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1.
Biosci Biotechnol Biochem ; 87(12): 1495-1504, 2023 Nov 21.
Artigo em Inglês | MEDLINE | ID: mdl-37742308

RESUMO

Isomaltooligosaccharides (IMOs), including isomaltose, are valuable oligosaccharides, and the development of methods to synthesize high-purity IMOs has long been underway. We recently discovered a novel enzyme, 4-O-α-d-isomaltooligosaccharylmaltooligosaccharide 1,4-α-isomaltooligosaccharohydrolase (IMM-4IH), that showed promise for improving the synthesis process. In this study, we establish methods for synthesizing isomaltose and IMOs consisting of a variety of degrees of polymerization from starch using IMM-4IH. With 5% substrate, by combining IMM-4IH with 1,4-α-glucan 6-α-glucosyltransferase from Bacillus globisporus N75, the yield of isomaltose was 63.0%; incorporating isoamylase and cyclomaltodextrin glucanotransferase increased the yield to 75.3%. On the other hand, by combining IMM-4IH with 1,4-α-glucan 6-α-glucosyltransferase from Paenibacillus sp. PP710, IMOs were synthesized. The inclusion of isoamylase and α-amylase led to the 136 mM IMOs, consisting of oligosaccharides from isomaltose to isomaltodecaose, from 10% starch. The development of these efficient methods will be an important contribution to the industrial production of IMOs.


Assuntos
Isoamilase , Isomaltose , Oligossacarídeos , Glucanos , Amido
2.
J Agric Food Chem ; 71(30): 11544-11554, 2023 Aug 02.
Artigo em Inglês | MEDLINE | ID: mdl-37463425

RESUMO

Debranching enzymes (DBEs) directly hydrolyze α-1,6-glucosidic linkages in glycogen, starch, and related polysaccharides, making them important in the starch processing industry. However, the ambiguous substrate specificity usually restricts synergistic catalysis with other amylases for improving starch utilization. Herein, a glycogen-debranching enzyme from Saccharolobus solfataricus (SsGDE) and two isoamylases from Pseudomonas amyloderamosa (PaISO) and Chlamydomonas reinhardtii (CrISO) were used to investigate the molecular mechanism of substrate specificity. Along with the structure-based computational analysis, the aromatic residues in the substrate-binding region of DBEs played an important role in binding substrates. The aromatic residues in SsGDE appeared clustered, contributing to a small substrate-binding region. In contrast, the aromatic residues in isoamylase were distributed dispersedly, forming a large active site. The distinct characteristics of substrate-binding regions in SsGDE and isoamylase might explain their substrate preferences for maltodextrin and amylopectin, respectively. By modulating the substrate-binding region of SsGDE, variants Y323F and V375F were obtained with significantly enhanced activities, and the activities of Y323F and V375F increased by 30 and 60% for amylopectin, and 20 and 23% for DE4 maltodextrin, respectively. This study revealed the molecular mechanisms underlying the substrate specificity for SsGDE and isoamylases, providing a route for engineering enzymes to achieve higher catalytic performance.


Assuntos
Sistema da Enzima Desramificadora do Glicogênio , Isoamilase , Isoamilase/metabolismo , Amilopectina/metabolismo , Especificidade por Substrato , Amido/química , Glicogênio/metabolismo , Sistema da Enzima Desramificadora do Glicogênio/química
3.
Appl Microbiol Biotechnol ; 107(4): 1233-1241, 2023 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-36688952

