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1.
Org Biomol Chem ; 20(8): 1652-1655, 2022 02 23.
Artigo em Inglês | MEDLINE | ID: mdl-35142766

RESUMO

We herein describe a C4 sulfonylmethylation of pyrazol-5-amines with glyoxylic acid and sodium sulfinates. The reaction only needed water as a solvent, and it featured mild reaction conditions, simple operation, and high regioselectivity. Various C4 sulfonylmethylated pyrazol-5-amines were obtained in good to excellent yields. Moreover, this sulfonylmethylation method was applicable for C(sp2)-H sulfonylmethylation of other substrates such as enamines, indoles, and antipyrines by adding a catalyst and changing the solvent. Biological evaluation revealed that some products had antiproliferative activity against cancer cell lines.


Assuntos
Aminas/síntese química , Antineoplásicos/síntese química , Glioxilatos/química , Pirazóis/síntese química , Ácidos Sulfínicos/química , Aminas/química , Aminas/farmacologia , Antineoplásicos/química , Antineoplásicos/farmacologia , Linhagem Celular Tumoral , Proliferação de Células/efeitos dos fármacos , Sobrevivência Celular/efeitos dos fármacos , Ensaios de Seleção de Medicamentos Antitumorais , Humanos , Metilação , Estrutura Molecular , Pirazóis/química , Pirazóis/farmacologia
2.
J Am Chem Soc ; 143(42): 17666-17676, 2021 10 27.
Artigo em Inglês | MEDLINE | ID: mdl-34664502

RESUMO

The isocitrate lyase paralogs of Mycobacterium tuberculosis (ICL1 and 2) are essential for mycobacterial persistence and constitute targets for the development of antituberculosis agents. We report that (2R,3S)-2-hydroxy-3-(nitromethyl)succinic acid (5-NIC) undergoes apparent retro-aldol cleavage as catalyzed by ICL1 to produce glyoxylate and 3-nitropropionic acid (3-NP), the latter of which is a covalent-inactivating agent of ICL1. Kinetic analysis of this reaction identified that 5-NIC serves as a robust and efficient mechanism-based inactivator of ICL1 (kinact/KI = (1.3 ± 0.1) × 103 M-1 s-1) with a partition ratio <1. Using enzyme kinetics, mass spectrometry, and X-ray crystallography, we identified that the reaction of the 5-NIC-derived 3-NP with the Cys191 thiolate of ICL1 results in formation of an ICL1-thiohydroxamate adduct as predicted. One aspect of the design of 5-NIC was to lower its overall charge compared to isocitrate to assist with cell permeability. Accordingly, the absence of the third carboxylate group will simplify the synthesis of pro-drug forms of 5-NIC for characterization in cell-infection models of M. tuberculosis.


Assuntos
Inibidores Enzimáticos/química , Isocitrato Liase/antagonistas & inibidores , Mycobacterium tuberculosis/enzimologia , Succinatos/química , Inibidores Enzimáticos/síntese química , Inibidores Enzimáticos/metabolismo , Glioxilatos/química , Glioxilatos/metabolismo , Isocitrato Liase/química , Isocitrato Liase/metabolismo , Cinética , Modelos Químicos , Nitrocompostos/química , Nitrocompostos/metabolismo , Propionatos/química , Propionatos/metabolismo , Ligação Proteica , Succinatos/síntese química , Succinatos/metabolismo
3.
Biotechnol Lett ; 43(5): 1075-1087, 2021 May.
Artigo em Inglês | MEDLINE | ID: mdl-33591462

RESUMO

Based on the specific and spontaneous formation of isopeptide bonds by SpyCatcher/SpyTag, we have developed a one-step method for purification and immobilization of recombinant proteins. The procedure is to immobilize SpyCatcher on glyoxyl agarose gels, and then the SpyCatcher immobilisate can be used to immobilize the SpyTag-fused protein in the crude extract selectively. A mutant of SpyCatcher (mSC), in which a peptide (LysGlyLysGlyLysGly) was added to the C-terminus of SpyCatcher and three lysine residues around the SpyTag/SpyCatcher binding domain were replaced with arginine, was designed to improve the attachment of SpyCatcher to the support. Compared with wild-type SpyCatcher, mSC can be immobilized on the glyoxyl-agarose support more efficiently, which enables the obtained mSC derivative a high binding capacity of the SpyTag-fused protein. The results showed that the target proteins in the crude enzyme extract were purified and immobilized in one step, and the thermal stability of the immobilized target proteins was also remarkably improved.


