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1.
J Agric Food Chem ; 2024 Jun 05.
Artigo em Inglês | MEDLINE | ID: mdl-38838197

RESUMO

Leucine dehydrogenase (LeuDH, EC 1.4.1.9) can reversibly catalyze the oxidative deamination of l-leucine and some other specific α-amino acids to form the corresponding α-ketoacids. This reaction has great significance in the field of food additives and the pharmaceutical industry. The LeuDH from Exiguobacterium sibiricum (EsLeuDH) has high catalytic efficiency but limited thermal stability, hindering its widespread industrial application. In this study, a mutant N5F/I12L/A352Y of EsLeuDH (referred to as M2) was developed with enhanced thermal stability and catalytic activity through rational modification. The M2 mutant exhibits a half-life at 60 °C (t1/2(60 °C)) of 975.7 min and a specific activity of 69.6 U mg-1, which is 5.4 and 2.1 times higher than those of EsLeuDH, respectively. This research may facilitate the utilization of EsLeuDH at elevated temperatures, enhancing its potential for industrial applications. The findings offer a practical and efficient approach for optimizing LeuDH and other industrial enzymes.

2.
J Agric Food Chem ; 72(18): 10428-10438, 2024 May 08.
Artigo em Inglês | MEDLINE | ID: mdl-38660720

RESUMO

Tebuconazole is a chiral triazole fungicide used globally in agriculture as a racemic mixture, but its enantiomers exhibit significant enantioselective dissimilarities in bioactivity and environmental behaviors. The steric hindrance caused by the tert-butyl group makes it a great challenge to synthesize tebuconazole enantiomers. Here, we designed a simple chemoenzymatic approach for the asymmetric synthesis of (R)-tebuconazole, which includes the biocatalytic resolution of racemic epoxy-precursor (2-tert-butyl-2-[2-(4-chlorophenyl)ethyl] oxirane, rac-1a) by Escherichia coli/Rpeh whole cells expressed epoxide hydrolase from Rhodotorula paludigensis (RpEH), followed by a one-step chemocatalytic synthesis of (R)-tebuconazole. It was observed that (S)-1a was preferentially hydrolyzed by E. coli/Rpeh, whereas (R)-1a was retained with a specific activity of 103.8 U/g wet cells and a moderate enantiomeric ratio (E value) of 13.4, which was remarkably improved to 43.8 after optimizing the reaction conditions. Additionally, a gram-scale resolution of 200 mM rac-1a was performed using 150 mg/mL E. coli/Rpeh wet cells, resulting in the retention of (R)-1a in a 97.0% ees, a 42.5% yields, and a 40.5 g/L/d space-time yield. Subsequently, the synthesis of highly optical purity (R)-tebuconazole (>99% ee) was easily achieved through the chemocatalytic ring-opening of the epoxy-precursor (R)-1a with 1,2,4-triazole. To elucidate insight into the enantioselectivity, molecular docking simulations revealed that the unique L-shaped substrate-binding pocket of RpEH plays a crucial role in the enantioselective recognition of bulky 2,2-disubstituted oxirane 1a.


Assuntos
Biocatálise , Epóxido Hidrolases , Proteínas Fúngicas , Fungicidas Industriais , Rhodotorula , Triazóis , Rhodotorula/enzimologia , Rhodotorula/química , Rhodotorula/metabolismo , Triazóis/química , Triazóis/metabolismo , Fungicidas Industriais/química , Fungicidas Industriais/metabolismo , Fungicidas Industriais/síntese química , Epóxido Hidrolases/metabolismo , Epóxido Hidrolases/química , Estereoisomerismo , Proteínas Fúngicas/química , Proteínas Fúngicas/metabolismo , Simulação de Acoplamento Molecular , Escherichia coli/enzimologia , Escherichia coli/metabolismo
3.
Biomolecules ; 14(3)2024 Mar 14.
Artigo em Inglês | MEDLINE | ID: mdl-38540769

RESUMO

Cyclic dinucleotides (CDNs) are cyclic molecules consisting of two nucleoside monophosphates linked by two phosphodiester bonds, which act as a second messenger and bind to the interferon gene stimulating factor (STING) to activate the downstream signaling pathway and ultimately induce interferon secretion, initiating an anti-infective immune response. Cyclic dinucleotides and their analogs are lead compounds in the immunotherapy of infectious diseases and tumors, as well as immune adjuvants with promising applications. Many agonists of pathogen recognition receptors have been developed as effective adjuvants to optimize vaccine immunogenicity and efficacy. In this work, the binding mechanism of human-derived interferon gene-stimulating protein and its isoforms with cyclic dinucleotides and their analogs was theoretically investigated using computer simulations and combined with experimental results in the hope of providing guidance for the subsequent synthesis of cyclic dinucleotide analogs.


