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1.
FEMS Yeast Res ; 21(4)2021 04 28.
Artigo em Inglês | MEDLINE | ID: mdl-33856451

RESUMO

D-lactic acid is a chiral three-carbon organic acid that can improve the thermostability of polylactic acid. Here, we systematically engineered Saccharomyces cerevisiae to produce D-lactic acid from glucose, a renewable carbon source, at near theoretical yield. Specifically, we screened D-lactate dehydrogenase (DLDH) variants from lactic acid bacteria in three different genera and identified the Leuconostoc pseudomesenteroides variant (LpDLDH) as having the highest activity in yeast. We then screened single-gene deletions to minimize the production of the side products ethanol and glycerol as well as prevent the conversion of D-lactic acid back to pyruvate. Based on the results of the DLDH screening and the single-gene deletions, we created a strain called ASc-d789M which overexpresses LpDLDH and contains deletions in glycerol pathway genes GPD1 and GPD2 and lactate dehydrogenase gene DLD1, as well as downregulation of ethanol pathway gene ADH1 using the L-methionine repressible promoter to minimize impact on growth. ASc-d789M produces D-lactic acid at a titer of 17.09 g/L in shake-flasks (yield of 0.89 g/g glucose consumed or 89% of the theoretical yield). Fed-batch fermentation resulted in D-lactic acid titer of 40.03 g/L (yield of 0.81 g/g glucose consumed). Altogether, our work represents progress towards efficient microbial production of D-lactic acid.


Assuntos
Ácido Láctico/biossíntese , Engenharia Metabólica , Saccharomyces cerevisiae/genética , Clonagem Molecular , Fermentação , Deleção de Genes , Microbiologia Industrial , L-Lactato Desidrogenase/genética , Leuconostoc/enzimologia , Microrganismos Geneticamente Modificados , Plasmídeos , Saccharomyces cerevisiae/metabolismo
2.
Int J Mol Sci ; 22(6)2021 Mar 22.
Artigo em Inglês | MEDLINE | ID: mdl-33810084

RESUMO

Alternansucrase (ALT, EC 2.4.1.140) is a glucansucrase that can generate α-(1,3/1,6)-linked glucan from sucrose. Previously, the crystal structure of the first alternansucrase from Leuconostoc citreum NRRL B-1355 was successfully elucidated; it showed that alternansucrase might have two acceptor subsites (W675 and W543) responsible for the formation of alternating linked glucan. This work aimed to investigate the primary acceptor subsite (W675) by saturated mutagenesis using Leuconostoc citreum ABK-1 alternansucrase (LcALT). The substitution of other residues led to loss of overall activity, and formation of an alternan polymer with a nanoglucan was maintained when W675 was replaced with other aromatic residues. Conversely, substitution by nonaromatic residues led to the synthesis of oligosaccharides. Mutations at W675 could potentially cause LcALT to lose control of the acceptor molecule binding via maltose-acceptor reaction-as demonstrated by results from molecular dynamics simulations of the W675A variant. The formation of α-(1,2), α-(1,3), α-(1,4), and α-(1,6) linkages were detected from products of the W675A mutant. In contrast, the wild-type enzyme strictly synthesized α-(1,6) linkage on the maltose acceptor. This study examined the importance of W675 for transglycosylation, processivity, and regioselectivity of glucansucrases. Engineering glucansucrase active sites is one of the essential approaches to green tools for carbohydrate modification.


Assuntos
Glicosiltransferases/química , Glicosiltransferases/metabolismo , Leuconostoc/enzimologia , Engenharia de Proteínas , Ativação Enzimática , Glicosilação , Glicosiltransferases/genética , Hidrólise , Cinética , Leuconostoc/genética , Modelos Moleculares , Ligação Proteica , Conformação Proteica , Relação Estrutura-Atividade , Especificidade por Substrato
3.
Sheng Wu Gong Cheng Xue Bao ; 36(8): 1546-1555, 2020 Aug 25.
Artigo em Chinês | MEDLINE | ID: mdl-32924353