Assuntos
Proteínas Imobilizadas/isolamento & purificação , Proteínas Recombinantes/isolamento & purificação , Adesinas Bacterianas/química , Adesinas Bacterianas/genética , Sequência de Aminoácidos , Glioxilatos/química , Proteínas Imobilizadas/química , Proteínas Imobilizadas/metabolismo , Mutação , Oligopeptídeos/química , Oligopeptídeos/isolamento & purificação , Estabilidade Proteica , Proteínas Recombinantes de Fusão/química , Proteínas Recombinantes de Fusão/isolamento & purificação , Proteínas Recombinantes de Fusão/metabolismo , Proteínas Recombinantes/química , Proteínas Recombinantes/metabolismo , Sefarose/química , Temperatura
4.
Molecules ; 26(3)2021 Jan 28.
Artigo em Inglês | MEDLINE | ID: mdl-33525568

RESUMO

Cyclodextrins (CDs) and their derivatives have attracted significant attention in the pharmaceutical, food, and textile industries, which has led to an increased demand for their production. CD is typically produced by the action of cyclodextrin glycosyltransferase (CGTase) on starch. Owing to the relatively high cost of enzymes, the economic feasibility of the entire process strongly depends on the effective retention and recycling of CGTase in the reaction system, while maintaining its stability. CGTase enzymes immobilized on various supports such as porous glass beads or glyoxyl-agarose have been previously used to achieve this objective. Nevertheless, the attachment of biocatalysts on conventional supports is associated with numerous drawbacks, including enzyme leaching prominent in physical adsorption, reduced activity as a result of chemisorption, and increased mass transfer limitations. Recent reports on the successful utilization of metal-organic frameworks (MOFs) as supports for various enzymes suggest that CGTase could be immobilized for enhanced production of CDs. The three-dimensional microenvironment of MOFs could maintain the stability of CGTase while posing minimal diffusional limitations. Moreover, the presence of different functional groups on the surfaces of MOFs could provide multiple points for attachment of CGTase, thereby reducing enzyme loss through leaching. The present review focuses on the advantages MOFs can offer as support for CGTase immobilization as well as their potential for application in CD production.


Assuntos
Ciclodextrinas/química , Enzimas Imobilizadas/química , Glucosiltransferases/química , Estruturas Metalorgânicas/química , Glioxilatos/química , Sefarose/química , Amido/química
5.
Anal Chem ; 92(2): 1826-1832, 2020 01 21.
Artigo em Inglês | MEDLINE | ID: mdl-31867958

RESUMO

Primary hyperoxalurias (PH) are inborn errors of glyoxylate metabolism characterized by an increase in endogenous oxalate production. Oxalate overproduction may cause calcium-oxalate crystal formation leading to kidney stones, nephrocalcinosis, and ultimately kidney failure. Twenty-four hour urine oxalate excretion is an inaccurate measure for endogenous oxalate production in PH patients and not applicable in those with kidney failure. Treatment efficacy cannot be assessed with this measure during clinical trials. We describe the development and validation of a gas chromatography-tandem mass spectrometry method to analyze the samples obtained following a stable isotope infusion protocol of 13C2-oxalate and 1-13C-glycolate in both healthy individuals and PH patients. Isotopic enrichments of plasma oxalate, glycolate, and glyoxylate were measured on a gas chromatography-triple quadrupole mass spectrometry system using ethylhydroxylamine and N-tert-butyldimethylsilyl-N-methyltrifluoroacetamide (MTBSTFA) for analyte derivatization. Method precision was good for oxalate and glycolate (coefficients of variation [CV] were <6.3% and <4.2% for inter- and intraday precision, respectively) and acceptable for glyoxylate (CV <18.3% and <6.7% for inter- and intraday precision, respectively). The enrichment curves were linear over the specified range. Sensitivity was sufficient to accurately analyze enrichments. This new method allowed calculation of kinetic features of these metabolites, thus enabling a detailed analysis of the various pathways involved in glyoxylate metabolism. The method will further enhance the investigation of the metabolic PH derangements, provides a tool to accurately assess the therapeutic efficacy of new promising therapeutic interventions for PH, and could serve as a clinical tool to improve personalized therapeutic strategies.


