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1.
郑棚  王雷  胡美荣  魏华  陶勇 《生物工程学报》2023,39(8):3406-3420
聚合度2–6的可溶性纤维寡糖是一种具有多种生物功能的低聚糖,它能够促进双歧杆菌(Bifidobacteria)、副干酪乳杆菌(Lactobacillus paracei)等肠道益生菌的增殖,因此对人体肠道微生态具有调节作用。本研究通过在大肠杆菌中表达纤维寡糖磷酸化酶(cellodextrin phosphorylase,CDP),构建Cc 01菌株,并与之前构建的COS 01菌株联合使用,建立了基于COS 01、Cc 01的三酶级联反应催化底物葡萄糖和蔗糖合成纤维寡糖反应体系。经过优化后,最终可溶性纤维寡糖的产量达到97g/L,纯度约为97%,其中含有纤维二糖(16.8wt%)、纤维三糖(49.8wt%)、纤维四糖(16.4 wt%)、纤维五糖(11.5 wt%)和纤维六糖(5.5 wt%)。在纤维寡糖对益生菌株生长促进作用的测试中,以菊粉、低聚木糖、低聚果糖为基准,干酪乳杆菌(WSH004)、副干酪乳杆菌(WSH005)以及嗜酸乳杆菌(WSH 006)利用纤维寡糖(聚合度2–6)为碳源进行生长后,益生菌的生物量(OD600)相比对照增加约2倍。该研究证明了三酶级联反应能够高效合成纤维寡糖,并表明聚合度2–6的纤维寡糖是一类具有促进肠道微生物增殖的功能性碳水化合物。  相似文献   

2.
目的:使用表达耐热蔗糖磷酸化酶的大肠杆菌重组工程菌E. coli BL21/pET-Spase和耐热纤维二糖磷酸化酶的大肠杆菌重组工程菌E. coli BL21/pET-Cpase,发酵培养后粗酶液作为催化剂,以价格低廉的蔗糖为原料合成红景天苷。方法:分别构建耐热蔗糖磷酸化酶和耐热纤维二糖磷酸化酶大肠杆菌重组菌,然后将重组菌、蔗糖、酪醇和磷酸混合,得到反应混合物,使反应混合物在45℃下转化,而产生红景天苷。结果:在耐热蔗糖磷酸化酶酶液1200 U/L、耐热纤维二糖磷酸化酶酶液500 U/L、蔗糖110 g/L、酪醇30 g/L和磷酸50 m M的浓度下,反应条件为pH 7.0、温度45℃、转速50转/分、反应时间32小时后,红景天苷浓度达到23.7 g/L。结论:本研究使用蔗糖磷酸化酶和纤维二糖磷酸化酶联合催化的工艺,成功地高收率合成了红景天苷。同时,本研究构建的耐热磷酸化酶酶活高,处理简单,为拓展糖苷类似物的合成提供了一种新的方法。  相似文献   

3.
酶法制备功能性纤维低聚糖的研究   总被引:1,自引:0,他引:1  
研究里氏木霉(Trichoderma reesei)Rut C30纤维素酶单一组分EGI、EGII和CBHI降解纤维素的机理及纤维低聚糖酶法制备技术,进而初步研究纤维低聚糖对青春双歧杆菌的增殖作用。以内切葡聚糖酶EGII酶法制备纤维低聚糖,每克纤维素最佳酶用量1 U,最佳酶解时间90 min,制备得到的纤维低聚糖中纤维二糖、纤维三糖和纤维四糖占总糖的比例分别为43.8%、34.8%和7.9%。以纤维二糖、纤维低聚糖为C源增殖青春双歧杆菌,菌体质量浓度增殖倍数分别为2.14、2.84。  相似文献   