Assuntos
Proteínas de Membrana , Nucleotídeos Cíclicos , Humanos , Proteínas de Membrana/metabolismo , Sistemas do Segundo Mensageiro , Interferons , Transdução de Sinais , Adjuvantes Imunológicos
4.
Biotechnol Biofuels Bioprod ; 17(1): 44, 2024 Mar 18.
Artigo em Inglês | MEDLINE | ID: mdl-38500189

RESUMO

2,5-Dimethylpyrazine (2,5-DMP) is important pharmaceutical raw material and food flavoring agent. Recently, engineering microbes to produce 2,5-DMP has become an attractive alternative to chemical synthesis approach. In this study, metabolic engineering strategies were used to optimize the modified Escherichia coli BL21 (DE3) strain for efficient synthesis of 2,5-DMP using L-threonine dehydrogenase (EcTDH) from Escherichia coli BL21, NADH oxidase (EhNOX) from Enterococcus hirae, aminoacetone oxidase (ScAAO) from Streptococcus cristatus and L-threonine transporter protein (EcSstT) from Escherichia coli BL21, respectively. We further optimized the reaction conditions for synthesizing 2,5-DMP. In optimized conditions, the modified strain can convert L-threonine to obtain 2,5-DMP with a yield of 2897.30 mg/L. Therefore, the strategies used in this study contribute to the development of high-level cell factories for 2,5-DMP.

5.
Int Immunopharmacol ; 130: 111770, 2024 Mar 30.
Artigo em Inglês | MEDLINE | ID: mdl-38430806

RESUMO

BACKGROUND: Asthma is a heterogeneous chronic respiratory disease, affecting about 10% of the global population. Cellular senescence is a multifaceted phenomenon defined as the irreversible halt of the cell cycle, commonly referred to as the senescence-associated secretory phenotype. Recent studies suggest that cellular senescence may play a role in asthma. This study aims to dissect the role and biological mechanisms of CSRGs in asthma, enhancing our understanding of the progression of asthma. METHODS: The study utilized the GSE147878 dataset, employing methods like WGCNA, Differential analysis, Cibersort, GO, KEGG, unsupervised clustering, and GSVA to explore CSRGs functions and immune cell patterns in asthma. Machine learning identified key diagnostic genes, validated externally with the GSE165934 dataset and through qRT-PCR and WB experiments in animal models. RESULT: From the GSE147878 dataset, 24 CSRGs were identified, highlighting their role in immune and inflammatory processes in asthma. Differences in CD4 naive T cells and activated dendritic cells between asthma and control groups underscored CSRGs' role in immune regulation. Cluster analysis revealed two distinct asthma patient groups with unique immune microenvironments. Machine learning identified five genes, leading to a TF-miRNA-mRNA network and singling out RHOA and RBM39 as key diagnostic genes, which were experimentally validated. Finally, a nomogram was created based on these genes. CONCLUSION: This study, utilizing bioinformatics and animal experiments, identified RHOA and RBM39 as key diagnostic genes for asthma, providing new insights into the potential role and biological mechanisms of CSRGs in asthma.


