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1.
D-阿洛酮糖的功能及其生物合成研究进展   总被引:1,自引:0,他引:1  
随着肥胖、糖尿病等代谢性疾病的发病率在全球范围急剧上升,人们对食品营养和健康等问题日益关注。D-阿洛酮糖作为重要的天然稀有己酮糖,不仅保持良好的甜度,而且具有降血糖、降血脂、抗氧化等功效,逐渐成为食品、保健和医疗领域的研究热点。文中阐述了D-阿洛酮糖的主要生理功能,综述了D-阿洛酮糖的生物合成研究进展及其酮糖3-差向异构酶的晶体结构,为筛选D-阿洛酮糖的产生菌株及提高合成酶的热稳定性和转化率提供理论指导,以满足工业化生产的需求。  相似文献   

2.
稀少糖是自然界中含量稀少、化学合成困难的一类低热量单糖。D-阿洛糖是一种重要的稀少己醛糖,其具有减少活性自由基、抑制癌细胞增殖等独特的生理学功能。因此,以微生物发酵生产D-阿洛酮糖-3-差向异构酶(DPE)和L-鼠李糖异构酶(L-RhI)转化生产D-阿洛糖,成为近几年来国际研究的热点之一。文中分别克隆了来源于解纤维梭菌Clostridium cellulolyticum H10的DPE基因以及来源于枯草芽胞杆菌Bacillussubtilis 168的L-RhI基因,并分别使其在宿主菌B.subtilis及大肠杆菌Escherichia coli BL21(DE3)中得到了表达。进一步利用镍亲和层析和阴离子交换色谱等手段对这两种酶进行了纯化,并对这两种纯化后酶的转化能力进行了分析测定。结果表明,以D-果糖为原料利用两种异构酶依次转化获得D-阿洛酮糖及D-阿洛糖,其两步转化效率分别为27.34%和34.64%。  相似文献   

3.
酶转化法是功能性稀少糖生产的重要途径,但单一稀少糖转化酶的转化率普遍较低。文中提出构建双酶偶联转化系统提高转化效率的思路,即利用D-阿洛酮糖3-差向异构酶(D-psicose 3-epimerase,DPE)和L-鼠李糖异构酶(L-rhamnose isomerase,L-RhI)双酶偶联反应,催化D-果糖生成D-阿洛酮糖和D-阿洛糖等功能性稀少糖。DPE和L-RhI加酶量的比例为1∶10,其中DPE的浓度为0.05 mg/mL;转化反应的最佳温度为60℃,最适pH为9.0。当D-果糖浓度为2%时,反应10 h达到平衡,此时D-阿洛酮糖和D-阿洛糖的产量分别为5.12和2.04 g/L。利用文中提出的双酶偶联系统可以将果葡糖浆等富含果糖的低附加值原料转化为含有功能性稀少糖的高附加值混合糖液。  相似文献   

4.
1 研究背景 木糖醇、L-阿拉伯糖是一类具有营养价值的甜味物质,是防龋齿的最好甜味剂,也是重要的医药中间体.木糖醇还可制成糖尿病人的甜味剂、营养补充剂和辅助治疗剂,在体内缺少胰岛素影响糖代谢情况下,无需胰岛素促进,木糖醇也能透过细胞膜,被组织吸收利用,供细胞以营养和能量,且不会引起血糖值升高,消除糖尿病人服用后的三多症状,是最适合糖尿病患者食用的营养性的食糖代替品.  相似文献   

5.
稀有糖是一类在自然界中存在但含量很低、同时具有重要生理功能的一类单糖及其衍生物,在膳食、保健、医药等领域中发挥着重要的作用。此外稀有糖还可以作为多种天然产物和药物的合成前体。然而稀有糖的合成成本较高,大大制约了其广泛应用。当前利用微生物和酶转化法合成稀有糖成为一种强有利的工具。综述了生物法合成稀有己酮糖(包括D-塔格糖、D-山梨糖、D-阿洛酮糖、L-塔格糖、L-果糖、L-山梨糖和1-脱氧-L-果糖等)的研究进展,探讨了稀有己酮糖合成策略的研究趋势。  相似文献   

6.
具有α-葡糖苷酶抑制作用的抗糖尿病药物   总被引:14,自引:0,他引:14  
α -葡糖苷酶抑制剂是一类具有糖结构的新型抗糖尿病药物 ,已经被广泛用于临床 ,包括阿卡波糖、伏格列波糖和米格列醇。这类药物可以明显降低Ⅱ型糖尿病人餐后血糖水平 ,减少糖尿病并发症的发生。本文简要综述了这类药物的发现、制备和作用机制及药效学、药动学和临床疗效等。  相似文献   