RESUMO

Sucrose phosphorylase (SPase) gene from Leuconostoc mesenteroides ATCC 12291 was synthesised after codon optimization, and inserted into pET-28a plasmid to generate pET-28a-spase. The recombinant strain Escherichia coli BL21 (DE3)/pET-28a-spase was induced for Spase expression. The recombinant protein Spase was purified and characterized. The specific enzyme activity of SPase was 213.98 U/mg, the purification ratio was 1.47-fold, and the enzyme activity recovery rate was 87.80%. The optimal temperature and the optimal pH of the SPase were identified to be 45 °C and 6.5 respectively, and Km, Vmax and kcat of the SPase for sucrose was 128.8 mmol/L, 2.167 µmol/(mL·min), and 39 237.86 min-1. The recombinant SPase was used for α-arbutin production from hydroquinone and the reaction process was evaluated. The optimal conditions for synthesis of α-arbutin by SPase were 40 g/L hydroquinone, 5:1 molar ratio of sucrose and hydroquinone, and 250 U/mL recombinant SPase at pH 7.0 and 30 °C for 24 h in the dark, and then 500 U/mL glucoamylase was added at 40°C for 2.5 h. Under the optimized process, the yield of α-arbutin reached 98 g/L, and the hydroquinone conversion rate was close to 99%. In summary, the recombinant SPase was cloned and characterized, and its application for α-arbutin production was feasible.


Assuntos
Arbutina , Glucosiltransferases , Microbiologia Industrial , Leuconostoc , Arbutina/biossíntese , Glucosiltransferases/genética , Glucosiltransferases/metabolismo , Leuconostoc/enzimologia , Proteínas Recombinantes/genética , Proteínas Recombinantes/metabolismo
4.
J Agric Food Chem ; 68(24): 6664-6671, 2020 Jun 17.
Artigo em Inglês | MEDLINE | ID: mdl-32437608

RESUMO

Previously, we have identified and characterized 4,6-α-glucanotransferase enzymes of the glycosyl hydrolase (GH) family 70 (GH70) that cleave (α1→4)-linkages in amylose and introduce (α1→6)-linkages in linear chains. The 4,6-α-glucanotransferase of Lactobacillus reuteri 121, for instance, converts amylose into an isomalto/malto-polysaccharide (IMMP) with 90% (α1→6)-linkages. Over the years, also, branching sucrase enzymes belonging to GH70 have been characterized. These enzymes use sucrose as a donor substrate to glucosylate dextran as an acceptor substrate, introducing single -(1→2,6)-α-d-Glcp-(1→6)- (Leuconostoc citreum enzyme) or -(1→3,6)-α-d-Glcp-(1→6)-branches (Leuconostoc citreum, Leuconostoc fallax, Lactobacillus kunkeei enzymes). In this work, we observed that the catalytic domain 2 of the L. kunkeei branching sucrase used not only dextran but also IMMP as the acceptor substrate, introducing -(1→3,6)-α-d-Glcp-(1→6)-branches. The products obtained have been structurally characterized in detail, revealing the addition of single (α1→3)-linked glucose units to IMMP (resulting in a comb-like structure). The in vitro digestibility of the various α-glucans was estimated with the glucose generation rate (GGR) assay that uses rat intestinal acetone powder to simulate the digestive enzymes in the upper intestine. Raw wheat starch is known to be a slowly digestible carbohydrate in mammals and was used as a benchmark control. Compared to raw wheat starch, IMMP and dextran showed reduced digestibility, with partially digestible and indigestible portions. Interestingly, the digestibility of the branching sucrase modified IMMP and dextran products considerably decreased with increasing percentages of (α1→3)-linkages present. The treatment of amylose with 4,6-α-glucanotransferase and branching sucrase/sucrose thus allowed for the synthesis of amylose/starch derived α-glucans with markedly reduced digestibility. These starch derived α-glucans may find applications in the food industry.


Assuntos
Proteínas de Bactérias/metabolismo , Glucanos/metabolismo , Sistema da Enzima Desramificadora do Glicogênio/metabolismo , Lactobacillus/enzimologia , Leuconostoc/enzimologia , Amido/metabolismo , Sacarase/metabolismo , Proteínas de Bactérias/química , Proteínas de Bactérias/genética , Biocatálise , Domínio Catalítico , Glucanos/química , Sistema da Enzima Desramificadora do Glicogênio/química , Sistema da Enzima Desramificadora do Glicogênio/genética , Lactobacillus/química , Lactobacillus/genética , Lactobacillus/metabolismo , Leuconostoc/química , Leuconostoc/genética , Leuconostoc/metabolismo , Amido/química , Sacarase/química , Sacarose/química , Sacarose/metabolismo
5.
J Biol Chem ; 295(28): 9474-9489, 2020 07 10.
Artigo em Inglês | MEDLINE | ID: mdl-32409580