RESUMO

In this study, site saturation mutagenesis was performed on the - 3 (R44, D86, S90, and D192) and - 6 subsite (Y163, G175, G176, and N189) of Bacillus stearothermophilus NO2 cyclodextrin glucosyltransferase to enhance its specificity for the donor substrate maltodextrin for 2-O-α-D-glucopyranosyl-L-ascorbic acid (AA-2G) preparation. The AA-2G yields produced by the mutants S90D, G176H, and S90D/G176H were 181, 171, and 185 g/L, respectively. Our previous study found that the mutant K228R/M230L also increased the AA-2G yield. Therefore, the mutants S90D, G176H, S90D/G176H, and K228R/M230L were further used to generate combinatorial mutants. Among these mutants, the highest AA-2G yield (217 g/L) was produced by S90D/K228R/M230L with 500 g/L maltodextrin as the glucosyl donor, which was 56 g/L higher than that produced by wild-type CGTase. In addition, AA-2G was prepared by adding isoamylase to hydrolyze α-1,6 glucosidic linkages in maltodextrin that could not be utilized by CGTase to improve the utilization rate of maltodextrin. The addition of isoamylase reduced the concentration of maltodextrin from 500 to 350 g/L, while the AA-2G yield remained high (208 g/L). The preparation of AA-2G by complexing isoamylase with mutant S90D/K228R/M230L reduced the maltodextrin concentration by 150 g/L, while the AA-2G yield increased by 47 g/L than preparation with wild-type CGTase alone, which laid a foundation for the large-scale preparation of AA-2G. KEY POINTS: • Mutants exhibited improved maltodextrin specificity. • Mutant S90D/K228R/M230L produced high yield of AA-2G with maltodextrin as substrate. • AA-2G was first synthesized by a combination of isoamylase and CGTase.


Assuntos
Isoamilase , Paenibacillus , Mutagênese Sítio-Dirigida , Glucosiltransferases/genética , Glucosiltransferases/metabolismo , Cinética , Paenibacillus/genética , Especificidade por Substrato , Ácido Ascórbico
4.
Plant Mol Biol ; 108(4-5): 497-512, 2022 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-35083581

RESUMO

KEY MESSAGE: Mutation of the BEIIb gene in an isa1 mutant background mitigates the negative effect of the ISA1 mutation on grain filling, and facilitates recovery of amyloplast formation in rice endosperm. In this study, the effect of branching enzyme IIb and isoamylase 1 deficiency on starch properties was demonstrated using high resistant starch rice lines, Chikushi-kona 85 and EM129. Both lines harbored a mutation in the BEIIb and ISA1 genes and showed no BEIIb and ISA1 activity, implying that both lines are beIIb isa1 double mutants. The amylopectin long chain and apparent amylose content of both mutant lines were higher than those of the wild-type. While both mutants contained loosely packed, round starch grains, a trait specific to beIIb mutants, they also showed collapsed starch grains at the center of the endosperm, a property specific to isa1 mutants. Furthermore, beIIb isa1 double mutant F2 lines derived from a cross between Chikushi-kona 85 and Nishihomare (wild-type cultivar) showed significantly heavier seed weight than the beIIb and isa1 single mutant lines. These results suggest that co-occurrence of beIIb and isa1 mutant alleles in a single genetic background mitigates the negative effect of the isa1 allele on grain filling, and contributes to recovery of the amyloplast formation defect in the isa1 single mutant.


Assuntos
Enzima Ramificadora de 1,4-alfa-Glucana/genética , Isoamilase/genética , Oryza/genética , Plastídeos/fisiologia , Enzima Ramificadora de 1,4-alfa-Glucana/metabolismo , Grão Comestível , Genótipo , Isoamilase/metabolismo , Mutação , Oryza/enzimologia , Oryza/metabolismo
5.
Int J Mol Sci ; 24(1)2022 Dec 22.
Artigo em Inglês | MEDLINE | ID: mdl-36613634

RESUMO

Isoamylase (ISA) is a debranching enzyme found in many plants, which hydrolyzes (1-6)-α-D glucosidic linkages in starch, amylopectin, and ß-dextrins, and is thought to be responsible for starch granule formation (ISA1 and ISA2) and degradation (ISA3). Lipid-modified PEI (lmPEI) was synthesized as a carrier for long double-stranded RNA (dsRNA, 250-bp), which targets the three isoamylase isoforms. The particles were applied to the plant via the foliar spray and were differentially effective in suppressing the expressions of ISA1 and ISA2 in the potato leaves, and ISA3 in the tubers. Plant growth was not significantly impaired, and starch levels in the tubers were not affected as well. Interestingly, the treated plants had significantly smaller starch granule sizes as well as increased sucrose content, which led to an early sprouting phenotype. We confirm the proposal of previous research that an increased number of small starch granules could be responsible for an accelerated turnover of glucan chains and, thus, the rapid synthesis of sucrose, and we propose a new relationship between ISA3 and the starch granule size. The implications of this study are in achieving a transgenic phenotype for endogenous plant genes using a systemic, novel delivery system, and foliar applications of dsRNA for agriculture.