7.
α-葡糖苷酸抑制剂是一类具有糖结构的新型抗糖尿病药物,已经被广泛用于临床,包括阿卡波糖,伏格列波糖和米格列醇,这类药物可以明显降低Ⅱ型糖尿病人餐后血糖水平,减少糖尿病并发症的发生。本文简要综述了这类药物发现,制备和作用机制及药效学、药动学和临床疗效等。  相似文献   

8.
糖的过量摄入给人们的身体健康带来了风险.甜味剂的发现和合理使用有助于减少食品中糖的添加.作为天然甜味剂的赤藓糖醇,因其具有独特的理化性质如热值低、基本不被人体代谢、稳定性高和食用不会引起肠道不适等而受到广泛关注.目前,赤藓糖醇已被广泛用于食品、医药和化工产品中,其国内外市场需求量正逐年提升,这对赤藓糖醇的工业化生产提出...  相似文献   

9.
木糖醇微生物转化的研究   总被引:4,自引:0,他引:4  
一、引言 木糖醇是一种被广泛用于国防、医药、食品和化学等工业的五碳糖醇。木糖醇也是一种具有营养价值的甜味剂,由于它的代谢不需胰岛素,可作为糖尿病人的食糖代用品。另外木糖醇还可以作为防龋食品。目前国内外生产木糖醇的方法是化学法,即由农业纤维废料如玉米芯和甘蔗渣等经酸水解和提  相似文献   

10.
糖、糖、“糖”——什么是糖?   总被引:1,自引:0,他引:1  
糖类是自然界中最常见的一类生物分子,但是糖类因不同的人群可以有三种不同的理解.一是科学上的糖类,二是生活中的糖类,三是作为甜味剂的"糖"类.因为甜味是一个生理上的感觉,凡能与甜味受体相互作用的均是甜味剂,其中有些是糖的"糖",也有不是糖的"糖".  相似文献   

11.
D-Psicose 3-epimerase (DPEase) is demonstrated to be useful in the bioproduction of D-psicose, a rare hexose sugar, from D-fructose, found plenty in nature. Clostridium cellulolyticum H10 has recently been identified as a DPEase that can epimerize D-fructose to yield D-psicose with a much higher conversion rate when compared with the conventionally used DTEase. In this study, the crystal structure of the C. cellulolyticum DPEase was determined. The enzyme assembles into a tetramer and each subunit shows a (β/α)8 TIM barrel fold with a Mn2+ metal ion in the active site. Additional crystal structures of the enzyme in complex with substrates/ products (D-psicose, D-fructose, D-tagatose and D-sorbose) were also determined. From the complex structures of C. cellulolyticum DPEase with D-psicose and D-fructose, the enzyme has much more interactions with D-psicose than D-fructose by forming more hydrogen bonds between the substrate and the active site residues. Accordingly, based on these ketohexosebound complex structures, a C3-O3 proton-exchange mechanism for the conversion between D-psicose and D-fructose is proposed here. These results provide a clear idea for the deprotonation/protonation roles of E150 and E244 in catalysis.  相似文献   

12.
D-psicose, a rare sugar produced by the enzymatic reaction of D-tagatose 3-epimerase (DTEase), has been used extensively for the bioproduction of various rare carbohydrates. Recently characterized D-psicose 3-epimerase (DPEase) from Agrobacterium tumefaciens was found to belong to the DTEase family and to catalyze the interconversion of D-fructose and D-psicose by epimerizing the C-3 position, with marked efficiency for D-psicose. The crystal structures of DPEase and its complex with the true substrate D-fructose were determined; DPEase is a tetramer and each monomer belongs to a TIM-barrel fold. The active site in each subunit is distinct from that of other TIM-barrel enzymes, which use phosphorylated ligands as the substrate. It contains a metal ion with octahedral coordination to two water molecules and four residues that are absolutely conserved across the DTEase family. Upon binding of D-fructose, the substrate displaces water molecules in the active site, with a conformation mimicking the intermediate cis-enediolate. Subsequently, Trp112 and Pro113 in the beta4-alpha4 loop undergo significant structural changes, sealing off the active site. Structural evidence and site-directed mutagenesis of the putative catalytic residues suggest that the metal ion plays a pivotal role in catalysis by anchoring the bound D-fructose, and Glu150 and Glu244 carry out an epimerization reaction at the C-3 position.  相似文献   