Assuntos
Experimentação Animal , Asma , MicroRNAs , Animais , Humanos , Asma/genética , Senescência Celular/genética , Biologia Computacional
6.
World J Microbiol Biotechnol ; 39(12): 352, 2023 Oct 21.
Artigo em Inglês | MEDLINE | ID: mdl-37864750

RESUMO

Formate dehydrogenase (FDH) is a D-2-hydroxy acid dehydrogenase, which can reversibly reduce CO2 to formate and thus act as non-photosynthetic CO2 reductase. In order to increase catalytic efficiency of formate dehydrogenase for CO2 reduction, two mutants V328I/F285W and V354G/F285W were obtained of which reduction activity was about two times more than the parent CbFDHM2, and the formate production from CO2 catalyzed by mutants were 2.9 and 2.7-fold higher than that of the parent CbFDHM2. The mutants had greater potential in CO2 reduction. The optimal temperature for V328I/F285W and V354G/F285W was 55 °C, and they showed increasement of relative activity under 45 °C to 55 °C compared with parent. The optimal pH for the mutants was 9.0, and they showed excellent stability in pH 4.0-11.5. The kcat/Km values of mutants were 1.75 times higher than that of the parent. Then the molecular basis for its improvement of biochemical characteristics were preliminarily elucidated by computer-aided methods. All of these results further established a solid foundation for molecular modification of formate dehydrogenase and CO2 reduction.


Assuntos
Dióxido de Carbono , Formiato Desidrogenases , Dióxido de Carbono/metabolismo , Formiato Desidrogenases/genética , Formiato Desidrogenases/química , Formiato Desidrogenases/metabolismo , Catálise , Formiatos/metabolismo
7.
Front Bioeng Biotechnol ; 11: 1134152, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-36873348

RESUMO

Nicotinamide riboside kinase (NRK) plays an important role in the synthesis of ß -nicotinamide nucleotide (NMN). NMN is a key intermediate of NAD+ synthesis, and it actually contribute to the well-being of our health. In this study, gene mining technology was used to clone nicotinamide nucleoside kinase gene fragments from S. cerevisiae, and the ScNRK1 was achieved a high level of soluble expression in E. coli BL21. Then, the reScNRK1 was immobilized by metal affinity label to optimize the enzyme performance. The results showed that the enzyme activity in the fermentation broth was 14.75 IU/mL, and the specific enzyme activity after purification was 2252.59 IU/mg. After immobilization, the optimum temperature of the immobilized enzyme was increased by 10°C compared with the free enzyme, and the temperature stability was improved with little change in pH. Moreover, the activity of the immobilized enzyme remained above 80% after four cycles of immobilized reScNRK1, which makes the enzyme more advantageous in the enzymatic synthesis of NMN.

8.
Enzyme Microb Technol ; 156: 109997, 2022 May.
Artigo em Inglês | MEDLINE | ID: mdl-35168166

RESUMO

Phytase belongs to orthophosphate monoester hydrolase, which can catalyze the gradual hydrolysis of phytic acid to inositol phosphate. It can be added to animal feed to reduce the anti-nutritional factor of phytic acid in feed. The thermostability and specific activity of phytases are two key factors determining their potential applications. In this study, a highly active 233-aa phytase gene (LpPHY233) from Lactobacillus plantarum was cloned and expressed in Escherichia coli (E. coli), achieving 800 times higher activity than that expressed in L. plantarum. Next, the temperature characteristic and catalytic performance of LpPHY233 was improved by disulfide bond engineering and C-terminal truncation, respectively. Surprisingly, the specific activity of the C-terminal truncated mutant LpPHY200 was about 5.6 times higher than that of LpPHY233, and the optimal temperature for the mutant LpPHY233S58C/K61C introduced disulfide bond was 15 °C higher than that of LpPHY233. Moreover, these phytase mutants displayed excellent pH property and kinetic parameters, and have great application prospect in feed additives field. The molecular basis for its catalytic performance was preliminarily explained by in silico design methods. Our results provided a solid theoretical foundation for further molecular modification and industrial application of phytases.


