemistry coupling isoprene and the hydroxyl radical, OH-its primary sink10-13. Here we present global isoprene measurements taken from space using the Cross-track Infrared Sounder. Together with observations of formaldehyde, an isoprene oxidation product, these measurements provide constraints on isoprene emissions and atmospheric oxidation. We find that the isoprene-formaldehyde relationships measured from space are broadly consistent with the current understanding of isoprene-OH chemistry, with no indication of missing OH recycling at low nitrogen oxide concentrations. We analyse these datasets over four global isoprene hotspots in relation to model predictions, and present a quantification of isoprene emissions based directly on satellite measurements of isoprene itself. A major discrepancy emerges over Amazonia, where current underestimates of natural nitrogen oxide emissions bias modelled OH and hence isoprene. Over southern Africa, we find that a prominent isoprene hotspot is missing from bottom-up predictions. A multi-year analysis sheds light on interannual isoprene variability, and suggests the influence of the El Niño/Southern Oscillation.


Asunto(s)
Atmósfera/química , Butadienos/análisis , Butadienos/química , Mapeo Geográfico , Hemiterpenos/análisis , Hemiterpenos/química , Imágenes Satelitales , África , Australia , Brasil , Conjuntos de Datos como Asunto , El Niño Oscilación del Sur , Formaldehído/química , Radical Hidroxilo/análisis , Radical Hidroxilo/química , Ciclo del Nitrógeno , Óxidos de Nitrógeno/análisis , Óxidos de Nitrógeno/química , Oxidación-Reducción , Estaciones del Año , Sudeste de Estados Unidos
13.
Int J Mol Sci ; 21(18)2020 Sep 07.
Artículo en Inglés | MEDLINE | ID: mdl-32906784

RESUMEN

The root bark of Morus has long been appreciated as an antiphlogistic, diuretic and expectorant drug in Chinese herbal medicine, albeit with barely known targets and mechanisms of action. In the 1970s, the development of analytic chemistry allowed for the discovery of morusin as one of 7 different isoprene flavonoid derivatives in the root bark of Morus. However, the remarkable antioxidant capacity of morusin with the unexpected potential for health benefits over the other flavonoid derivatives has recently sparked scientific interest in the biochemical identification of target proteins and signaling pathways and further clinical relevance. In this review, we discuss recent advances in the understanding of the functional roles of morusin in multiple biological processes such as inflammation, apoptosis, metabolism and autophagy. We also highlight recent in vivo and in vitro evidence on the clinical potential of morusin treatment for multiple human pathologies including inflammatory diseases, neurological disorders, diabetes, cancer and the underlying mechanisms.


Asunto(s)
Flavonoides/metabolismo , Flavonoides/farmacología , Morus/metabolismo , Antioxidantes/farmacología , Apoptosis/efectos de los fármacos , Autofagia/efectos de los fármacos , Butadienos/química , Flavonoides/química , Hemiterpenos/química , Humanos , Inflamación/tratamiento farmacológico , Corteza de la Planta/metabolismo , Extractos Vegetales/farmacología , Raíces de Plantas/metabolismo , Transducción de Señal/efectos de los fármacos , Estrés Fisiológico/efectos de los fármacos
14.
ACS Chem Biol ; 15(9): 2466-2475, 2020 09 18.
Artículo en Inglés | MEDLINE | ID: mdl-32840348

RESUMEN

Prenylated flavin mononucleotide (prFMN) is a recently discovered modified flavin cofactor containing an additional nonaromatic ring, connected to the N5 and C6 atoms. This cofactor underpins reversible decarboxylation catalyzed by members of the widespread UbiD enzyme family and is produced by the flavin prenyltransferase UbiX. Oxidative maturation of the UbiX product prFMNH2 to the corresponding oxidized prFMNiminium is required for ferulic acid decarboxylase (Fdc1; a UbiD-type enzyme) activity. However, it is unclear what role the Fdc1 enzyme plays in this process. Here, we demonstrate that, in the absence of Fdc1, prFMNH2 oxidation by O2 proceeds via a transient semiquinone prFMNradical species and culminates in a remarkably stable prFMN-hydroperoxide species. Neither forms of prFMN are able to support Fdc1 activity. Instead, enzyme activation using O2-mediated oxidation requires prFMNH2 binding prior to oxygen exposure, confirming that UbiD enzymes play a role in O2-mediated oxidative maturation. In marked contrast, alternative oxidants such as potassium ferricyanide support prFMNiminium formation both in solution and in Fdc1.