13.
The noncharacterized gene previously proposed as the D-tagatose 3-epimerase gene from Agrobacterium tumefaciens was cloned and expressed in Escherichia coli. The expressed enzyme was purified by three-step chromatography with a final specific activity of 8.89 U/mg. The molecular mass of the purified protein was estimated to be 132 kDa of four identical subunits. Mn2+ significantly increased the epimerization rate from D-fructose to D-psicose. The enzyme exhibited maximal activity at 50 degrees C and pH 8.0 with Mn2+. The turnover number (k(cat)) and catalytic efficiency (k(cat)/Km) of the enzyme for D-psicose were markedly higher than those for d-tagatose, suggesting that the enzyme is not D-tagatose 3-epimerase but D-psicose 3-epimerase. The equilibrium ratio between D-psicose and D-fructose was 32:68 at 30 degrees C. D-Psicose was produced at 230 g/liter from 700-g/liter D-fructose at 50 degrees C after 100 min, corresponding to a conversion yield of 32.9%.  相似文献   

14.
The effects of supplemental D-psicose in the diet on diurnal variation in plasma glucose and insulin concentrations were investigated in rats. Forty-eight male Wistar rats were divided into four groups. Each group except for the control group was fed a diet of 5% D-fructose, D-psicose, or psico-rare sugar (3:1 mixture of D-fructose and D-psicose) for 8 weeks. Plasma glucose levels were lower and plasma insulin levels were higher at all times of day in the psicose and psico-rare sugar groups than in the control and fructose groups. Weight gain was significantly lower in the psicose group than in the control and fructose groups. Liver glycogen content, both before and after meals was higher in the psicose group than in the control and fructose groups. These results suggest that supplemental D-psicose can lower plasma glucose levels and reduce body fat accumulation. Hence, D-psicose might be useful in preventing postprandial hyperglycemia in diabetic patients.  相似文献   

15.
D-psicose, a new alternative sweetener, was produced from allitol by microbial oxidation of the newly isolated strain Enterobacter aerogenes IK7. Cells grown in tryptic soy broth medium (TSB) supplemented with D-mannitol at 37 degrees C were found to have the best oxidation potential. The cells, owing to broad substrate specificity, oxidized various polyols (tetritol, pentitol, and hexitol) to corresponding rare ketoses. By a resting cell reaction, 10% of allitol was completely transformed to the product D-psicose, which thus becomes economically feasible for the mass production of D-psicose. Finally, the product was crystallized and confirmed to be D-psicose by analytical methods.  相似文献   

16.
D-Psicose is a hexoketose monosaccharide sweetener, which is a C-3 epimer of D-fructose and is rarely found in nature. It has 70 % relative sweetness but 0.3 % energy of sucrose, and is suggested as an ideal sucrose substitute for food products. It shows important physiological functions, such as blood glucose suppressive effect, reactive oxygen species scavenging activity, and neuroprotective effect. It also improves the gelling behavior and produces good flavor during food process. This article presents a review of recent studies on the properties, physiological functions, and food application of D-psicose. In addition, the biochemical properties of D-tagatose 3-epimerase family enzymes and the D-psicose-producing enzyme are compared, and the biotechnological production of D-psicose from D-fructose is reviewed.  相似文献   

17.
The thermodynamics of the conversion of aqueous D-psicose to D-allose has been investigated using high-pressure liquid chromatography. The reaction was carried out in phosphate buffer at pH 7.4 over the temperature range 317.25-349.25 K. The following results are obtained for the conversion process at 298.15 K: DeltaG degrees = - 1.41 +/- 0.09 kJ mol(-1), DeltaH degrees = 7.42 +/- 1.7 kJ mol(-1), and DeltaC(p) degrees = 67 +/- 50 J mol(-1) K(-1). An approximate equilibrium constant of 0.30 is obtained at 333.15 K for the conversion of aqueous D-psicose to D-altrose. Available thermodynamic data for isomerization reactions involving aldohexoses and aldopentoses are summarized.  相似文献   

18.
【目的】研究来源于瘤胃菌Ruminococcus sp.的D-阿洛酮糖3-差向异构酶的底物结合机制。【方法】通过同源模拟和同源序列比对,筛选与其底物结合相关的关键位点,进而通过定点突变构建突变体并对其动力学性质进行研究。【结果】筛选得到关键位点Y6和A109,构建了突变体Y6F、Y6I、A109P及A109L。【结论】Y6既与底物结合又与催化能力相关,其-OH只与底物结合相关,芳香环则与催化能力和结合能力均相关;而A109则只是底物结合的位点。该研究结果为D-阿洛酮糖3-差向异构酶的催化机理研究及分子改造提供了借鉴。  相似文献   

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