RESUMO

Microbial α-glucans produced by GH70 (glycoside hydrolase family 70) glucansucrases are gaining importance because of the mild conditions for their synthesis from sucrose, their biodegradability, and their current and anticipated applications that largely depend on their molar mass. Focusing on the alternansucrase (ASR) from Leuconostoc citreum NRRL B-1355, a well-known glucansucrase catalyzing the synthesis of both high- and low-molar-mass alternans, we searched for structural traits in ASR that could be involved in the control of alternan elongation. The resolution of five crystal structures of a truncated ASR version (ASRΔ2) in complex with different gluco-oligosaccharides pinpointed key residues in binding sites located in the A and V domains of ASR. Biochemical characterization of three single mutants and three double mutants targeting the sugar-binding pockets identified in domain V revealed an involvement of this domain in alternan binding and elongation. More strikingly, we found an oligosaccharide-binding site at the surface of domain A, distant from the catalytic site and not previously identified in other glucansucrases. We named this site surface-binding site (SBS) A1. Among the residues lining the SBS-A1 site, two (Gln700 and Tyr717) promoted alternan elongation. Their substitution to alanine decreased high-molar-mass alternan yield by a third, without significantly impacting enzyme stability or specificity. We propose that the SBS-A1 site is unique to alternansucrase and appears to be designed to bind alternating structures, acting as a mediator between the catalytic site and the sugar-binding pockets of domain V and contributing to a processive elongation of alternan chains.


Assuntos
Proteínas de Bactérias/química , Glucanos/química , Glicosiltransferases/química , Leuconostoc/enzimologia , Proteínas de Bactérias/genética , Proteínas de Bactérias/metabolismo , Sítios de Ligação , Cristalografia por Raios X , Glucanos/biossíntese , Glicosiltransferases/genética , Glicosiltransferases/metabolismo , Domínios Proteicos
6.
Biotechnol Lett ; 42(8): 1535-1545, 2020 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-32246347

RESUMO

OBJECTIVE: Although the extracellular polysaccharides have been analyzed in the previous period, the biochemical, enzymological characters and stimulation and inhibition effect on glucansucrase are not fully understood. RESULTS: After three steps purification, salting out, DEAE-Sepharose and Sephadex G-75, the final specific activity was 264.84 U/mg protein with 4.31-fold. The SDS-PAGE analysis of fraction gave a single band 170.35 kDa in the stained gel. The active band was analyzed with LC-MS/MS to identify glucansucrase. The highest coverage rate of dextransucrase from Leu. citreum (ACY92456.2) was 55.60%, the results were speculated that the glucansucrase secreted from Leu. citreum B-2 may be a novel glucansucrase. The purified enzyme was optimally active at 20-30 °C and pH 6.0-8.0. Metal ions K+, Na+, Ca2+, Mn2+, Mg2+, and Cr+ had an apparent stimulating effect on enzyme activity, especially in divalent ions Ca2+ and Mn2+, the residual activities were higher than 200%. In a reverse, Hg+, acetonitrile, SDS, salt, and guanidine expressed inhibition effect on enzyme residual activity. The KM and Vmax were detected to be 4.82 mM and 0.97 U/mg, respectively. CONCLUSION: All these data collectively indicate that B-2 glucansucrase is a novel one, which have good properties and may applied to new food areas.


Assuntos
Proteínas de Bactérias , Glicosiltransferases , Leuconostoc/enzimologia , Proteínas de Bactérias/química , Proteínas de Bactérias/isolamento & purificação , Proteínas de Bactérias/metabolismo , Estabilidade Enzimática , Glicosiltransferases/química , Glicosiltransferases/isolamento & purificação , Glicosiltransferases/metabolismo , Concentração de Íons de Hidrogênio , Cinética , Cloreto de Sódio , Ureia
7.
Int J Biol Macromol ; 152: 473-482, 2020 Jun 01.
Artigo em Inglês | MEDLINE | ID: mdl-32097735

RESUMO

Glucansucrases catalyse the formation of glucans from sucrose. The glucansucrase-encoding gene from Leuconostoc citreum ABK-1, dex-N, was successfully cloned and expressed in E. coli BL21 Star (DE3). DEX-N produces 2 types of glucans: soluble (S-dextran) and insoluble (I-glucan) glucans. The S-dextran was determined to be ca. 10 kDa in size and contained >90% α-1,6 linkages; along with its water solubility, this is similar to commercial dextran. On the other hand, I-glucan was water-insoluble, harbouring a block-wise pattern of α-1,3 and α-1,6 linkages in its structure. Notably, the FTIR and powder X-ray diffraction pattern of I-glucan exhibited a combination of features found in α-1,6-linked dextran and α-1,3-linked mutan. Although both I-glucan and mutan are insoluble glucans, their physical characteristics are notably dissimilar.