Assuntos
6-Fitase , Lactobacillus plantarum , 6-Fitase/metabolismo , Clonagem Molecular , Escherichia coli/genética , Escherichia coli/metabolismo , Concentração de Íons de Hidrogênio , Lactobacillus plantarum/genética , Lactobacillus plantarum/metabolismo , Engenharia de Proteínas
9.
Front Bioeng Biotechnol ; 9: 655522, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-33859982

RESUMO

Leucine dehydrogenase (LDH) is a NAD+-dependent oxidoreductase, which can selectively catalyze α-keto acids to obtain α-amino acids and their derivatives. It plays a key role in the biosynthesis of L-tert-leucine (L-Tle). As a non-naturally chiral amino acid, L-Tle can be used as an animal feed additive, nutrition fortifier, which is a perspective and important building block in the pharmaceutical, cosmetic, and food additive industry. In this study, four hypothetical leucine dehydrogenases were discovered by using genome mining technology, using the highly active leucine dehydrogenase LsLeuDH as a probe. These four leucine dehydrogenases were expressed in Escherichia coli BL21(DE3), respectively, and purified to homogeneity and characterized. Compared with the other enzymes, the specific activity of PfLeuDH also shows stronger advantage. In addition, the highly selective biosynthesis of L-Tle from trimethylpyruvic acid (TMP) was successfully carried out by whole-cell catalysis using engineered E. coli cells as biocatalyst, which can efficiently coexpress leucine dehydrogenase and formate dehydrogenase. One hundred-millimolar TMP was catalyzed for 25 h, and the yield and space-time yield of L-Tle reached 87.38% (e.e. >99.99%) and 10.90 g L-1 day-1. In short, this research has initially achieved the biosynthesis of L-Tle, laying a solid foundation for the realization of low-cost and large-scale biosynthesis of L-Tle.

10.
Int J Biol Macromol ; 160: 372-379, 2020 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-32464198

RESUMO

Glutamate decarboxylase (GAD) has the potential of converting L-glutamate to gamma-aminobutyric acid (GABA), which is an important non-proteinogenic amino acid that has a potential use as food additive or dietary supplement for its physiological functions. A novel pyridoxal 5'-phosphate (PLP)-dependent glutamate decarboxylase (LsGAD) was cloned from GRAS (generally recognized as safe) Lactobacillus senmaizukei by genome mining and efficiently expressed in Escherichia coli BL21. The LsGAD displayed excellent temperature property, pH property and kinetic parameters compared with the probe LbGAD and the other GADs. By increasing the copy number of the LsGAD encoding gene, the expression level of LsGAD and the biosynthesis yield of GABA were increased, which was near to 2 times of that was expressed in single copy. These results established a solid foundation for increasing the added value of L-glutamate and the biosynthesis of GABA.


Assuntos
Escherichia coli/genética , Glutamato Descarboxilase/genética , Ácido gama-Aminobutírico/genética , Fermentação/genética , Cinética , Lactobacillus/genética , Fosfato de Piridoxal/genética , Temperatura
11.
Enzyme Microb Technol ; 136: 109513, 2020 May.
Artigo em Inglês | MEDLINE | ID: mdl-32331718

RESUMO

L-Phenylglycine (L-PHG) is a member of unnatural amino acids, and becoming more and more important as intermediate for pharmaceuticals, food additives and agrochemicals. However, the existing synthetic methods for L-PHG mainly rely on toxic cyanide chemistry and multistep processes. To provide green, safe and high enantioselective alternatives, we envisaged cascade biocatalysis for the one-pot synthesis of L-PHG from racemic mandelic acid. A engineered E. coli strain was established to co-express mandelate racemase, D-mandelate dehydrogenase and L-leucine dehydrogenase and catalyze a 3-step reaction in one pot, enantioselectively transforming racemic mandelic acid to give L-PHG (e.e. >99 %). After the conditions for biosynthesis of L-PHG optimized by response surface methodology, the yield and space-time yield of L-PHG can reach 87.89 % and 79.70 g·L-1·d-1, which was obviously improved. The high-yielding and enantioselective synthetic methods use cheap and green reagents, and E. coli whole-cell catalysts, thus providing green and useful alternative methods for manufacturing L-PHG.