4.
目的:阿糖腺苷(Ara-A)是一种广谱抗病毒药物,临床上用于治疗多种病毒性疾病.同时也是合成阿糖腺苷单磷酸(Ara-AMP)的重要原料.本课题旨在寻找一种高效酶法生产嘌呤类阿糖核苷的方法.方法:以产气肠杆菌完整细胞为酶源,研究产气肠杆菌菌体培养条件对核苷磷酸化酶的影响及其诱导性.结果:胸苷磷酸化酶、尿苷磷酸化酶和嘌呤核苷磷酸化酶均可被多种核苷、核苷酸甚至碱基诱导.胞苷或胞苷酸的添加量为15-20mmol/L,诱导时间在0-8小时均可.经胞苷和胞苷酸诱导的菌体可使酶反应时间缩短6倍,大大提高了反应效率.经诱导的菌体,在反应后仍保持较高的核苷磷酸化酶活力;而未经诱导的菌体,一次反应后即丧失大量的酶活力.结论:核苷磷酸化酶的活性可以通过诱导而提高,以此优化阿糖腺苷的生产.  相似文献   

5.
目的:以乙酰短杆菌完整细胞为酶源,研究不同条件下核苷磷酸化酶的性质。方法:将乙酰短杆菌湿茵体置于不同保藏温度及在不同种类缓冲溶液中考察其稳定性;在有或无核保护下核苷磷酸化酶对热的稳定性;并设计核苷的磷酸解反应或合成反应,测定核苷磷酸化酶的活力及酶促反应的袁观米氏常数。结果:乙酰短杆菌中的核苷磷酸化酶经低温保藏可以保持较长时间的稳定性;茵体在60℃处理1小时即失去核苷磷酸化酶的活力,但是添加胸腺嘧啶有明显的保护作用;茵体中核苷磷酸化酶的合成能力明显大于磷酸解能力;对尿苷和5-甲基尿苷的表观米氏常数和最大反应速率分别为16.7、11.4mm01/L,0.0063、0.0041mmol/L.min。结论:含核苷磷酸化酶的乙酰短杆菌完整细胞作为酶源,在低温下可以长时间保藏,反应中的碱基对核苷磷酸化酶的抗热性有益,该菌种可以作为工业上核苷磷酸化酶的来源。  相似文献   

6.
合成海藻糖的新型非磷酸化酶   总被引:10,自引:0,他引:10  
九十年代中期以后非磷酸化合成海藻糖的新酶系列及相关微生物(多为极端微生物)被发现,不同菌株纯化得到的新酶虽专一性及酶特性方面存在差异,但均为非磷酸化酶。基因测序及同源性分析表明这些新酶与淀粉酶家族具有很强的同源性。一些文献报道了这些新酶合成海菏糖的作用机制,基本证实酶I(MTSase、GTase和TSase)的分子内转糖基作用及酶Ⅱ(MTHase和Amylase)对麦牙寡糖基海藻糖的专一性内切作用,但这些新酶的作用机制仍需深入研究。  相似文献   

7.
九十年代中期以后非磷酸化合成海藻糖的新酶系列及相关微生物(多为极端微生物)被发现,不同菌株纯化得到的新酶虽在专一性及酶特性方面存在差异,但均为非磷酸化酶。基因测序及同源性分析表明这些新酶与淀粉酶家族具有很强的同源性。一些文献报道了这些新酶合成海藻糖的作用机制,基本证实酶Ⅰ(MTSase、GTase和TSase)的分子内转糖基作用及酶Ⅱ(MTHase和Amylase)对麦芽寡糖基海藻糖的专一性内切作用,但这些新酶的作用机制仍需深入研究。  相似文献   

8.
利用PCR技术从枯草芽孢杆菌基因组DNA中扩增出其编码嘌呤核苷磷酸化酶的两种基因deoD和punA,构建工程菌并采用金属螯合层析纯化PNP702和PNP816,酶学性质研究表明:二者具有一致的最适反应温度(60℃)和最适反应pH值(7~8),PNP816磷酸解肌苷的催化效率(kcat/Km)比PNP702高出11.12倍。底物特异性试验表明:PNP702为高分子量的六聚体,而PNP816为低分子量的三聚体。分别以纯化酶和工程菌菌体为酶源,以肌苷或鸟苷为核糖基供体,TCA(1,2,4-三氮唑-3-甲酰胺)为底物,酶法合成核苷类抗病毒药物利巴韦林,PNP816和工程菌XL-Blue(pPNP816)较PNP702和工程菌XL-Blue(pPNP702)具有更高的催化速度和底物转化率,表明来源于微生物的低分子量的三聚体PNP在核苷类药物和中间体微生物酶法合成中具有更高的应用价值。  相似文献   