Assuntos
Glicolatos/sangue , Glioxilatos/sangue , Hiperoxalúria Primária/metabolismo , Oxalatos/sangue , Acetamidas/química , Isótopos de Carbono/química , Fluoracetatos/química , Cromatografia Gasosa-Espectrometria de Massas/métodos , Glicolatos/química , Glicolatos/metabolismo , Glioxilatos/química , Glioxilatos/metabolismo , Humanos , Hidroxilaminas/química , Hiperoxalúria Primária/sangue , Marcação por Isótopo , Compostos de Organossilício/química , Oxalatos/química , Oxalatos/metabolismo , Espectrometria de Massas em Tandem/métodos
6.
Biochem Biophys Res Commun ; 533(4): 1177-1183, 2020 12 17.
Artigo em Inglês | MEDLINE | ID: mdl-33041004

RESUMO

The glyoxylate cycle is an important anabolic pathway and acts under a C2 compound (such as acetic acid) rich condition in bacteria. The isocitrate lyase (ICL) enzyme catalyzes the first step in the glyoxylate cycle, which is the cleavage of isocitrate to glyoxylate and succinate. This enzyme is a metalo-enzyme that contains an Mg2+ or a Mn2+ion at the active site for enzyme catalysis. We expressed and purified ICL from Bacillus cereus (BcICL) and investigated its biochemical properties and metal usage through its enzyme activity and stability with various divalent metal ion. Based on the results, BcICL mainly utilized the Mg2+ ion for enzyme catalysis as well as the Mn2+, Ni2+ and Co2+ ions. To elucidate its molecular mechanisms, we determined the crystal structure of BcICL at 1.79 Å. Through this structure, we analyzed a tetrameric interaction of the protein. We also determined the BcICL structure in complex with both the metal and its products, glyoxylate and succinate at 2.50 Å resolution and revealed each ligand binding modes.


Assuntos
Bacillus cereus/enzimologia , Isocitrato Liase/química , Domínio Catalítico , Cristalografia por Raios X , Glioxilatos/química , Isocitrato Liase/metabolismo , Magnésio/química , Metais/química , Modelos Moleculares , Multimerização Proteica , Alinhamento de Sequência , Análise de Sequência de Proteína , Ácido Succínico/química
7.
Amino Acids ; 52(10): 1425-1438, 2020 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-33057940

RESUMO

Oxidative stress, an excess of reactive oxygen species (ROS), may lead to oxidative post-translational modifications of proteins resulting in the cleavage of the peptide backbone, known as α-amidation, and formation of fragments such as peptide amides and α-ketoacyl peptides (α-KaP). In this study, we first compared different approaches for the synthesis of different model α-KaP and then investigated their stability compared to the corresponding unmodified peptides. The stability of peptides was studied at room temperature or at temperatures relevant for food processing (100 °C for cooking and 150 °C as a simulation of roasting) in water, in 1% (m/v) acetic acid or as the dry substance (to simulate the thermal treatment of dehydration processes) by HPLC analysis. Oxidation of peptides by 2,5-di-tert-butyl-1,4-benzoquinone (DTBBQ) proved to be the most suited method for synthesis of α-KaPs. The acyl side chain of the carbonyl-terminal α-keto acid has a crucial impact on the stability of α-KaPs. This carbonyl group has a catalytic effect on the hydrolysis of the neighboring peptide bond, leading to the release of α-keto acids. Unmodified peptides were significantly more stable than the corresponding α-KaPs. The possibility of further degradation reactions was shown by the formation of Schiff bases from glyoxylic or pyruvic acids with glycine and proven through detection of transamination products and Strecker aldehydes of α-keto acids by HPLC-MS/MS. We propose here a mechanism for the decomposition of α-ketoacyl peptides.