Assuntos
Isoamilase , Solanum tuberosum , Isoamilase/genética , Isoamilase/metabolismo , Solanum tuberosum/genética , Solanum tuberosum/metabolismo , RNA de Cadeia Dupla/genética , Amido/metabolismo , Fenótipo , Sacarose , Plantas Geneticamente Modificadas/genética , Plantas Geneticamente Modificadas/metabolismo
6.
Plant Mol Biol ; 108(4-5): 325-342, 2022 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-34287741

RESUMO

KEY MESSAGE: Introduction of higher SSIIa activity to mild-type isa1 mutant by crossing results in restoration of crystallinity, starch granule structure, and production of plump seeds. Isoamylase 1 (ISA1) removes improper α-1, 6 glycosidic branches of amylopectin generated by starch branching enzymes and is essential for the formation of proper amylopectin structure. Rice isa1 (sug-1) mutants in japonica cultivar with less-active starch synthase IIa (SSIIa) and low granule-bound SSI (GBSSI) expression display wrinkled seed phenotype by accumulating water-soluble phytoglycogen instead of insoluble amylopectin. Expression of active SSIIa in transgenic rice produced with a severe-type isa1 mutant accumulated some insoluble glucan with weak B-type crystallinity at the periphery of seeds but their seeds remained wrinkled. To see whether introduction of high levels of SSIIa and/or GBSSI can restore the grain filling of the mild-type sug-1 mutant (EM653), new rice lines (SS2a gbss1L isa1, ss2aL GBSS1 isa1, and SS2a GBSS1 isa1) were generated by crossing japonica isa1 mutant (ss2aL gbss1L isa1) with wild type indica rice (SS2a GBSS1 ISA1). The results showed that SS2a gbss1L isa1 and SS2a GBSS1 isa1 lines generated chalky plump seeds accumulating insoluble amylopectin-like glucans with an increase in DP 13-35, while ss2aL GBSS1 isa1 generated wrinkly seeds and accumulated soluble glucans enriched with DP < 13. Scanning electron microscopic observation of cross-section of the seeds showed that SS2a gbss1L isa1 and SS2a GBSS1 isa1 produced wild type-like polygonal starch granules. These starches showed the A-type crystallinity comparable to the wild type, while the japonica isa1 mutant and the transgenic rice do not show any or little crystallinity, respectively. These results indicate that introduction of higher SSIIa activity can mostly complements the mild-type sug-1 phenotype.


Assuntos
Endosperma/enzimologia , Oryza/enzimologia , Proteínas de Plantas/metabolismo , Sintase do Amido/metabolismo , Cruzamentos Genéticos , Regulação Viral da Expressão Gênica , Isoamilase/genética , Oryza/genética , Fenótipo , Melhoramento Vegetal , Proteínas de Plantas/genética , Sintase do Amido/genética , Açúcares/metabolismo
7.
J Genet ; 1002021.
Artigo em Inglês | MEDLINE | ID: mdl-34608872

RESUMO

Low temperature (LT) causes significant yield losses in chickpea (Cicer arietinum L.). The sucrose starch metabolism is associated with abiotic-stress tolerance or sensitivity in plants. The changes in sugars and starch contents under LT in chickpea have already been studied, however, no information is available on LT-induced alterations in transcription of carbohydrate metabolic pathway genes in chickpea. To understand the differences in the regulation of sucrose and starch metabolism under LT, the expression of sucrose and starch metabolism genes was studied in leaves of cold-sensitive (GPF2) and cold-tolerant (ICC 16349) chickpea genotypes. The mRNA sequences of chickpea genes were retrieved from the public databases followed by confirmation of identity and characterization. All the genes were functional in chickpea. Between the two paralogues of cell wall invertase, cell wall invertase 3×2 (CWINx2) was the truncated version of cell wall invertase 3×1 (CWINx1) with the loss of 241 bases in the mRNA and 67 amino acids at N terminal of the protein. Comparison of expression of the genes between control (22°C day / 16°C night) and LT treated (4°C; 72 h) plants revealed that granule bound starch synthase 2 (GBSS2) and ß-amylase 3 (BAM3) were upregulated in ICC 16349 whereas sucrose phosphate synthase 2 (SPS2), CWINx1, CWINx2 and ß-amylase 1 (BAM1) were downregulated. In contrast to this, SPS2, CWINx1, CWINx2 and BAM1 were upregulated and GBSS2 downregulated in GPF2 under LT. The gene expression data suggested that UGPase, CWINs, GBSS2 and BAM3 are important components of cold-tolerance machinery of chickpea.