9.
【目的】嘌呤核苷磷酸化酶(PNP,EC.2.4.2.1)在酶法合成核苷类药物及中间体中具有广泛应用。本文研究的目标是,获得极地嗜冷菌假交替单胞菌Pseudoa lteromonas sp.XM2107嘌呤核苷磷酸化酶编码基因,并对该酶酶学性质进行研究,以考察该酶在核苷类中间体及药物合成中的潜在应用价值。【方法】利用同源序列PCR技术从Pseudoa lteromonas sp.XM2107基因组DNA中扩增出其编码嘌呤核苷磷酸化酶基因,测序获得编码序列。将该基因在大肠杆菌BL21(DE3)中进行重组表达以及金属螯合层析纯化,对其酶学性质进行初步研究。【结果】经过测序获得了该酶编码基因序列,全长702 bp,共编码233个氨基酸,大小为25 kDa,Genbank登录号为GQ475485。酶学性质研究发现,该重组酶最适反应温度为50℃,最适酶促反应pH为7.6(25 mmol/L磷酸盐缓冲液),最适酶促反应底物为肌苷(Km值0.389 mmol/L,37℃),且对底物腺苷和鸟苷也有磷酸解活性,在普通温度下具有较高催化活性和较好热稳定性。【结论】来源于Pseudoa lteromonas sp.XM2107的嘌呤核苷磷酸化酶在普通温度条件下具有较高的催化活性及良好热稳定性性质,在核苷类中间体和药物合成中具有较广泛的应用价值。  相似文献   

10.
功能性低聚糖具有无毒、无残留、稳定性强等特点,作为新型绿色添加剂被广泛应用在食品、饲料、医药行业。国际市场上10余种低聚糖产品中除大豆低聚糖、棉籽糖外,主要采用酶法制备。用于合成功能性低聚糖的酶包括糖苷酶、糖基转移酶和磷酸化酶。本文综述了功能性低聚糖种类、性质和制备方法,分析了酶法合成低聚糖的优缺点,阐述了磷酸化酶种类、催化特性和低聚糖产物。多酶法合成策略和目标酶的分子改造将是酶法合成功能性低聚糖的发展方向。  相似文献   

11.
Glycogen phosphorylase in the vegetative mycelium ofFlammulina velutipes converts glycogen to α-glucose 1-phosphate (G1P) in the colony during fruit-body development. Glycogen may contribute to the synthesis of trehalose as the starting material in the vegetative mycelium during the fruiting process of the colony, and the trehalose produced is translocated into the fruit-bodies as the main carbohydrate substrate for their development. Trehalose phosphorylase activity in the vegetative mycelium was at a relatively high level until fruit-body initiation, suggesting the turnover of this disaccharide during the vegetative stage of the colony development. Trehalose phosphorylase activity in the stipes showed a peak level at the early phase of fruit-body development, suggesting the continuing phosphorolysis of trehalose by this enzyme. The stipes also showed a high specific activity of phosphoglucomutase at a sufficient level to facilitate the conversion of G1P to α-glucose 6-phosphate (G6P). In the pilei a large amount of G1P remained until the growth of the fruit-bodies ceased. Trehalase activities in the stipes and pilei were at a very low level, and this enzyme may not contribute to the catabolism of trehalose in the fruit-body development.  相似文献   