Assuntos
Peptídeos/química , Aldeídos/química , Catálise , Glicina/química , Glioxilatos/química , Hidrólise , Cetoácidos/química , Oxirredução , Peptídeos/síntese química , Ácido Pirúvico/química , Bases de Schiff/química
8.
Bioorg Chem ; 94: 103402, 2020 01.
Artigo em Inglês | MEDLINE | ID: mdl-31718891

RESUMO

Eight organotin(IV) complexes (C1-C8) have been synthesized and characterized by elemental analysis, fourier transform infrared spectroscopy (FT-IR), multinuclear nuclear magnetic resonance (1H, 13C and 119Sn NMR), high resolution mass spectroscopy (HRMS) and single crystal X-ray structural analysis. Crystallographic data show that C1 was a tetranuclear 16-membered macrocycle complex, C2-C4 and C7 were centrosymmetric dimer distannoxane and there was a Sn2O2 four-membered ring in the middle of the molecule, respectively, C5 and C6 are monoorganotin complexes due to the dehydroalkylation effect during the reaction, while C8 forms a one-dimensional chain structure. The cytotoxicity of all complexes were tested by 3-(4,5)-dimethylthiahiazo(-z-y1)-3,5-di-phenytetrazoliumromide (MTT) assays against three human tumor cell lines NCI-H460, MCF-7 and HepG2. The dibutyltin complex C2 has been shown to be more potent antitumor agents than other complexes and carboplatin. Cell apoptosis study of C2 with the high activity on HepG2 and MCF-7 cancer cell lines was investigated by flow cytometry, it was shown that the antitumor activity of C2 was related to apoptosis, but it has different cell cycle arrest characteristics from platinum compounds, and the proliferation was inhibited by blocking cells in S phase. The DNA binding activity of the C2 was studied by UV-visible absorption spectrometry, fluorescence competitive, viscosity measurements and gel electrophoresis, results shown C2 can be well embedded in the double helix of DNA and cleave DNA.


Assuntos
Antineoplásicos/farmacologia , Apoptose/efeitos dos fármacos , Complexos de Coordenação/farmacologia , DNA de Neoplasias/efeitos dos fármacos , Glioxilatos/farmacologia , Ácidos Mandélicos/farmacologia , Compostos Orgânicos de Estanho/farmacologia , Antineoplásicos/síntese química , Antineoplásicos/química , Linhagem Celular Tumoral , Proliferação de Células/efeitos dos fármacos , Complexos de Coordenação/síntese química , Complexos de Coordenação/química , Relação Dose-Resposta a Droga , Ensaios de Seleção de Medicamentos Antitumorais , Glioxilatos/síntese química , Glioxilatos/química , Humanos , Ácidos Mandélicos/síntese química , Ácidos Mandélicos/química , Simulação de Acoplamento Molecular , Estrutura Molecular , Compostos Orgânicos de Estanho/síntese química , Compostos Orgânicos de Estanho/química , Relação Estrutura-Atividade
9.
Proc Natl Acad Sci U S A ; 114(29): 7617-7622, 2017 07 18.
Artigo em Inglês | MEDLINE | ID: mdl-28679637

RESUMO

Isocitrate lyase (ICL, types 1 and 2) is the first enzyme of the glyoxylate shunt, an essential pathway for Mycobacterium tuberculosis (Mtb) during the persistent phase of human TB infection. Here, we report 2-vinyl-d-isocitrate (2-VIC) as a mechanism-based inactivator of Mtb ICL1 and ICL2. The enzyme-catalyzed retro-aldol cleavage of 2-VIC unmasks a Michael substrate, 2-vinylglyoxylate, which then forms a slowly reversible, covalent adduct with the thiolate form of active-site Cys191 2-VIC displayed kinetic properties consistent with covalent, mechanism-based inactivation of ICL1 and ICL2 with high efficiency (partition ratio, <1). Analysis of a complex of ICL1:2-VIC by electrospray ionization mass spectrometry and X-ray crystallography confirmed the formation of the predicted covalent S-homopyruvoyl adduct of the active-site Cys191.