Assuntos
Proteínas de Bactérias/química , Dextranos/química , Glucanos/química , Glicosiltransferases/química , Leuconostoc/enzimologia , Clonagem Molecular , Escherichia coli , Concentração de Íons de Hidrogênio , Íons , Espectroscopia de Ressonância Magnética , Metais , Metilação , Peso Molecular , Solubilidade , Espectroscopia de Infravermelho com Transformada de Fourier , Streptococcus mutans , Temperatura , Viscosidade , Difração de Raios X
8.
Food Funct ; 11(2): 1672-1683, 2020 Feb 26.
Artigo em Inglês | MEDLINE | ID: mdl-32031198

RESUMO

Novel α-glucooligosaccharides were synthesized by the acceptor reaction of Leuconostoc citreum SK24.002 glucansucrase with maltose and sucrose. The impact of synthesis conditions, including the ratio of sucrose to maltose and the substrate concentration, on the formation of α-glucooligosaccharides was evaluated. Under the optimized experimental conditions, the yield of a mixture of α-glucooligosaccharides with DP 3-5 reached approximately 56.4% with a concentration of 170.7 mg mL-1. Each of these α-glucooligosaccharides was purified, and the structures were assigned as follows: α-D-Glcp-(1,6)-α-D-Glcp-(1,4)-D-Glcp (DP3), α-D-Glcp-(1,3)-α-D-Glcp-(1,6)-α-D-Glcp-(1,4)-D-Glcp (DP4), and α-D-Glcp-(1,6)-α-D-Glcp-(1,3)-α-D-Glcp-(1,6)-α-D-Glcp-(1,4)-D-Glcp (DP5), respectively. For these three structurally different oligosaccharides, the fermentation selectivity by fecal bacteria was determined in anaerobic batch culture. Fructooligosaccharide (FOS) was used as a positive prebiotic control. Similar to FOS, all three α-glucooligosaccharides selectively stimulated the proliferation of Bifidobacteria and Lactobacilli compared with the control. DP3 exhibited the strongest prebiotic ability to increase the Bifidobacterium and Lactobacillus population, whereas DP5 produced the most short-chain fatty acids. In addition, DP4 produced the highest butyrate concentration and resulted in the lowest acetate : propionate ratio. These results suggested that the enzymatically synthesized α-glucooligosaccharides were potential prebiotics, underlining correlations between the structural features of oligosaccharides and their impact on the metabolism of fecal microbiota.


Assuntos
Fermentação/fisiologia , Glicosiltransferases/metabolismo , Oligossacarídeos/metabolismo , Prebióticos , Proteínas de Bactérias/metabolismo , Bifidobacterium/metabolismo , Fezes/microbiologia , Humanos , Lactobacillus/metabolismo , Leuconostoc/enzimologia , Maltose/metabolismo , Sacarose/metabolismo
9.
J Food Sci ; 84(11): 3186-3193, 2019 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-31589348

RESUMO

Rebaudioside A was modified via glucosylation by recombinant dextransucrase of Leuconostoc lactis EG001 in Escherichia coli BL21 (DE3), forming single O-α-D-glucosyl-(1″→6') rebaudioside A with yield of 86%. O-α-D-glucosyl-(1″→6') rebaudioside A was purified using HPLC and Diaion HP-20 and its properties were characterized for possible use as a food ingredient. Almost 98% of O-α-D-glucosyl-(1″→6') rebaudioside A was dissolved after 15 days of storage at room temperature, compared to only 11% for rebaudioside A. Compared to rebaudioside A, O-α-D-glucosyl-(1″→6') rebaudioside A showed similar or improved acidic or thermal stability in commercial drinks. Thus, O-α-D-glucosyl-(1″→6') rebaudioside A could be used as a highly pure and improved sweetener with high stability in commercial drinks. PRACTICAL APPLICATION: The proposed method can be used to generate glucosyl rebaudioside A by enzymatic glucosylation. Simple glucosyl rebaudioside A exhibited high acid/thermal stability and improved sweetener in commercialized drinks. This method can be applied to obtain high value-added bioactive compounds by enzymatic modification.


Assuntos
Proteínas de Bactérias/química , Diterpenos do Tipo Caurano/química , Glucosiltransferases/química , Leuconostoc/enzimologia , Edulcorantes/química , Biocatálise , Cromatografia Líquida de Alta Pressão
10.
Mater Sci Eng C Mater Biol Appl ; 104: 109938, 2019 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-31499948