Assuntos
Glicina/análogos & derivados , Microbiologia Industrial/métodos , Ácidos Mandélicos/metabolismo , Proteínas de Bactérias/metabolismo , Biocatálise , Escherichia coli/genética , Escherichia coli/metabolismo , Glicina/biossíntese , Cinética , Plasmídeos/genética , Estereoisomerismo
12.
J Agric Food Chem ; 67(10): 2946-2953, 2019 Mar 13.
Artigo em Inglês | MEDLINE | ID: mdl-30807132

RESUMO

Phenylglyoxylic acid (PGA) are key building blocks and widely used to synthesize pharmaceutical intermediates or food additives. However, the existing synthetic methods for PGA generally involve toxic cyanide and complex processes. To explore an alternative method for PGA biosynthesis, we envisaged cascade biocatalysis for the one-pot synthesis of PGA from racemic mandelic acid. A novel mandelate racemase named ArMR showing higher expression level (216.9 U·mL-1 fermentation liquor) was cloned from Agrobacterium radiobacter and identified, and six recombinant Escherichia coli strains were engineered to coexpress three enzymes of mandelate racemase, d-mandelate dehydrogenase and l-lactate dehydrogenase, and transform racemic mandelic acid to PGA. Among them, the recombinant E. coli TCD 04, engineered to coexpress three enzymes of ArMR, LhDMDH, and LhLDH, can transform racemic mandelic acid (100 mM) to PGA with 98% conversion. Taken together, we provide a green approach for one-pot biosynthesis of PGA from racemic mandelic acid.


Assuntos
Escherichia coli/metabolismo , Glioxilatos/metabolismo , Ácidos Mandélicos/metabolismo , Agrobacterium tumefaciens/enzimologia , Proteínas de Bactérias/genética , Proteínas de Bactérias/metabolismo , Escherichia coli/genética , Cinética , L-Lactato Desidrogenase/genética , L-Lactato Desidrogenase/metabolismo , Lactobacillus helveticus/enzimologia , Lactobacillus helveticus/genética , Ácidos Mandélicos/química , Engenharia Metabólica , Racemases e Epimerases/genética , Racemases e Epimerases/metabolismo
13.
Sheng Wu Gong Cheng Xue Bao ; 34(6): 897-905, 2018 Jun 25.
Artigo em Chinês | MEDLINE | ID: mdl-29943535

RESUMO

Racemases have been applied for the synthesis of enantiomerically pure compounds through the deracemization methods. Mandelate racemase from Pseudomonas putida was the only enzyme that catalyzes the interconversion of mandelate enantiomers. Using genome mining approaches, we identified 9 mandelate racemases (MRs). A novel racemase named ArMR with higher activity and better soluble protein expression, was isolated from Agrobacterium radiobacter. ArMR displayed the optimum catalytic activity at 50 ℃, pH 7.8 in Tris-HCl buffer. The half-life of ArMR at 50, 40 and 30 ℃ was 0.17, 27.2 and 70.7 h, respectively. KM parameter of ArMR towards (R)- and (S)-mandelic acid was 1.44 and 0.81 mmol/L, respectively; the corresponding kcat value was 410 s⁻¹ and 218 s⁻¹. In addition, KM of ArMR towards (R)- and (S)-2-chloro mandelic acid was 6.48 and 6.37 mmol/L, and the corresponding kcat value 0.22 s⁻¹ and 0.23 s⁻¹, respectively. Meanwhile, Mg²âº and Mn²âº could activate the enzyme whereas Zn²âº inactivated the enzyme completely. Discovery of more novel MRs provides supports further research and development of these racemases.


Assuntos
Agrobacterium tumefaciens/enzimologia , Proteínas de Bactérias/genética , Racemases e Epimerases/genética , Agrobacterium tumefaciens/genética , Catálise , Cinética , Magnésio , Especificidade por Substrato , Zinco
14.
J Agric Food Chem ; 66(11): 2805-2811, 2018 Mar 21.
Artigo em Inglês | MEDLINE | ID: mdl-29460618

RESUMO

d-Mandelate dehydrogenase (DMDH) has the potential to convert d-mandelic acid to phenylglyoxylic acid (PGA), which is a key building block in the field of chemical synthesis and is widely used to synthesize pharmaceutical intermediates or food additives. A novel NAD+-dependent d-mandelate dehydrogenase was cloned from Lactobacillus harbinensi (LhDMDH) by genome mining and expressed in Escherichia coli BL21. After being purified to homogeneity, the oxidation activity of LhDMDH toward d-mandelic acid was approximately 1200 U·mg-1, which was close to four times the activity of the probe. Meanwhile, the kcat/ Km value of LhDMDH was 28.80 S-1·mM-1, which was distinctly higher than the probe. By coculturing two E. coli strains expressing LhDMDH and LcLDH, we developed a system for the efficient synthesis of PGA, achieving a 60% theoretical yield and 99% purity without adding coenzyme or cosubstrate. Our data supports the implementation of a promising strategy for the chiral resolution of racemic mandelic acid and the biosynthesis of PGA.