Assuntos
Proteínas de Bactérias/genética , Isocitrato Liase/genética , Isocitratos/química , Mycobacterium tuberculosis/enzimologia , Tuberculose/tratamento farmacológico , Proteínas de Bactérias/antagonistas & inibidores , Domínio Catalítico , Cristalografia por Raios X , Cisteína/química , Glioxilatos/química , Humanos , Isocitrato Liase/antagonistas & inibidores , Ligantes , Malatos/química , Microscopia de Fluorescência , Simulação de Acoplamento Molecular , Espectrometria de Massas por Ionização por Electrospray , Ácido Succínico/química , Compostos de Sulfidrila/química , Tuberculose/microbiologia , Tuberculose/prevenção & controle
10.
Molecules ; 25(3)2020 Feb 03.
Artigo em Inglês | MEDLINE | ID: mdl-32028657

RESUMO

A highly efficient quinine-derived primary-amine-catalyzed asymmetric aldol addition of hydroxyacetone to arylglyoxals is described. Structurally diverse anti-2,3-dihydroxy-1,4-diones were generated in high yields, with good diastereoselectivities and enantioselectivities.


Assuntos
Acetona/análogos & derivados , Aldeídos/química , Glioxilatos/química , Acetona/química , Catálise , Técnicas de Química Sintética , Estrutura Molecular
11.
Molecules ; 25(8)2020 Apr 23.
Artigo em Inglês | MEDLINE | ID: mdl-32340302

RESUMO

The reactions of phenylglyoxylic acids during the synthesis and biological evaluation of fungal metabolites led to the discovery of hitherto unknown compounds with a p-quinone methide (p-QM) structure. The formation of these p-QMs using 13C-labelled starting materials revealed a key-step of this reaction being a retro-Friedel-Crafts alkylation.


Assuntos
Fungos , Glioxilatos/química , Ácidos Mandélicos/química , Fungos/química , Fungos/metabolismo , Glioxilatos/metabolismo , Espectroscopia de Ressonância Magnética , Ácidos Mandélicos/metabolismo , Modelos Moleculares , Conformação Molecular , Estrutura Molecular , Temperatura
12.
Molecules ; 25(5)2020 Mar 09.
Artigo em Inglês | MEDLINE | ID: mdl-32182773

RESUMO

The bi-enzymatic synthesis of the antiviral drug vidarabine (arabinosyladenine, ara-A), catalyzed by uridine phosphorylase from Clostridium perfringens (CpUP) and a purine nucleoside phosphorylase from Aeromonas hydrophila (AhPNP), was re-designed under continuous-flow conditions. Glyoxyl-agarose and EziGTM1 (Opal) were used as immobilization carriers for carrying out this preparative biotransformation. Upon setting-up reaction parameters (substrate concentration and molar ratio, temperature, pressure, residence time), 1 g of vidarabine was obtained in 55% isolated yield and >99% purity by simply running the flow reactor for 1 week and then collecting (by filtration) the nucleoside precipitated out of the exiting flow. Taking into account the substrate specificity of CpUP and AhPNP, the results obtained pave the way to the use of the CpUP/AhPNP-based bioreactor for the preparation of other purine nucleosides.


Assuntos
Antivirais/química , Enzimas Imobilizadas/química , Purina-Núcleosídeo Fosforilase/química , Vidarabina/química , Aeromonas hydrophila/enzimologia , Biocatálise , Reatores Biológicos , Biotransformação/efeitos dos fármacos , Clostridium perfringens/enzimologia , Enzimas Imobilizadas/genética , Glioxilatos/química , Humanos , Engenharia de Proteínas/métodos , Nucleosídeos de Purina/química , Nucleosídeos de Purina/metabolismo , Purina-Núcleosídeo Fosforilase/genética , Sefarose/química , Especificidade por Substrato , Vidarabina/biossíntese , Vidarabina/genética
13.
Biochemistry ; 58(34): 3566-3571, 2019 08 27.
Artigo em Inglês | MEDLINE | ID: mdl-31385510