RESUMO

Surface based on polyelectrolytes functionalized with amino acids onto amino-terminated solid surfaces of silicon wafers was prepared, with the purpose of evaluate the chemical functionality of the polyelectrolyte films in adsorption and catalytic activity of an enzyme. In this work, the adsorption of the enzyme glucose 6-phosphate dehydrogenase from Leuconostoc mesenteroides (LmG6PD) was studied as model. The polyelectrolytes were obtained from poly (maleic anhydride-alt-vinylpyrrolidone) [poly(MA-alt-VP)] and functionalized with amino acids of different hydropathy index: glutamine (Gln), tyrosine (Tyr) and methionine (Met). The polyelectrolytes were adsorbed onto the amino-terminated silicon wafer at pH 3.5 and 4.5 and at low and high ionic strength. At low ionic strength and pH 3.5, the largest quantity of adsorbed polyelectrolyte was on the films containing glutamine moiety as the most hydrophilic amino acid in the side chain of polymer chain (5.88 mg/m2), whereas at high ionic strength and pH 4.5, the lowest quantity was in films containing tyrosine moiety in the side chain (1.88 mg/m2). The films were characterized by ellipsometry, contact angle measurements and atomic force microscopy (AFM). The polyelectrolyte films showed a moderate degree of hydrophobicity, the methionine derivative being the most hydrophobic film. With the aim of evaluate the effect of the amino acid moieties on the ability of the surface to adsorb enzymes, we study the activity of the enzyme on these surfaces. We observed that the polarity of the side chain of the amino acid in the polyelectrolyte affected the quantity of LmG6PD adsorbed, as well as its specific activity, showing that films prepared from poly(MA-alt-VP) functionalized with Met provide the best enzymatic performance. The results obtained demonstrated that the surfaces prepared from polyelectrolytes functionalized with amino acids could be an attractive and simple platform for the immobilization of enzymes, which could be of interest for biocatalysis applications.


Assuntos
Aminoácidos/metabolismo , Enzimas Imobilizadas/metabolismo , Polieletrólitos/metabolismo , Adsorção , Espectroscopia de Ressonância Magnética Nuclear de Carbono-13 , Glucosefosfato Desidrogenase/metabolismo , Leuconostoc/enzimologia , NAD/biossíntese , Polieletrólitos/química , Espectroscopia de Infravermelho com Transformada de Fourier , Molhabilidade
11.
J Agric Food Chem ; 67(37): 10392-10400, 2019 Sep 18.
Artigo em Inglês | MEDLINE | ID: mdl-31461615

RESUMO

The specificity of fructooligosaccharides as prebiotics depends on their size and structure, which in turn depend on their origin or the synthesis procedure. In this work we describe the application of an inulosucrase (IslA) from Leuconostoc citreum CW28 to produce high molecular weight inulin from sucrose alongside a commercial endoinulinase (Novozym 960) produced by Aspergillus niger for a simultaneous or sequential reaction to synthesize fructooligosaccharides (FOS). The simultaneous reaction resulted in a higher substrate conversion and a wide diversity of FOS when compared to the sequential reaction. A shotgun MS analysis of the commercial endoinulinase preparation surprisingly revealed an additional enzymatic activity: a fructosyltransferase, responsible for the synthesis of FOS from sucrose. Consequentially, the range of FOS obtained in reactions combining inulosucrase from Ln. citreum with the fructosyltransferase and endoinulinase from A. niger with sucrose as substrate may be extended and regulated.


Assuntos
Proteínas de Bactérias/química , Proteínas Fúngicas/química , Glicosídeo Hidrolases/química , Hexosiltransferases/química , Inulina/química , Leuconostoc/enzimologia , Oligossacarídeos/química , Aspergillus niger/enzimologia , Biocatálise , Sacarose/química
12.
J Agric Food Chem ; 67(24): 6856-6866, 2019 Jun 19.
Artigo em Inglês | MEDLINE | ID: mdl-31124355

RESUMO

The water kefir organism Leuconostoc citreum TMW 2.1194 forms highly branched dextrans with O3- and O4-bound side chains. To obtain detailed information on the enzymatic synthesis of these polymers, the four glucansucrases encoded by Leuconostoc citreum TMW 2.1194 were cloned, heterologously expressed, and used for polysaccharide production. Molecular and macromolecular structure of the synthesized glucans were analyzed by methylation analysis, two-dimensional NMR spectroscopy, oligosaccharide analysis after partial hydrolysis, and asymmetric flow field-flow fractionation. It was demonstrated that two glucansucrases form insoluble glucans with variously branched dextran sections and varying portions of consecutive, 1,3-linked glucose units. In contrast, the other two glucansucrases synthesized O3- (Lc6255) and O4-branched (Lc1785) soluble dextrans. Analysis, isolation, and characterization of enzymatically liberated oligosaccharides showed that monomeric and elongated side chains are abundant in both polysaccharides. From the structures and size distributions it was concluded that Lc1785 is mainly responsible for synthesis of fermentatively produced soluble dextrans.