Assuntos
Cicer/genética , Proteínas de Plantas/genética , Amido/metabolismo , Sacarose/metabolismo , Cicer/metabolismo , Cicer/fisiologia , Temperatura Baixa , Regulação da Expressão Gênica de Plantas , Genótipo , Glucose-1-Fosfato Adenililtransferase/genética , Glucose-1-Fosfato Adenililtransferase/metabolismo , Glucosiltransferases/genética , Glucosiltransferases/metabolismo , Isoamilase/genética , Isoamilase/metabolismo , Proteínas de Plantas/metabolismo , RNA Mensageiro , Amido/genética , Sintase do Amido/genética , Sintase do Amido/metabolismo
8.
Sheng Wu Gong Cheng Xue Bao ; 37(4): 1415-1424, 2021 Apr 25.
Artigo em Chinês | MEDLINE | ID: mdl-33973454

RESUMO

Coupling sugar is a kind of new sweetener which can substitute sucrose. It has a good application prospect in food, medicine and other fields because of its good coloration, water retention and anti caries. The purpose of this study was to find cheap and easily available donor and acceptor, and to optimize the preparation process of coupling sugar by using ß-cyclodextrin glycosyltransferase from Bacilluscirculans 251. Using sucrose as acceptor, the factors of preparing coupling sugar was optimized, including enzyme dosage, starch types, temperature, pH, ratio of starch/sucrose, and cooperation of isoamylase and ß-CGTase. When 105 g/L potato starch and 95 g/L sucrose was used as substrates, the yield of coupling sugar reached 88.4%, which was catalyzed by 13.5 U/g immobilized ß-CGTase and 45.0 U/g isoamylase under the conditions of pH 5.5 and 40 °C for 21 h. In this study, isoamylase and ß-CGTase were used to prepare coupling sugar innovatively. This method had obvious advantages in yield and cost, which laid both theoretical and experimental foundation for the industrial enzymatic preparation of coupling sugars.


Assuntos
Glucosiltransferases , Isoamilase , Concentração de Íons de Hidrogênio , Amido
9.
Acta sci., Biol. sci ; 43: e54966, 2021. tab, graf
Artigo em Inglês | LILACS, VETINDEX | ID: biblio-1460983

RESUMO

Many food, cosmetic and pharmaceutical industries have increased their interest in short-chain esters due to their flavor properties. From the industrial standpoint, enzyme reactions are the most economical strategy to reach green products with neither toxicity nor damage to human health. Isoamyl butyrate (pear flavor) was synthesized by isoamyl alcohol (a byproduct of alcohol production) and butyric acid with the use of the immobilized lipase Lipozyme TL IM and hexane as solvents. Reaction variables (temperature, butyric acid concentration, isoamyl alcohol:butyric acid molar ratio and enzyme concentration) were investigated in ester conversion (%), concentration (mol L-1) and productivity (mmol ester g-1 mixture . h), by applying a sequential strategy of the Fractional Factorial Design (FFD) and the Central Composite Rotatable Design (CCRD). High isoamyl butyrate conversion of 95.8% was achieved at 24 hours. At 3 hours, the highest isoamyl butyrate concentration (1.64 mol L-1) and productivity (0.19 mmol ester g-1 mixture . h) were obtained under different reaction conditions. Due to high specificity and selectivity of lipases, process parameters of this study and their interaction with the Lipozyme TL IM are fundamental to understand and optimize the system so as to achieve maximum yield to scale up. Results show that fusel oil may be recycled by the green chemistry process proposed by this study.