Assuntos
Oxirredutases do Álcool/metabolismo , Proteínas de Bactérias/metabolismo , Glioxilatos/metabolismo , Lactobacillus/enzimologia , Ácidos Mandélicos/metabolismo , Oxirredutases do Álcool/química , Oxirredutases do Álcool/genética , Proteínas de Bactérias/química , Proteínas de Bactérias/genética , Biocatálise , Cinética , Lactobacillus/química , Lactobacillus/genética
15.
J Agric Food Chem ; 65(45): 9861-9870, 2017 Nov 15.
Artigo em Inglês | MEDLINE | ID: mdl-29058432

RESUMO

To provide more options for the stereoselective hydrolysis of epoxides, an epoxide hydrolase (VrEH3) gene from Vigna radiata was cloned and expressed in Escherichia coli. Recombinant VrEH3 displayed the maximum activity at pH 7.0 and 45 °C and high stability at pH 4.5-7.5 and 55 °C. Notably, reVrEH3 exhibited high and complementary regioselectivity toward styrene oxides 1a-3a and high enantioselectivity (E = 48.7) toward o-cresyl glycidyl ether 9a. To elucidate these interesting phenomena, the interactions of the three-dimensional structure between VrEH3 and enantiomers of 1a and 9a were analyzed by molecular docking simulation. Using E. coli/vreh3 whole cells, gram-scale preparations of (R)-1b and (R)-9a were performed by enantioconvergent hydrolysis of 100 mM rac-1a and kinetic resolution of 200 mM rac-9a in the buffer-free water system at 25 °C. These afforded (R)-1b with >99% eep and 78.7% overall yield after recrystallization and (R)-9a with >99% ees, 38.7% overall yield, and 12.7 g/L/h space-time yield.


Assuntos
Epóxido Hidrolases/química , Epóxido Hidrolases/metabolismo , Compostos de Epóxi/química , Proteínas de Plantas/química , Proteínas de Plantas/metabolismo , Vigna/enzimologia , Estabilidade Enzimática , Epóxido Hidrolases/genética , Compostos de Epóxi/metabolismo , Hidrólise , Cinética , Simulação de Acoplamento Molecular , Proteínas de Plantas/genética , Estereoisomerismo , Especificidade por Substrato , Vigna/química , Vigna/genética
16.
Enzyme Microb Technol ; 93-94: 99-104, 2016 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-27702490

RESUMO

Two novel glycosyl hydrolase family 5 (GH5) ß-mannanases (AoMan5A and AoMan5B) were identified from Aspergillus oryzae RIB40 by genome mining. The AoMan5A contains a predicted family 1 carbohydrate binding module (CBM-1), located at its N-terminal. The AoMan5A, AoMan5B and truncated mutant AoMan5AΔCL (truncating the N-terminal CBM and linker of AoMan5A) were expressed retaining the N-terminus of the native protein in Pichia pastoris GS115 by pPIC9KM. The specific enzyme activity of the purified reAoMan5A, reAoMan5B and reAoMan5AΔCL towards locust bean gum at pH 3.6 and 40°C for 10min, was 8.3, 104.2 and 15.8U/mg, respectively. The temperature properties of the reAoMan5AΔCL were improved by truncating CBM. They can degrade the pretreated konjac flour and produce prebiotics. In addition, they had excellent stability under simulative gastric fluid and simulative prilling process. All these properties make these recombinant ß-mannanases potential additives for use in the food and feed industries.