Assuntos
Proteínas de Bactérias/metabolismo , Dextranos/química , Dextranos/metabolismo , Leuconostoc/enzimologia , Sacarase/metabolismo , Configuração de Carboidratos , Glucanos/química , Glucanos/metabolismo , Leuconostoc/química , Leuconostoc/metabolismo
13.
Biochemistry ; 58(25): 2853-2859, 2019 06 25.
Artigo em Inglês | MEDLINE | ID: mdl-31140266

RESUMO

The factors that define the resulting polymer length of distributive polymerases are poorly understood. Here, starting from the crystal structure of the dextransucrase DSR-M in complex with an isomaltotetraose, we define different anchoring points for the incoming acceptor. Mutation of one of these, Trp624, decreases the catalytic rate of the enzyme but equally skews the size distribution of the resulting dextran chains toward shorter chains. Nuclear magnetic resonance analysis shows that this mutation influences both the dynamics of the active site and the water accessibility. Monte Carlo simulation of the elongation process allows interpretation of these results in terms of enhanced futile encounters, whereby the less effective binding increases the pool of effective seeds for the dextran chains and thereby directly determines the length distribution of the final polymers.


Assuntos
Dextranos/química , Glucosiltransferases/química , Glucosiltransferases/metabolismo , Biocatálise , Domínio Catalítico , Escherichia coli/genética , Glucosiltransferases/genética , Leuconostoc/enzimologia , Modelos Químicos , Estrutura Molecular , Método de Monte Carlo , Mutação , Oligossacarídeos/química , Engenharia de Proteínas
14.
Carbohydr Polym ; 215: 160-169, 2019 Jul 01.
Artigo em Inglês | MEDLINE | ID: mdl-30981341

RESUMO

Inulin has interesting physicochemical and functional properties, and therefore a wide range of applications in the food and medical industries. It has gained great traction due to its ability to form nanoparticles and its possible application as nanovehicle for drug delivery. In this work, we demonstrated that the enzymatically-synthesized high molecular weight (HMW) inulin forms stable spherical nanoparticles with an average diameter of 112 ± 5 nm. The self-assemblage of HMW inulin nanoparticles is carried out during enzymatic synthesis of the polymer, and become detectable after a certain critical aggregation concentration (CAC) is reached. Both, the CAC and nanoparticle size are influenced by the reaction temperature. These nanoparticles are not toxic for peripheral blood mononuclear cells, at concentrations below 200 µg/mL; no significant prebiotic potential was detected in cultures of 13 probiotic strains. This work contributes to a better understanding of the formation of HMW inulin nanoparticles and their biological properties.


Assuntos
Portadores de Fármacos/síntese química , Portadores de Fármacos/toxicidade , Hexosiltransferases/química , Inulina/síntese química , Inulina/toxicidade , Leuconostoc/enzimologia , Nanopartículas/química , Nanopartículas/toxicidade , Portadores de Fármacos/química , Liberação Controlada de Fármacos , Feminino , Humanos , Inulina/química , Leucócitos Mononucleares/efeitos dos fármacos , Peso Molecular , Prebióticos , Probióticos
15.
Res Microbiol ; 170(1): 35-42, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-30291951

RESUMO

Fructophilic lactic acid bacteria (FLAB) are unique in the sense that they prefer D-fructose over D-glucose as main carbon source. If D-glucose is metabolised, electron acceptors are required and significant levels of acetate are produced. These bacteria are found in environments rich in D-fructose, such as flowers, fruits and the gastrointestinal tract of insects feeding on fructose-rich diets. Fructobacillus spp. are representatives of this unique group, and their fructophilic characteristics are well conserved. In this study, the bifunctional alcohol/acetaldehyde dehydrogenase gene (adhE) from Leuconostoc mesenteroides NRIC 1541T was cloned into a plasmid and transferred to Fructobacillus fructosus NRIC 1058T. Differences in biochemical characteristics between the parental strain (NRIC 1058T) and the transformants were compared. Strain 1-11, transformed with the adhE gene, did not show any fructophilic characteristics, and the strain grew well on D-glucose without external electron acceptors. Accumulation of acetic acid, which was originally seen in the parental strain, was replaced with ethanol in the transformed strain. Furthermore, in silico analyses revealed that strain NRIC 1058T lacked the sugar transporters/permeases and enzymes required for conversion of metabolic intermediates. This may be the reason for poor carbohydrate metabolic properties recorded for FLAB.