RESUMO

Decarboxylation reactions from comparable thiamin diphosphate- and thiamin-derived adducts of p-(halomethyl)benzoylformic acids in enzymic and non-enzymic reactions, respectively, reveal critical distinctions in otherwise similar Breslow intermediates. The ratio of protonation to chloride elimination from the Breslow intermediate is 102-fold greater in the enzymic process. This is consistent with a lower intrinsic barrier to proton transfer on the enzyme, implicating formation of a localized tetrahedral (sp3) carbanion that is formed as CO2 is produced. In contrast, slower protonation in solution of the decarboxylated intermediate is consistent with formation of a delocalized planar carbanionic enol/enamine. The proposed structural and reactive character of the enzymic Breslow intermediate is consistent with Warshel's general theory of enzymic catalysis, structural characterization of related intermediates, and the lower kinetic barrier in reactions that occur without changes in hybridization.


Assuntos
Tiamina Pirofosfato/metabolismo , Biocatálise , Carboxiliases/metabolismo , Descarboxilação , Glioxilatos/química , Ácidos Mandélicos/química , Tiamina Pirofosfato/química
14.
J Org Chem ; 84(7): 4421-4428, 2019 04 05.
Artigo em Inglês | MEDLINE | ID: mdl-30811929

RESUMO

Alkoxyallylsiletanes are capable of highly chemo- and diastereoselective carbonyl allylsilylations. Reactive substrates include salicylaldehydes and glyoxylic acids. Chemoselectivity in these reactions is thought to arise from a mechanism involving first exchange of the alkyoxy group on silicon with a substrate hydroxyl followed by activation of a nearby carbonyl by the Lewis acidic siletane and intramolecular allylation. In this way, substrates containing multiple reactive carbonyl groups (e.g., dialdehyde or triketone) can be selectively monoallylated, even overcoming inherent electrophilicity bias.


Assuntos
Compostos Alílicos/síntese química , Silanos/síntese química , Aldeídos/química , Compostos Alílicos/química , Glioxilatos/química , Silanos/química , Estereoisomerismo
15.
Bioorg Chem ; 83: 55-62, 2019 03.
Artigo em Inglês | MEDLINE | ID: mdl-30342386

RESUMO

A new coordination polymer Zn(II) with thiosemicarbazone glyoxalic acid H2GAT was obtained in this study. According to the X-ray diffraction data, the coordination of the Zn(II) ion is carried out by one sulfur atom, in the thiol form, one nitrogen atom of the azomethine group and two oxygen atoms of the carboxylate groups, one of which belongs to neighbouring complex molecule. The oxygen atom of the water molecule completes Zn(II) ion environment to a distorted square-pyramidal structure. The binding of the monomer complex into polimer occurs through the bridge oxygen atom of carboxylate group. This complex is effective inhibitor of the α-glycosidase, butyrylcholinesterase (BChE), cytosolic carbonic anhydrase I and II isoforms (hCA I and II), and acetylcholinesterase enzymes (AChE) enzymes with Ki values of 1.45 ±â€¯0.23 µM for hCA I, 2.04 ±â€¯0.11 µM for hCA II, 3.47 ±â€¯0.88 µM for α-glycosidase, 0.47 ±â€¯0.10 µM for BChE, and 0.58 ±â€¯0.13 µM for AChE, respectively.


Assuntos
Complexos de Coordenação/farmacologia , Inibidores Enzimáticos/farmacologia , Glioxilatos/farmacologia , Polímeros/farmacologia , Tiossemicarbazonas/farmacologia , Zinco/farmacologia , Acetilcolinesterase/metabolismo , Butirilcolinesterase/metabolismo , Anidrase Carbônica I/antagonistas & inibidores , Anidrase Carbônica I/metabolismo , Anidrase Carbônica II/antagonistas & inibidores , Anidrase Carbônica II/metabolismo , Complexos de Coordenação/síntese química , Complexos de Coordenação/química , Relação Dose-Resposta a Droga , Inibidores Enzimáticos/síntese química , Inibidores Enzimáticos/química , Glicosídeo Hidrolases/antagonistas & inibidores , Glicosídeo Hidrolases/metabolismo , Glioxilatos/química , Humanos , Estrutura Molecular , Polímeros/química , Relação Estrutura-Atividade , Tiossemicarbazonas/química , Zinco/química
16.
Bioconjug Chem ; 29(10): 3285-3292, 2018 10 17.
Artigo em Inglês | MEDLINE | ID: mdl-30234289