Assuntos
Aspergillus oryzae/enzimologia , Aspergillus oryzae/genética , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Manosidases/genética , Manosidases/metabolismo , Motivos de Aminoácidos , Amorphophallus , Ração Animal , Animais , Clonagem Molecular , Estabilidade Enzimática , Aditivos Alimentares , Galactanos , Genoma Fúngico , Hidrólise , Mananas/metabolismo , Manosidases/química , Pichia/genética , Gomas Vegetais , Prebióticos , Proteínas Recombinantes/química , Proteínas Recombinantes/genética , Proteínas Recombinantes/metabolismo , Especificidade por Substrato
17.
J Ind Microbiol Biotechnol ; 42(5): 671-80, 2015 May.
Artigo em Inglês | MEDLINE | ID: mdl-25733186

RESUMO

The full-length cDNA sequence of Aueh2, a gene encoding an epoxide hydrolase of Aspergillus usamii E001 (abbreviated to AuEH2), was amplified from the total RNA. Synchronously, the complete DNA sequence containing 5', 3' flanking regions, eight exons and seven introns was cloned from the genomic DNA. In addition, a cDNA fragment of Aueh2 encoding a 395-aa AuEH2 was expressed in Escherichia coli. The catalytic activity of recombinant AuEH2 (re-AuEH2) was 1.44 U/ml using racemic styrene oxide (SO) as the substrate. The purified re-AuEH2 displayed the maximum activity at pH 7.0 and 35 °C. It was highly stable at a pH range of 5.0-7.5, and at 40 °C or below. Its activity was not obviously influenced by ß-mercaptoethanol, EDTA and most of metal ions tested, but was inhibited by Hg(2+), Sn(2+), Cu(2+), Fe(3+) and Zn(2+). The K m and V max of re-AuEH2 were 5.90 mM and 20.1 U/mg towards (R)-SO, while 7.66 mM and 3.19 U/mg towards (S)-SO. Its enantiomeric ratio (E) for resolution of racemic SO was 24.2 at 10 °C. The experimental result of re-AuEH2 biasing towards (R)-SO was consistent with the analytical one by molecular docking (MD) simulation.


Assuntos
Aspergillus/enzimologia , Aspergillus/genética , Epóxido Hidrolases/genética , Epóxido Hidrolases/metabolismo , Compostos de Epóxi/química , Compostos de Epóxi/metabolismo , Escherichia coli/genética , Escherichia coli/metabolismo , Clonagem Molecular , Concentração de Íons de Hidrogênio , Simulação de Acoplamento Molecular , Estereoisomerismo , Temperatura
18.
Sheng Wu Gong Cheng Xue Bao ; 30(3): 425-34, 2014 Mar.
Artigo em Chinês | MEDLINE | ID: mdl-25007578

RESUMO

To express feruloyl esterase A from Aspergillus oryzae in Pichia pastoris expression system and study its hydrolysis function, explore the conditions and effects of purification for ferulic acid extracts by macroporos resin. Using the total RNA from A. oryzae CICC 40186 as the template, we amplified coding sequence AorfaeA encoding a mature feruloyl esterase A (AorFaeA) by RT-PCR technique. Then, the coding sequence AorfaeA was successfully expressed in Pichia pastoris GS115 mediated by an expression plasmid pPIC9K. The purified recombinant AorFaeA (reAorFaeA) showed one single band on SDS-PAGE with an apparent molecular weight of 39.0 kDa. The maximum activity of reAorFaeA to methyl ferulate, measured by high-performance liquid chromatography (HPLC), was 58.35 U/mg. Then, reAorFaeA was used to release ferulic acid from de-starched wheat bran in the presence of xylanase. The purification tests for ferulic acid from the enzymatic hydrolysate were carried out with preselected macroporous resins. The results showed that macroporous resin HPD-300 had much higher adsorption and desorption capacities. Ferulic acid could be quantitatively recovered by 50% of the eluent concentration at a flow speed of 1 mL/min. Under the purification condition, the recovery ratio of ferulic acid was 92%, and the content of ferulic acid was increased from 0.13% in the raw material to 10.55%. This work exploits the breakdown of ferulic acid by recombinant enzymeand provids a good strategy to its "green production".