Asunto(s)
Carboxiliasas/química , Mononucleótido de Flavina/química , Hemiterpenos/química , Aspergillus niger/enzimología , Biocatálisis , Proteínas Fúngicas/química , Modelos Químicos , Oxidación-Reducción , Oxígeno/química
15.
Inorg Chem ; 59(14): 9627-9637, 2020 Jul 20.
Artículo en Inglés | MEDLINE | ID: mdl-32644783

RESUMEN

The b-type cytochrome LcpK30 is a latex clearing protein (Lcp), which acts as an endotype dioxygenase to catalyze the extracellular cleavage of the chemically inert aliphatic polymer poly(cis-1,4-isoprene), producing oligo-isoprenoids with different terminal carbonyl groups (aldehyde and ketone, -CH2-CHO and -CH2-COCH3). On the basis of the fact that the muteins of E148A, E148Q, and E148H have substantially reduced reactivity, and the E148-initiated reaction mechanism has been previously proposed, in which a cyclic dioxetane intermediate or an epoxide intermediate may be involved, however, open questions still remain. In this paper, on the basis of the crystal structure of LcpK30, the enzyme-substrate reactant model was constructed, and the cleavage mechanism of the central double bond of poly(cis-1,4-isoprene) was elucidated by performing quantum mechanics/molecular mechanics calculations. Our calculation results revealed that the oxidative cleavage reaction is triggered by the addition of the heme-bound dioxygen to the double bond of the polymer, and E148 does not act as the catalytic base to extract the allylic proton to assist the reaction as previously suggested. Of the two considered pathways, the pathway that involves the dioxetane intermediate was calculated to be more favorable. During the catalysis, the distal oxygen first adds to the double bond of the substrate to form a radical intermediate, and then the Fe-O1 (proximal oxygen) bond cleaves to generate the dioxetane intermediate, which can easily collapse affording the final ketone and aldehyde products. In general, the cleavage mechanism of double C-C bond catalyzed by LcpK30 is similar to those of indoleamine 2,3-dioxygenase, tryptophan 2,3-dioxygenase, and the nonheme stilbene cleavage oxygenase NOV1 that all depend on the iron-bound dioxygen to initiate the cleavage reaction.


Asunto(s)
Proteínas Bacterianas/química , Dioxigenasas/química , Hemiterpenos/química , Látex/química , Proteínas Bacterianas/genética , Dominio Catalítico , Dioxigenasas/genética , Hemo/química , Modelos Químicos , Simulación del Acoplamiento Molecular , Mutación , Oxígeno/química , Teoría Cuántica , Streptomyces/enzimología
16.
Biosci Biotechnol Biochem ; 84(8): 1541-1545, 2020 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-32419623

RESUMEN

The volatile components emitted from two scale insects, Ceroplastes japonicus and Ceroplastes rubens, were identified using GC-MS analysis. The major volatile components of the solvent extract from C. japonicus were α-humulene (35.8%) and δ-cadinene (17.0%), while those of C. rubens were ß-selinene (10.3%) and ß-elemene (5.1%). In GC/olfactometry, linalool, butyric acid, 3-methylbutyric acid, 2-methylbutyric acid, and vanillin were identified as the odor-active components of the extract from C. japonicus, in addition to trace amounts of trans-4,5-epoxy-(2E)-decenal, 4-methyl-(3E)-hexenoic acid, and phenylacetic acid. With regard to C. rubens, trans-4,5-epoxy-(2E)-decenal, 3-methylbutyric acid, and phenylacetic acid were identified as the odor-active components. Besides, decan-1,4-olide (γ-decalactone) with milky cherry-like note and 3-hydroxy-4,5-dimethylfuran-2(5H)-one (sotolone) with brown sugar-like note were also detected as the characteristic cherry-like sweet-and-sour note of these two scale insects. ABBREVIATIONS: GC: Gas chromatography; GC/O: gas chromatography/olfactometry.