RESUMO

Glyoxylate-mediated transamination (GT) is a classic, potentially general, and N-terminus-specific protein modification method useful for the preparation of bioconjugates. However, there is a lack of information on whether and how readily a particular N-terminal amino acid (in the context of a peptide chain) can be converted to the 2-oxoacyl moiety under GT conditions. Here, we conducted a systematic investigation of GT using membrane-bound dipeptide arrays that include all the 400 possible dipeptide combinations of the 20 genetically encoded amino acids. This colorimetric method offers a convenient way to assess the GT reaction tendency of N-terminal residues by the naked eye. It also provides interesting information about the effect of the second residues on GT, which has not been reported previously. In addition, we also designed a proteomics approach to study GT in solution using tryptic peptide mixtures, which not only confirmed many of our findings in peptide array assays but also revealed potential side reaction products. Taken together, our studies will make the future use of GT for protein modification in a much more predictable way.


Assuntos
Glioxilatos/química , Peptídeos/química , Proteômica , Aminação , Biomimética , Colorimetria/métodos , Misturas Complexas , Dipeptídeos/química , Mapeamento de Peptídeos , Tripsina/química
17.
Arch Microbiol ; 200(5): 719-727, 2018 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-29380014

RESUMO

A link between carbon and nitrogen metabolism is important for serving as metabolic ancillary reactions. Here, we identified and characterized the alanine dehydrogenase gene in Aphanothece halophytica (ApalaDH) that is involved in alanine assimilation/dissimilation. Functional analysis revealed that ApalaDH encodes a bifunctional protein catalyzing the reversible reaction of pyruvate to L-alanine via its pyruvate reductive aminase (PvRA) activity, the reaction of L-alanine to pyruvate via its alanine oxidative dehydrogenase activity, and the non-reversible reaction of glyoxylate to glycine via its glyoxylate reductive aminase (GxRA) activity. Kinetic analysis showed the lowest affinity for pyruvate followed by L-alanine and glyoxylate with a Km of 0.22 ± 0.02, 0.72 ± 0.04, and 1.91 ± 0.43 mM, respectively. ApalaDH expression was upregulated by salt. Only PvRA and GxRA activities were detected in vivo and both activities increased about 1.2- and 2.7-fold upon salt stress. These features implicate that the assimilatory/dissimilatory roles of ApAlaDH are not only selective for L-alanine and pyruvate, but also, upon salt stress, can catabolize glyoxylate to generate glycine.


Assuntos
Alanina Desidrogenase/genética , Proteínas de Bactérias/genética , Cianobactérias/enzimologia , Alanina/química , Alanina Desidrogenase/biossíntese , Alanina Desidrogenase/química , Proteínas de Bactérias/biossíntese , Proteínas de Bactérias/química , Cianobactérias/genética , Indução Enzimática , Escherichia coli , Regulação Bacteriana da Expressão Gênica , Glioxilatos/química , Concentração de Íons de Hidrogênio , Cinética , Ácido Pirúvico/química , Tolerância ao Sal , Especificidade por Substrato
18.
Macromol Rapid Commun ; 39(11): e1800173, 2018 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-29700924

RESUMO

The temperature-dependent depolymerization of self-immolative poly(ethyl glyoxylate) (PEtG) capped with triphenylmethyl (trityl) groups is studied and its potential application for smart packaging is explored. PEtGs with four different trityl end-caps are prepared and found to undergo depolymerization to volatile products from the solid state at different rates depending on temperature and the electron-donating substituents on the trityl aromatic rings. Through the incorporation of hydrophobic dyes including Nile red and IR-780, the depolymerization is visualized as a color change of the dye as it changes from a dispersed to aggregated state. The ability of this platform to provide information on thermal history through an easily readable signal makes it promising in smart packaging applications for sensitive products such a food and other cargo that is susceptible to degradation.