12.
Chimeric phosphorylases were constructed of the kojibiose phosphorylase (KP) gene and the trehalose phosphorylase (TP) gene from Thermoanaerobacter brockii. Four chimeric enzymes had KP activity, and another had TP activity. Chimera V-III showed not TP, but KP activity, although only 125 amino acid residues in 785 residues of chimera V-III were from that of KP. Chimera V-III had 1% of the specific activity of the wild-type KP. Furthermore, the temperature profile and kinetic parameters of chimera V-III were remarkably changed as compared to those of the wild-type KP. The results of the molecular mass of chimera V-III using GPC (76,000 Da) strongly suggested that the chimera V-III protein exists as a monomer in solution, whereas wild-type KP and TP are hexamer and dimer structures, respectively. The result of the substrate specificity for phosphorolysis was that the chimera acted on nigerose, sophorose and laminaribiose, in addition to kojibiose. Furthermore, chimera V-III was also able to act on sophorose and laminaribiose in the absence of inorganic phosphate, and produced two trisaccharides, beta-D-glucosyl-(1-->6)-laminaribiose and laminaritriose, from laminaribiose.  相似文献   

13.
In this study, the preliminary analyses were conducted of enzymatic activities of uridine phosphorylase (UP) and thymidine phosphorylase (TP) in normal tissues and cancer tissues of the uterine cervix. The study was performed on 27 patients of cervical cancer, treated first in our hospital. Normal cervical tissues obtained from 15 patients undergoing hysterectomy for benign diseases were used as controls. The supernatant of the homogenated cervical tissues and the stroma (5-FU and ribose-1-P or deoxyribose-1-P) were analyzed by high performance liquid chromatography, and then the UP and TP activities calculated. TP activity was significantly greater than UP activity (P < 0.0001). Both UP and TP showed significantly greater activity in cancer tissues than in normal tissues (P < 0.0001). In the TP activity of the cancer tissues, there was no significant difference among the histological types, while the TP activity tended to be significantly higher in the cases with lymph node metastasis. These results showed that the TP-mediated route seemed important as the 5FU metabolic pathway in the uterine cervical tissues, and TP enzymatic activity might be associated with lymph node metastasis.  相似文献   

14.
The bacterial enzyme maltodextrin phosphorylase (MalP) catalyses the phosphorolysis of an alpha-1,4-glycosidic bond in maltodextrins, removing the non-reducing glucosyl residues of linear oligosaccharides as glucose-1-phosphate (Glc1P). In contrast to the well-studied muscle glycogen phosphorylase (GP), MalP exhibits no allosteric properties and has a higher affinity for linear oligosaccharides than GP. We have used MalP as a model system to study catalysis in the crystal in the direction of maltodextrin synthesis. The 2.0A crystal structure of the MalP/Glc1P binary complex shows that the Glc1P substrate adopts a conformation seen previously with both inactive and active forms of mammalian GP, with the phosphate group not in close contact with the 5'-phosphate group of the essential pyridoxal phosphate (PLP) cofactor. In the active MalP enzyme, the residue Arg569 stabilizes the negative-charged Glc1P, whereas in the inactive form of GP this key residue is held away from the catalytic site by loop 280s and an allosteric transition of the mammalian enzyme is required for activation. The comparison between MalP structures shows that His377, through a hydrogen bond with the 6-hydroxyl group of Glc1P substrate, triggers a conformational change of the 380s loop. This mobile region folds over the catalytic site and contributes to the specific recognition of the oligosaccharide and to the synergism between substrates in promoting the formation of the MalP ternary complex. The structures solved after the diffusion of oligosaccharides (either maltotetraose, G4 or maltopentaose, G5) into MalP/Glc1P crystals show the formation of phosphate and elongation of the oligosaccharide chain. These structures, refined at 1.8A and at 2.2A, confirm that only when an oligosaccharide is bound to the catalytic site will Glc1P bend its phosphate group down so it can contact the PLP 5' phosphate group and promote catalysis. The relatively large oligosaccharide substrates can diffuse quickly into the MalP/Glc1P crystals and the enzymatic reaction can occur without significant crystal damage. These structures obtained before and after catalysis have been used as frames of a molecular movie. This movie reveals the relative positions of substrates in the catalytic channel and shows a minimal movement of the protein, involving mainly Arg569, which tracks the substrate phosphate group.  相似文献   

15.
Abstract A range of microorganisms was screened for new and high producer strains of trehalose phosphorylase (EC 2.4.1.64). Trehalose phosphorylase activity was found in cells of actinomycetes of the genera Actinomadura, Amycolata, Catellatospora, Kineosporia , and Nocardia . Among them, Catellatospora ferruginea showed the highest enzyme activity. Trehalose phosphorylase from C. ferruginea was able to catalyse both the phosphorolysis of trehalose into β-glucose 1-phosphate and d-glucose and the synthesis of trehalose from β-glucose 1-phosphate and d-glucose.  相似文献   