Assuntos
Aspergillus oryzae/enzimologia , Hidrolases de Éster Carboxílico/biossíntese , Ácidos Cumáricos/química , Pichia/metabolismo , Hidrolases de Éster Carboxílico/genética , Clonagem Molecular , Eletroforese em Gel de Poliacrilamida , Hidrólise , Peso Molecular , Pichia/genética
19.
Protein Pept Lett ; 21(7): 657-62, 2014 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-24693954

RESUMO

A comparison between three-dimensional structures of a wild-type xylanase AoXyn11A and a hybrid xylanase AEx11A revealed that a disulfide bridge (Cys(5)-Cys(32)) and an N-glycosylation site (Asn(42)) were imported into AEx11A by N-terminal substitution of AoXyn11A with EvXyn11(TS). Two mutant genes AEx11A(C5T) and AEx11A(N42Q) were constructed by mutating Cys(5)- and Asn(42)-encoding codons of AEx11A into Thr(5)- and Gln(42)-encoding ones, and heterologously expressed in Pichia pastoris GS115, respectively. The temperature optimum of the recombinant AEx11A(C5T) (reAEx11A(C5T)) was decreased to 60°C from 80°C of reAEx11A, while its thermal inactivation half-lives at 70 and 80°C shortened to 3 and 1 min from 197 and 25 min of reAEx11A, respectively. However, there was no obvious alteration between reAEx11A and reAEx11A(C5T) in pH characteristics and kinetic parameters. Furthermore, both reAEx11A(N42Q) and reAEx11A displayed no significant difference in all enzymatic properties tested, except for the apparent molecular weight. We concluded based on this study that the disulfide bridge of AEx11A was vital to its high thermostability, but the N-glycosylation had no effect on.


Assuntos
Endo-1,4-beta-Xilanases/química , Proteínas Recombinantes/química , Dissulfetos/química , Endo-1,4-beta-Xilanases/genética , Endo-1,4-beta-Xilanases/metabolismo , Estabilidade Enzimática , Glicosilação , Temperatura Alta , Modelos Moleculares , Mutagênese Sítio-Dirigida , Pichia/genética , Pichia/metabolismo , Proteínas Recombinantes/genética , Proteínas Recombinantes/metabolismo
20.
J Ind Microbiol Biotechnol ; 41(4): 693-700, 2014 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-24493565

RESUMO

ß-Mannanases (EC 3.2.1.78) can catalyze the cleavage of internal ß-1,4-D-mannosidic linkages of mannan backbones, and they have found applications in food, feed, pulp and paper, oil, pharmaceutical and textile industries. Suitable amino acid substitution can promote access to the substrate-binding groove and maintain the substrate therein, which probably improves the substrate affinity and, thus, increases catalytic efficiency of the enzyme. In this study, to improve the substrate affinity of AuMan5A, a glycoside hydrolase (GH) family 5 ß-mannanase from Aspergillus usamii, had its directed modification conducted by in silico design, and followed by site-directed mutagenesis. The mutant genes, Auman5A (Y111F) and Auman5A (Y115F), were constructed by megaprimer PCR, respectively. Then, Auman5A and its mutant genes were expressed in Pichia pastoris GS115 successfully. The specific activities of purified recombinant ß-mannanases (reAuMan5A, reAuMan5A(Y111F) and reAuMan5A(Y115F)) towards locust bean gum were 152.5, 199.6 and 218.9 U mg(-1), respectively. The two mutants were found to be similar to reAuMan5A regarding temperature and pH characteristics. Nevertheless, the K m values of reAuMan5A(Y111F) and reAuMan5A(Y115F), towards guar gum, decreased to 2.95 ± 0.22 and 2.39 ± 0.33 mg ml(-1) from 4.49 ± 0.07 mg ml(-1) of reAuMan5A, which would make reAuMan5A(Y111F) and reAuMan5A(Y115F) promising candidates for industrial processes. Structural analysis showed that the two mutants increased their affinity by decreasing the steric conflicts with those more complicated substrates. The results suggested that subtle conformational modification in the substrate-binding groove could substantially alter the substrate affinity of AuMan5A. This study laid a solid foundation for the directed modification of substrate affinities of ß-mannanases and other enzymes.


Assuntos
Aspergillus/enzimologia , beta-Manosidase/química , beta-Manosidase/genética , Aspergillus/genética , Simulação por Computador , Mananas/metabolismo , Mutagênese Sítio-Dirigida , Pichia/genética , Pichia/metabolismo , Ligação Proteica , Temperatura , beta-Manosidase/metabolismo
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