Assuntos
Álcool Desidrogenase/genética , Álcool Desidrogenase/metabolismo , Aldeído Oxirredutases/metabolismo , Proteínas de Bactérias/genética , Proteínas de Bactérias/metabolismo , Frutose/metabolismo , Expressão Gênica , Leuconostoc/enzimologia , Leuconostocaceae/genética , Acetatos/metabolismo , Álcool Desidrogenase/química , Aldeído Oxirredutases/química , Aldeído Oxirredutases/genética , Proteínas de Bactérias/química , Glucose/metabolismo , Leuconostoc/genética , Leuconostocaceae/crescimento & desenvolvimento , Leuconostocaceae/metabolismo
16.
Food Microbiol ; 76: 164-172, 2018 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-30166137

RESUMO

This study focused on the performance of the dextran producer Leuconostoc citreum as starter culture during 30 days of wheat flour type I sourdough propagation (back-slopping). As confirmed by RAPD-PCR analysis, the strain dominated throughout the propagation procedure, consisting of daily fermentations at 20 °C. The sourdoughs were characterized by consistent lactic acid bacteria cell density and acidification parameters, reaching pH values of 4.0 and mild titratable acidity. Carbohydrates consumption remained consistent during the propagation procedure, leading to formation of mannitol and almost equimolar amount of lactic and acetic acid. The addition of sucrose enabled the formation of dextran, inducing an increase in viscosity of the sourdough of 2-2.6 fold, as well as oligosaccharides. The transcriptional analysis based on glucosyltransferases genes (GH70) showed the existence in L. citreum FDR241 of at least five different dextransucrases. Among these, only one gene, previously identified as forming only α-(1-6) glycosidic bonds, was significantly upregulated in sourdough fermentation conditions, and the main responsible of dextran formation. A successful application of a starter culture during long sourdough back-slopping procedure will depend on the strain robustness and fermentation conditions. Transcriptional regulation of EPS-synthetizing genes might contribute to increase the efficiency of industrial processes.


Assuntos
Farinha/microbiologia , Leuconostoc/genética , Leuconostoc/metabolismo , Polissacarídeos Bacterianos/biossíntese , Polissacarídeos Bacterianos/genética , Transcrição Gênica , Triticum/microbiologia , Fermentação , Microbiologia de Alimentos , Perfilação da Expressão Gênica , Glucosiltransferases/genética , Glicosiltransferases , Leuconostoc/efeitos dos fármacos , Leuconostoc/enzimologia , Reação em Cadeia da Polimerase/métodos , Sacarose/farmacologia
17.
PLoS One ; 13(8): e0201323, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-30067837

RESUMO

Among α-transglucosylases from Glycoside-Hydrolase family 70, the ΔN123-GB-CD2 enzyme derived from the bifunctional DSR-E from L. citreum NRRL B-1299 is particularly interesting as it was the first described engineered Branching Sucrase, not able to elongate glucan polymers from sucrose substrate. The previously reported overall structural organization of this multi-domain enzyme is an intricate U-shape fold conserved among GH70 enzymes which showed a certain conformational variability of the so-called domain V, assumed to play a role in the control of product structures, in available X-ray structures. Understanding the role of functional dynamics on enzyme reaction and substrate recognition is of utmost interest although it remains a challenge for biophysical methods. By combining long molecular dynamics simulation (1µs) and multiple analyses (NMA, PCA, Morelet Continuous Wavelet Transform and Cross Correlations Dynamics), we investigated here the dynamics of ΔN123-GB-CD2 alone and in interaction with sucrose substrate. Overall, our results provide the detailed picture at atomic level of the hierarchy of motions occurring along different timescales and how they are correlated, in agreement with experimental structural data. In particular, detailed analysis of the different structural domains revealed cooperative dynamic behaviors such as twisting, bending and wobbling through anti- and correlated motions, and also two structural hinge regions, of which one was unreported. Several highly flexible loops surrounding the catalytic pocket were also highlighted, suggesting a potential role in the acceptor promiscuity of ΔN123-GBD-CD2. Normal modes and essential dynamics underlined an interesting two-fold dynamic of the catalytic domain A, pivoting about an axis splitting the catalytic gorge in two parts. The comparison of the conformational free energy landscapes using principal component analysis of the enzyme in absence or in presence of sucrose, also revealed a more harmonic basin when sucrose is bound with a shift population of the bending mode, consistent with the substrate binding event.


Assuntos
Leuconostoc/enzimologia , Sacarase/química , Domínio Catalítico , Cristalografia por Raios X , Leuconostoc/química , Leuconostoc/metabolismo , Simulação de Dinâmica Molecular , Ligação Proteica , Conformação Proteica , Sacarase/metabolismo , Sacarose/metabolismo
18.
Sci Rep ; 8(1): 8340, 2018 05 29.
Artigo em Inglês | MEDLINE | ID: mdl-29844508