Assuntos
Ativação Enzimática , Butiratos/administração & dosagem , Butiratos/análise , Isoamilase , Otimização de Processos/análise
10.
Chinese Journal of Biotechnology ; (12): 1415-1424, 2021.
Artigo em Chinês | WPRIM (Pacífico Ocidental) | ID: wpr-878643

RESUMO

Coupling sugar is a kind of new sweetener which can substitute sucrose. It has a good application prospect in food, medicine and other fields because of its good coloration, water retention and anti caries. The purpose of this study was to find cheap and easily available donor and acceptor, and to optimize the preparation process of coupling sugar by using β-cyclodextrin glycosyltransferase from Bacilluscirculans 251. Using sucrose as acceptor, the factors of preparing coupling sugar was optimized, including enzyme dosage, starch types, temperature, pH, ratio of starch/sucrose, and cooperation of isoamylase and β-CGTase. When 105 g/L potato starch and 95 g/L sucrose was used as substrates, the yield of coupling sugar reached 88.4%, which was catalyzed by 13.5 U/g immobilized β-CGTase and 45.0 U/g isoamylase under the conditions of pH 5.5 and 40 °C for 21 h. In this study, isoamylase and β-CGTase were used to prepare coupling sugar innovatively. This method had obvious advantages in yield and cost, which laid both theoretical and experimental foundation for the industrial enzymatic preparation of coupling sugars.


Assuntos
Glucosiltransferases , Concentração de Íons de Hidrogênio , Isoamilase , Amido
11.
Carbohydr Polym ; 250: 116828, 2020 Dec 15.
Artigo em Inglês | MEDLINE | ID: mdl-33049808

RESUMO

This study uses sunflower hulls, a by-product from the sunflower snack industry, to recover both, valuable phenolic compounds and cellulose fibers, for the production of antioxidant reinforced starch films as potential food packaging material. The phenolic extract provided antioxidant properties to the films with EC50 values of 89 mg film/mg DPPH. The cellulose fibers reinforced the starch films with a threefold increase in Young´s modulus. Furthermore, citric acid was added to induce cross-linking of the starch polymers and improve film integrity. The addition of citric acid induced both, starch polymer hydrolysis and cross-linking, seen in a shift in chain-length distribution after debranching with iso-amylase. This is the first study that focuses on a three-principle approach to improve edible starch films, and follows UN goals on sustainability to reduce waste and increase value in by-products as a step forward to functionalize packaging material.


Assuntos
Antioxidantes/química , Reagentes de Ligações Cruzadas/química , Embalagem de Alimentos/métodos , Embalagem de Alimentos/normas , Helianthus/química , Extratos Vegetais/química , Amido/química , Ácido Cítrico/química , Isoamilase/metabolismo , Fenóis/química
12.
Carbohydr Polym ; 247: 116681, 2020 Nov 01.
Artigo em Inglês | MEDLINE | ID: mdl-32829809

RESUMO

Two high amylose (HAM) inbred lines with apparent amylose contents of 55 % and 62 %, respectively, were selected to explore the relationship between molecular structure and gene expression of starch-synthase involved enzymes. GPC analysis of debranched starches showed that the HAM starches (HAMSs) had shorter amylose chains and longer amylopectin chains than normal maize starch (NMS). FACE analysis showed that these HAMSs had a higher content of amylopectin chains of DP > 21. Quantitative Real-Time PCR analysis showed that the HAM lines had specifically low expression of the starch branching enzyme IIb (SBEIIb), and the starch synthase IIIa (SSIIIa) homologue, and high expression of the isoamylase 2 (ISA2), potentially suppressing the generation of amylopectin molecules through deficient branching and excessive debranching process, thereby increasing the relative amylose content. A high expression of GBSS1 was potentially associated with increased short amylose chain lengths in HAMSs.


Assuntos
Amilose/química , Sintase do Amido/genética , Sintase do Amido/metabolismo , Amido/biossíntese , Amido/química , Zea mays/química , Enzima Ramificadora de 1,4-alfa-Glucana/metabolismo , Amilopectina/análise , Amilopectina/química , Metabolismo dos Carboidratos , Cromatografia em Gel , Eletroforese/métodos , Isoamilase/metabolismo , Estrutura Molecular , Amido/análise , Zea mays/metabolismo
13.
Biotechnol Bioeng ; 117(10): 2957-2968, 2020 10.
Artigo em Inglês | MEDLINE | ID: mdl-32589796