Asunto(s)
Hemípteros/química , Odorantes/análisis , Olfato/fisiología , Compuestos Orgánicos Volátiles/química , Monoterpenos Acíclicos/química , Monoterpenos Acíclicos/aislamiento & purificación , Aldehídos/química , Aldehídos/aislamiento & purificación , Animales , Benzaldehídos/química , Benzaldehídos/aislamiento & purificación , Butiratos/química , Butiratos/aislamiento & purificación , Ácido Butírico/química , Ácido Butírico/aislamiento & purificación , Caproatos/química , Caproatos/aislamiento & purificación , Compuestos Epoxi/química , Compuestos Epoxi/aislamiento & purificación , Furanos/química , Furanos/aislamiento & purificación , Cromatografía de Gases y Espectrometría de Masas , Hemípteros/fisiología , Hemiterpenos/química , Hemiterpenos/aislamiento & purificación , Lactonas/química , Lactonas/aislamiento & purificación , Sesquiterpenos Monocíclicos/química , Sesquiterpenos Monocíclicos/aislamiento & purificación , Ácidos Pentanoicos/química , Ácidos Pentanoicos/aislamiento & purificación , Fenilacetatos/química , Fenilacetatos/aislamiento & purificación , Sesquiterpenos Policíclicos/química , Sesquiterpenos Policíclicos/aislamiento & purificación , Sesquiterpenos/química , Sesquiterpenos/aislamiento & purificación , Sesquiterpenos de Eudesmano/química , Sesquiterpenos de Eudesmano/aislamiento & purificación , Tetrahidronaftalenos/química , Tetrahidronaftalenos/aislamiento & purificación , Compuestos Orgánicos Volátiles/clasificación , Compuestos Orgánicos Volátiles/aislamiento & purificación
17.
J Am Chem Soc ; 142(24): 10806-10813, 2020 06 17.
Artículo en Inglés | MEDLINE | ID: mdl-32431151

RESUMEN

Accurately characterizing isoprene ozonolysis continues to challenge atmospheric chemists. The reaction is believed to be a spontaneous, concerted cycloaddition. However, little information is available about the entrance channel and isoprene-ozone complexes thought to define the long-range portion of the reaction coordinate. Our coupled cluster and auxiliary field quantum Monte Carlo calculations predict multiple stable isoprene-ozone van der Waals complexes for trans-isoprene in the gas phase with moderate association energies. These results indicate that long-range dynamics in the isoprene-ozone entrance channel can impact the overall reaction in the troposphere and provide the spectroscopic information necessary to extend the microwave characterization of isoprene ozonolysis to prereactive complexes. At the air-water interface, Born-Oppenheimer molecular dynamics simulations indicate that the cycloaddition reaction between ozone and trans-isoprene follows a stepwise mechanism, which is quite distinct from our proposed gas-phase mechanism and occurs on a femtosecond time scale. The stepwise nature of isoprene ozonolysis on the aqueous surface is more consistent with the DeMore mechanism than with the Criegee mechanism suggested by the gas-phase calculations, suggesting that the reaction media may play an important role in the reaction. Overall, these predictions aim to provide a missing fundamental piece of molecular insight into isoprene ozonolysis, which has broad tropospheric implications due to its critical role as a nighttime source of hydroxyl radicals.


Asunto(s)
Butadienos/química , Hemiterpenos/química , Simulación de Dinámica Molecular , Ozono/química , Teoría Funcional de la Densidad , Método de Montecarlo
18.
N Biotechnol ; 58: 10-16, 2020 Sep 25.
Artículo en Inglés | MEDLINE | ID: mdl-32439426

RESUMEN

Biotechnological processes for the partial degradation or transformation of poly(cis-1,4-isoprene) rubber have been investigated during recent decades with promising results. The use of the enzyme 'latex clearing protein' (Lcp) to transform the polymer into more hydrophilic oligo-isoprenoids results in modifications of the rubber structure and the synthesis of new material. In order to find an alternative process to recover the degradation products, a continuous extraction method using a biphasic system is described. The enzymatic activity of Lcp1VH2 was studied in the presence of ethyl acetate and pentane as extraction solvents. Oligo(cis-1,4-isoprene) molecular species were isolated from the organic phase and analyzed by Electrospray Ionization Mass Spectrometry. The enzymatic reaction process was evaluated in terms of the biotransformation yield of poly(cis-1,4-isoprene) rubber into the corresponding degradation products. Biotransformation yields of between 42-52 % were achieved depending on the enzymatic reactor design and the extraction solvent. The results also showed that the mass distribution of the oligo(cis-1,4-isoprene) depended on the organic solvent applied. A novel, simple and effective process is demonstrated for biotransformation of poly(cis-1,4-isoprene) rubber with high oligo-isoprenoid molecules recovery yields.