RESUMO

Alternansucrase catalyses the sequential transfer of glucose residues from sucrose onto another sucrose molecule to form a long chain polymer, known as "alternan". The alternansucrase-encoding gene from Leuconostoc citreum ABK-1 (Lcalt) was successfully cloned and expressed in Escherichia coli. Lcalt encoded LcALT of 2,057 amino acid residues; the enzyme possessed an optimum temperature and pH of 40 °C and 5.0, respectively, and its' activity was stimulated up to 2.4-fold by the presence of Mn2+. Kinetic studies of LcALT showed a high transglycosylation activity, with Km 32.2 ± 3.2 mM and kcat 290 ± 12 s-1. Alternan generated by LcALT (Lc-alternan) harbours partially alternating α-1,6 and α- 1,3 glycosidic linkages confirmed by NMR spectroscopy, methylation analysis, and partial hydrolysis of Lc-alternan products. In contrast to previously reported alternans, Lc-alternan can undergo self-assembly, forming nanoparticles with an average size of 90 nm in solution. At concentrations above 15% (w/v), Lc-alternan nanoparticles disassemble and form a high viscosity solution, while this polymer forms a transparent film once dried.


Assuntos
Glucanos/química , Glicosiltransferases/química , Glicosiltransferases/genética , Escherichia coli/genética , Cinética , Leuconostoc/enzimologia , Leuconostoc/genética , Espectroscopia de Ressonância Magnética/métodos , Peso Molecular , Sacarose/metabolismo
19.
Appl Biochem Biotechnol ; 186(3): 563-575, 2018 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-29675666

RESUMO

Enantiopure 2-hydroxy acids (2-HAs) are important intermediates for the synthesis of pharmaceuticals and fine chemicals. Deracemization of racemic 2-HAs into the corresponding single enantiomers represents an economical and highly efficient approach for synthesizing chiral 2-HAs in industry. In this work, a novel ketoacid reductase from Leuconostoc lactis (LlKAR) with higher activity and substrate tolerance towards aromatic α-ketoacids was discovered by genome mining, and then its enzymatic properties were characterized. Accordingly, an engineered Escherichia coli (HADH-LlKAR-GDH) co-expressing 2-hydroxyacid dehydrogenase, LlKAR, and glucose dehydrogenase was constructed for efficient deracemization of racemic 2-HAs. Most of the racemic 2-HAs were deracemized to their (R)-isomers at high yields and enantiomeric purity. In the case of racemic 2-chloromandelic acid, as much as 300 mM of substrate was completely transformed into the optically pure (R)-2-chloromandelic acid (> 99% enantiomeric excess) with a high productivity of 83.8 g L-1 day-1 without addition of exogenous cofactor, which make this novel whole-cell biocatalyst more promising and competitive in practical application.


Assuntos
Oxirredutases do Álcool/metabolismo , Glucose 1-Desidrogenase/metabolismo , Hidroxiácidos/metabolismo , Cetoácidos/metabolismo , Oxirredutases/metabolismo , Biocatálise , Escherichia coli/genética , Leuconostoc/enzimologia , Estereoisomerismo
20.
Enzyme Microb Technol ; 107: 15-21, 2017 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-28899482

RESUMO

Chlorogenic acid, a major polyphenol in edible plants, possesses strong antioxidant activity, anti-lipid peroxidation and anticancer effects. It used for industrial applications; however, this is limited by its instability to heat or light. In this study, we for the first time synthesized chlorogenic acid glucoside (CHG) via transglycosylation using dextransucrase from Leuconostoc mesenteroides and sucrose. CHG was purified and its structure determined by nuclear magnetic resonance and matrix-associated laser desorption ionization-time-of-flight mass spectroscopy. The production yield of CHG was 44.0% or 141mM, as determined by response surface methodology. CHG possessed a 65% increased water solubility and 2-fold browning resistance while it displayed stronger inhibition of lipid peroxidation and of colon cancer cell growth by MTT assay, compared to chlorogenic acid. Therefore, this study may expand the industrial applications of chlorogenic acid as water-soluble or browning resistant compound (CHG) through enzymatic glycosylation.


Assuntos
Ácido Clorogênico/análogos & derivados , Glucosídeos/biossíntese , Glucosiltransferases/metabolismo , Antineoplásicos/química , Antineoplásicos/farmacologia , Antioxidantes/química , Antioxidantes/farmacologia , Proteínas de Bactérias/metabolismo , Proliferação de Células/efeitos dos fármacos , Ácido Clorogênico/metabolismo , Ácido Clorogênico/farmacologia , Neoplasias do Colo/tratamento farmacológico , Neoplasias do Colo/patologia , Glucosídeos/química , Glucosídeos/farmacologia , Glicosilação , Células HT29 , Humanos , Leuconostoc/enzimologia , Peroxidação de Lipídeos/efeitos dos fármacos , Solubilidade , Sacarose/metabolismo
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