RESUMO

Secretory production of recombinant proteins provides a simple approach to the production and purification of target proteins in the enzyme industry. We developed a combined strategy for the secretory production of three large-size heterologous enzymes with a special focus on 83-kDa isoamylase (IA) from an archaeon Sulfolobus tokodaii in a bacterium Bacillus subtilis. First, a secretory protein of the B. subtilis family 5 glycoside hydrolase endoglucanase (Cel5) was used as a fusion partner, along with the NprB signal peptide, to facilitate secretory production of IA. This secretory partner strategy was effective for the secretion of two other large enzymes: family 9 glycoside hydrolase from Clostridium phytofermentas and cellodextrin phosphorylase from Clostridium thermocellum. Second, the secretion of Cel5-IA was improved by directed evolution with two novel double-layer Petri-dish-based high-throughput screening (HTS) methods. The high-sensitivity HTS relied on the detection of high-activity Cel5 on the carboxymethylcellulose/Congo-red assay. The second modest-sensitivity HTS focused on the detection of low-activity IA on the amylodextrin-I2 assay. After six rounds of HTS, a secretory Cel5-IA level was increased to 234 mg/L, 155 times the wild-type IA with the NprB signal peptide only. This combinatory strategy could be useful to enhance the secretory production of large-size heterologous proteins in B. subtilis.


Assuntos
Bacillus subtilis/enzimologia , Evolução Molecular Direcionada/métodos , Glucosiltransferases/metabolismo , Glicosídeo Hidrolases/metabolismo , Isoamilase/metabolismo , Sistemas de Translocação de Proteínas/metabolismo , Proteínas Recombinantes de Fusão/isolamento & purificação , Bacillus subtilis/genética , Proteínas de Bactérias/isolamento & purificação , Proteínas de Bactérias/metabolismo , Celulase/metabolismo , Clostridium thermocellum/metabolismo , Metaloendopeptidases/metabolismo , Sinais Direcionadores de Proteínas , Proteínas Recombinantes de Fusão/metabolismo , Sulfolobus/metabolismo
14.
Prep Biochem Biotechnol ; 50(5): 453-459, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-31868558

RESUMO

Extracellular isoamylase produced by Rhizopus oryzae PR7 MTCC 9642 in in Erlenmeyer flasks was purified by ultrafiltration and by two steps of Superose 6 C-10/300GL gel chromatography. The enzyme molecule was found to be a monomer with molecular weight of 68 kDa.The purified isoamylase showed optimum activity at pH 5.5 and temperature 55 °C. The catalytic activity was found to remain stable at a broad range of pH (4-8) and could show remarkable thermo resistance specially in presence of exogenous thiols. The noteworthy enhancement of activity in presence of Mn2+ indicated its role as enzyme cofactor while thermos and chemostability in presence of exogenous thiols indicated the presence of disulfide linkage at active site of the enzyme. Both in vitro study and doking analysis indicated the highest affinity of the isoamylase of R. oryzae PR7 toward glycogen and the enzyme exhibited Km and Vmax values of 0.38 mg/mL and 6.65 mM/min/mL, respectively. Purified debranching amylolytic enzyme from R. oryzae PR7 has potential for the study of glycogen and starch structure and industrial application in combination with other amylolytic enzymes. The rapid, convenient, relatively simple purification process and other functional attributes of the enzyme made it competent to be employed for industrial utilization.


Assuntos
Proteínas Fúngicas/química , Isoamilase/química , Rhizopus oryzae/enzimologia , Ensaios Enzimáticos , Proteínas Fúngicas/isolamento & purificação , Proteínas Fúngicas/metabolismo , Glicogênio/química , Glicogênio/metabolismo , Concentração de Íons de Hidrogênio , Isoamilase/isolamento & purificação , Isoamilase/metabolismo , Cinética , Simulação de Acoplamento Molecular , Ligação Proteica , Especificidade por Substrato , Temperatura
15.
Int J Biol Macromol ; 140: 350-357, 2019 Nov 01.
Artigo em Inglês | MEDLINE | ID: mdl-31422187

RESUMO

Waxy maize starch was debranched using an isoamylase (hydrolysis for 24 h or 48 h), and then the debranched starches were recrystallized for 96 h at different temperatures (4, 25, and 50 °C). The structural and crystalline characteristics of the recrystallized samples were analyzed. The longer debranching time (48 h) produced the smaller chains containing more of linear dextrins. Crystallinity and thermal stability were much higher for the starch crystals prepared with the higher level of debranching. The starch chains recrystallized at 4 and 25 °C were recovered at 84-93% yield with B-type crystals whereas those at 50 °C induced a lower yield (11-31%) with A-type crystals. The slow recrystallization (50 °C) induced the selective association of the long chains which led to the formation of A-type crystals having a good thermal stability. The recrystallization temperature was a determining factor for the crystalline arrangement of debranched starch chains.