16.
Both Oscillatoria princeps and Cyanidium caldarium contain phosphorylase isozymes that can cause the synthesis of polyglucan from glucose-1-phosphate in the absence of added maltodextrin ‘primer’. In addition, O. princeps contains a primer-dependent phosphorylase isozyme. When the phosphorylase fractions isolated from extracts of the algae were treated with α-amylase, the primer-independent isozyme became primer-dependent and shifted from the position it was normally found at after polyacrylamide gel electrophoresis. This primer-independent isozyme became less mobile towards the anode, and was found at the locus usually occupied by the primer-dependent isozyme. It was not possible to restore its mobility towards the anode and its primer-independent properties by preincubation with maltoheptaose. The indication is that this isozyme is a glucoprotein and that the glucan component is chemically bonded to the protein.  相似文献   

17.
A series of amino acid anthranilamide derivatives identified from a high-throughput screening campaign as novel, potent, and glucose-sensitive inhibitors of human liver glycogen phosphorylase a are described. A solid-phase synthesis using Wang resin was also developed which provided efficient access to a variety of analogues, and resulted in the identification of key structure–activity relationships, and the discovery of a potent exemplar (IC50 = 80 nM). The SAR scope, synthetic strategy, and in vitro results for this series are presented herein.  相似文献   

18.
A polymorphism of purine nucleoside phosphorylase is described in sheep erythrocytes. Two isozymes were distinguished electrophoretically, one with high activity (NP-1) and one with low activity (NP-2). Breeding data suggest that the two isozymes are the product of two codominant alleles, NP 1and NP 2. The K m 's for inosine did not differ between NP-1 and NP-2; however, NP-2 had a lower pH optimum and was relatively unstable when incubated at 48 C.Contribution No. 421-J, from the Department of Pathology, Kansas Agricultural Experiment Station, Manhattan, Kansas. Supported in part by USPHS Grants HL-70119 and HL 12072.  相似文献   

19.
蔗糖磷酸化酶属于糖苷水解酶13家族,能够催化蔗糖的可逆磷酸解。利用其广泛的底物混杂性,蔗糖磷酸化酶可以将葡萄糖基转移至不同的受体合成熊果苷、甘油葡萄糖苷、低聚糖及多酚化合物的衍生物等产物,这些催化产物可广泛应用于食品、药品、化妆品等行业。随着酶催化技术和蛋白质工程的发展,蔗糖磷酸化酶受到了越来越多的关注,该酶的应用范围也得到了扩大。本文综述了近年来蔗糖磷酸化酶在酶的来源、结构、功能及应用领域等的研究进展,同时讨论了该酶的蛋白质工程改造方法与局限性,并展望了该酶可能的研究方向。  相似文献   

20.
The yeast two-hybrid screen has been used to identify potential regions of interaction of the largest regulatory subunit, , of phosphorylase kinase (PhK) with two fragments of its protein substrate, glycogen phosphorylase b (Phb). One fragment, corresponding to residues 17-484 (PhbN"), contained the regulatory domain of the protein, but in missing the first 16 residues was devoid of the sole phosphorylation site of Phb, Ser14; the second fragment corresponded to residues 485-843 (PhbC) and contained the catalytic domain of Phb. Truncation fragments of the subunit were screened for interactions against these two substrate fragments. PhbC was not found to interact with any constructs; however, PhbN" interacted with a region of (residues 864-1014) that is near the phosphorylatable region of that subunit. PhbN" was also screened for interactions against a variety of fragments of the catalytic subunit of PhK; however, no interactions were detected, even with fulllength . Our results support the idea that amino acid residues proximal to the convertible serine of Phb are important for its specific interaction with the catalytic subunit of PhK, but that regions distinct from the convertible serine residue of Phb and from the catalytic domain of PhK may also be involved in the interaction of these two proteins.  相似文献   

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