Assuntos
Glioxilatos/química , Polímeros/química , Indóis/química , Oxazinas/química , Embalagem de Produtos , Espectrofotometria , Temperatura
19.
Appl Microbiol Biotechnol ; 102(2): 773-787, 2018 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-29177938

RESUMO

Sucrose synthases (SuSys) have been attracting great interest in recent years in industrial biocatalysis. They can be used for the cost-effective production of uridine 5'-diphosphate glucose (UDP-glucose) or its in situ recycling if coupled to glycosyltransferases on the production of glycosides in the food, pharmaceutical, nutraceutical, and cosmetic industry. In this study, the homotetrameric SuSy from Acidithiobacillus caldus (SuSyAc) was immobilized-stabilized on agarose beads activated with either (i) glyoxyl groups, (ii) cyanogen bromide groups, or (iii) heterogeneously activated with both glyoxyl and positively charged amino groups. The multipoint covalent immobilization of SuSyAc on glyoxyl agarose at pH 10.0 under optimized conditions provided a significant stabilization factor at reaction conditions (pH 5.0 and 45 °C). However, this strategy did not stabilize the enzyme quaternary structure. Thus, a post-immobilization technique using functionalized polymers, such as polyethyleneimine (PEI) and dextran-aldehyde (dexCHO), was applied to cross-link all enzyme subunits. The coating of the optimal SuSyAc immobilized glyoxyl agarose with a bilayer of 25 kDa PEI and 25 kDa dexCHO completely stabilized the quaternary structure of the enzyme. Accordingly, the combination of immobilization and post-immobilization techniques led to a biocatalyst 340-fold more stable than the non-cross-linked biocatalyst, preserving 60% of its initial activity. This biocatalyst produced 256 mM of UDP-glucose in a single batch, accumulating 1 M after five reaction cycles. Therefore, this immobilized enzyme can be of great interest as a biocatalyst to synthesize UDP-glucose.


Assuntos
Acidithiobacillus/enzimologia , Enzimas Imobilizadas/metabolismo , Glucosiltransferases/metabolismo , Glicosiltransferases/metabolismo , Uridina Difosfato Glucose/biossíntese , Proteínas de Bactérias/metabolismo , Biocatálise , Biotecnologia , Brometo de Cianogênio/química , Estabilidade Enzimática , Glicômica , Glioxilatos/química , Concentração de Íons de Hidrogênio , Multimerização Proteica , Sefarose/química , Temperatura
20.
Molecules ; 23(12)2018 Dec 03.
Artigo em Inglês | MEDLINE | ID: mdl-30513981

RESUMO

Alcalase was immobilized on glyoxyl 4% CL agarose beads. This permitted to have Alcalase preparations with 50% activity retention versus Boc-l-alanine 4-nitrophenyl ester. However, the recovered activity versus casein was under 20% at 50 °C, as it may be expected from the most likely area of the protein involved in the immobilization. The situation was different at 60 °C, where the activities of immobilized and free enzyme became similar. The chemical amination of the immobilized enzyme or the treatment of the enzyme with glutaraldehyde did not produce any significant stabilization (a factor of 2) with high costs in terms of activity. However, the modification with glutaraldehyde of the previously aminated enzyme permitted to give a jump in Alcalase stability (e.g., with most than 80% of enzyme activity retention for the modified enzyme and less than 30% for the just immobilized enzyme in stress inactivation at pH 7 or 9). This preparation could be used in the hydrolysis of casein at pH 9 even at 67 °C, retaining around 50% of the activity after 5 hydrolytic cycles when the just immobilized preparation was almost inactive after 3 cycles. The modified enzyme can be reused in hydrolysis of casein at 45 °C and pH 9 for 6 cycles (6 h) without any decrease in enzyme activity.


Assuntos
Caseínas/metabolismo , Enzimas Imobilizadas/química , Glutaral/química , Subtilisinas/química , Subtilisinas/metabolismo , Reagentes de Ligações Cruzadas/química , Estabilidade Enzimática , Enzimas Imobilizadas/metabolismo , Etilenodiaminas/química , Glioxilatos/química , Concentração de Íons de Hidrogênio , Hidrólise , Sefarose/química , Temperatura
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