Assuntos
Amido/química , Zea mays/química , Cristalização , Dextrinas/química , Hidrólise , Isoamilase/metabolismo , Temperatura
16.
Plant Cell Physiol ; 60(5): 961-972, 2019 May 01.
Artigo em Inglês | MEDLINE | ID: mdl-30690625

RESUMO

CO2-responsive CCT protein (CRCT) is suggested to be a positive regulator of starch biosynthesis in the leaf sheaths of rice, regulating the expression levels of starch biosynthesis-related genes. In this study, the effects of CRCT expression levels on the expression of starch biosynthesis-related enzymes and the quality of starch were studied. Using native-PAGE/activity staining and immunoblotting, we found that the protein levels of starch synthase I, branching enzyme I, branching enzyme IIa, isoamylase 1 and phosphorylase 1 were largely correlated with the CRCT expression levels in the leaf sheaths of CRCT transgenic lines. In contrast, the CRCT expression levels largely did not affect the expression levels and/or activities of starch biosynthesis-related enzymes in the leaf blades and endosperm tissues. The analysis of the chain-length distribution of starch in the leaf sheaths showed that short chains with a degree of polymerization from 5 to 14 were increased in the overexpression lines but decreased in the knockdown lines. The amylose content of starch in the leaf sheath was greatly increased in the overexpression lines. In contrast, the molecular weight of the amylopectin of starch in the leaf sheath of overexpression lines did not change compared with those of the non-transgenic rice. These results suggest that CRCT can control the quality and the quantity of starch in the leaf sheath by regulating the expression of particular starch biosynthesis-related enzymes.


Assuntos
Dióxido de Carbono/metabolismo , Oryza/metabolismo , Folhas de Planta/metabolismo , Amido/metabolismo , Enzima Ramificadora de 1,4-alfa-Glucana/metabolismo , Amilose/metabolismo , Isoamilase/metabolismo , Sintase do Amido/metabolismo
17.
Biotechnol J ; 14(4): e1800493, 2019 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-30548823

RESUMO

Laminaribiose is a reducing disaccharide linked by a ß-1,3 glycosidic bond; it is also a precursor for building blocks in the pharmaceutical industry, a powerful germinating agent and antiseptic, as well as a potential prebiotic. In this study, an in vitro enzymatic biosystem composed of α-glucan phosphorylase, laminaribiose phosphorylase, isoamylase, and 4-glucanotransferase is designed for the one-pot synthesis of laminaribiose from low-cost maltodextrin and glucose. Through condition optimization, 51 mM laminaribiose is produced from 10 g L-1 maltodextrin (55.5 mM glucose equivalent) and 90 mM glucose. The product yield based on maltodextrin is 91.9%. To investigate the industrial potential of this in vitro enzymatic biosystem, the production of laminaribiose from high concentrations of substrates is also examined, and 179 mM laminaribiose is produced from 50 g L-1 of maltodextrin and 450 mM glucose. This in vitro enzymatic biosystem comprised of thermophilic enzymes can drastically decrease the manufacturing cost of laminaribiose and provide a green method for the production of other disaccharides using phosphorylases.


Assuntos
Dissacarídeos/biossíntese , Glucose/química , Polissacarídeos/química , Dissacarídeos/química , Glucosiltransferases/química , Glucosiltransferases/genética , Isoamilase/química , Isoamilase/genética , Fosforilases/química , Fosforilases/genética
18.
Carbohydr Polym ; 205: 279-286, 2019 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-30446106

RESUMO

In this study, we present an enzymatic fingerprinting method for the characterization of isomalto/malto-polysaccharides (IMMPs). IMMPs are produced by the modification of starch with the 4,6-α-glucanotransferase (GTFB) enzyme and consist of α-(1→4), α-(1→6) and α-(1→4,6) linked glucoses. Enzymes were used separately, simultaneously or in successive order to specifically degrade and/or reveal IMMP substructures. The enzymatic digests were subsequently analysed with HPSEC and HPAEC to reveal the chain length distribution (CLD) of different IMMP substructures. The presence of amylose in the substrate resulted in the formation of linear α-(1→6) linked glycosidic chains (13.5 kDa) in the former amylopectin fraction. The length of these chains indicates that GTFB transferase activity on amylopectin is more likely to elongate single amylopectin chains than to provide an even distribution. Enzymatic fingerprinting also revealed that the GTFB enzyme is capable of introducing large (20 kDa) linear α-(1→6) linked glycosidic chains in the α-glucan substrate.