Asunto(s)
Reactores Biológicos , Hemiterpenos/metabolismo , Látex/metabolismo , Oxigenasas/metabolismo , Terpenos/aislamiento & purificación , Biotransformación , Hemiterpenos/química , Látex/química , Terpenos/química , Terpenos/metabolismo
19.
Annu Rev Biochem ; 89: 821-851, 2020 06 20.
Artículo en Inglés | MEDLINE | ID: mdl-32228045

RESUMEN

Natural rubber (NR), principally comprising cis-1,4-polyisoprene, is an industrially important natural hydrocarbon polymer because of its unique physical properties, which render it suitable for manufacturing items such as tires. Presently, industrial NR production depends solely on latex obtained from the Pará rubber tree, Hevea brasiliensis. In latex, NR is enclosed in rubber particles, which are specialized organelles comprising a hydrophobic NR core surrounded by a lipid monolayer and membrane-bound proteins. The similarity of the basic carbon skeleton structure between NR and dolichols and polyprenols, which are found in most organisms, suggests that the NR biosynthetic pathway is related to the polyisoprenoid biosynthetic pathway and that rubber transferase, which is the key enzyme in NR biosynthesis, belongs to the cis-prenyltransferase family. Here, we review recent progress in the elucidation of molecular mechanisms underlying NR biosynthesis through the identification of the enzymes that are responsible for the formation of the NR backbone structure.


Asunto(s)
Hemiterpenos/biosíntesis , Hevea/metabolismo , Látex/biosíntesis , Proteínas de Plantas/química , Goma/química , Transferasas/química , Antígenos de Plantas/genética , Antígenos de Plantas/metabolismo , Clonación Molecular , Escherichia coli/genética , Escherichia coli/metabolismo , Expresión Génica , Vectores Genéticos/química , Vectores Genéticos/metabolismo , Hemiterpenos/química , Hemiterpenos/metabolismo , Hevea/química , Hevea/genética , Látex/química , Látex/metabolismo , Modelos Moleculares , Compuestos Organofosforados/química , Compuestos Organofosforados/metabolismo , Proteínas de Plantas/genética , Proteínas de Plantas/metabolismo , Dominios y Motivos de Interacción de Proteínas , Multimerización de Proteína , Estructura Secundaria de Proteína , Proteínas Recombinantes/química , Proteínas Recombinantes/genética , Proteínas Recombinantes/metabolismo , Goma/metabolismo , Saccharomyces cerevisiae/genética , Saccharomyces cerevisiae/metabolismo , Terpenos/química , Terpenos/metabolismo , Transferasas/genética , Transferasas/metabolismo
20.
Chemosphere ; 249: 126258, 2020 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-32213391

RESUMEN

Secondary Organic aerosols (SOA) are important components of PM 2.5. In order to control the heavy haze pollution, it is essential to find out the contributions of main SOA precursors. Nowadays, the tracer-based method has been widely used in analyzing the contributions of the precursors to SOA. However, it is not well known that whether the SOA tracers can be oxidized or how the instability of the SOA tracers would influence the accuracy of the tracer-based method for source apportionment. In this paper, the heterogeneous oxidation experiments of SOA tracers produced from isoprene and toluene as well as their mixtures under different conditions were conducted in a 2 m3 indoor chamber. The relative rate constants approach was used to determine the effective rate constants of the ozone reactions of the tracers. Concentrations of 2-Methyl Erythritol, a tracer of isoprene SOA, and 2, 3-Dihydroxy-4-oxopentanoic Acid, a tracer of toluene SOA, were analyzed using GC-MS. The effects of different seed aerosols and initial VOC0/NO on the heterogeneous oxidation of the tracers were investigated. The effects of co-existing components in the SOA produced from the mixture of isoprene and toluene on the heterogeneous oxidation of the tracers by ozone were also studied.


Asunto(s)
Aerosoles/química , Butadienos/química , Hemiterpenos/química , Ozono/química , Tolueno/química , Aerosoles/análisis , Contaminantes Atmosféricos/análisis , Oxidación-Reducción
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