Assuntos
Amilases/química , Amilopectina/química , Amilose/química , Glicosídeo Hidrolases/química , Isoamilase/química , Estrutura Molecular , Solanum tuberosum/química
19.
J Agric Food Chem ; 66(41): 10777-10787, 2018 Oct 17.
Artigo em Inglês | MEDLINE | ID: mdl-30270616

RESUMO

Microalgae are potential starch producers as alternatives to agricultural crops. This study disclosed the effects and mechanism of phosphorus availability exerted on storage starch production in a starch-producing microalga Tetraselmis subcordiformis in nitrogen starvation conditions. Excessive phosphorus supply facilitated starch production, which differed from the conventional cognition that phosphorus would inhibit transitory starch biosynthesis in plants. Phosphorus enhanced energy utilization efficiency for biomass and storage starch production. ADP-glucose pyrophosphorylase (AGPase), conventionally known to be critical for starch biosynthesis, was negatively correlated to storage starch biosynthesis. Excessive phosphorus supply maintained large cell volumes, enhanced activities of starch phosphorylases (SPs) along with branching enzymes and isoamylases, and increased phosphoenolpyruvate and trehalose-6-phosphate levels to alleviate the inhibition of high phosphate availability to AGPase, all of which improved starch production. This work highlighted the importance of phosphorus in the production of microalgal starch and provided further evidence for the SP-based storage starch biosynthesis pathway.


Assuntos
Clorófitas/metabolismo , Microalgas/metabolismo , Fósforo/metabolismo , Fotossíntese , Amido/biossíntese , Enzima Ramificadora de 1,4-alfa-Glucana/metabolismo , Vias Biossintéticas , Glucose-1-Fosfato Adenililtransferase/metabolismo , Isoamilase/metabolismo , Luz , Nitrogênio/química , Fosfoenolpiruvato/metabolismo , Fósforo/química , Fosfatos Açúcares/metabolismo , Termodinâmica , Trealose/análogos & derivados , Trealose/metabolismo
20.
Plant Physiol Biochem ; 132: 281-286, 2018 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-30240990

RESUMO

Isoamylase (EC.3.2.1.68), an essential enzyme in starch metabolism, catalyses the cleavage of α-1,6 glucosidic linkages of branched α-polyglucans such as beta-limit dextrin and amylopectin, but not pullulan. Three different isoamylase isoforms have been reported in plants and algae. We herein report on the first success in preparation of full-length isoamylase3 gene (MeISA3) of cassava Manihot esculenta Crantz 'KU50' from 5' Rapid Amplification of cDNA Ends (5' RACE). The MeISA3 was cloned to pET21b and expressed in E. coli. The HistrapTM-purified rMeISA3 appeared as a single band protein with approximate molecular size of 75 kDa on SDS-PAGE and Western blot, while 80 kDa was shown by gel filtration chromatography. This indicated the existence of a monomeric enzyme. Biochemical characterisation of rMeISA3 showed that the enzyme was specific towards beta-limit dextrin, with optimal activity at 37 °C pH 6.0. Activity of rMeISA3 could be significantly promoted by Mg2+ and Co2+. rMeISA3 debranched glucan chains of amylopectin were confirmed by HPAEC-PAD analysis.


Assuntos
Escherichia coli/genética , Expressão Gênica , Genes de Plantas , Isoamilase/genética , Manihot/enzimologia , Manihot/genética , Motivos de Aminoácidos , Sequência de Aminoácidos , Clonagem Molecular , Sequência Conservada , Isoamilase/química , Modelos Moleculares , Proteínas Recombinantes/isolamento & purificação , Proteínas Recombinantes/metabolismo
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