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1.
Formation and cleavage of 2-keto-3-deoxygluconate by 2-keto-3-deoxygluconate aldolase of Aspergillus niger. 下载免费PDF全文
2-Keto-3-deoxygluconate aldolase of Aspergillus niger, an enzyme that has not been reported previously, was purified 468-fold. Maximal activity was obtained at pH 8.0 and 50 C. The enzyme exhibited relative stereochemical specificity with respect to glyceraldehyde. The Km values for 2-keto-3-deoxygluconate, glyceraldehyde, and pyruvate were 10, 13.3, and 3.0 mM, respectively. The effects of some compounds and inhibitors on enzyme activity were examined. Stability of the enzyme under different conditions was investigated. The equilibrium constant was about 0.33 X 10(-3) M. 相似文献
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Summary 2-Keto-3-deoxygluconate, an intermediate of glucose breakdown inSulfolobus
solfataricus, was produced by enzymic dehydration of gluconate using whole cells of the micro-organism immobilized in crude egg white. The degradation of 2-keto-3-deoxygluconate to pyruvate and glyceraldehyde was avoided by inhibiting the aldolase activity in the cells by sodium borohydride treatment. 相似文献
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Theodossis A Walden H Westwick EJ Connaris H Lamble HJ Hough DW Danson MJ Taylor GL 《The Journal of biological chemistry》2004,279(42):43886-43892
The hyperthermophilic Archaea Sulfolobus solfataricus grows optimally above 80 degrees C and metabolizes glucose by a non-phosphorylative variant of the Entner-Doudoroff pathway. In this pathway glucose dehydrogenase and gluconate dehydratase catalyze the oxidation of glucose to gluconate and the subsequent dehydration of gluconate to D-2-keto-3-deoxygluconate (KDG). KDG aldolase (KDGA) then catalyzes the cleavage of KDG to D-glyceraldehyde and pyruvate. It has recently been shown that all the enzymes of this pathway exhibit a catalytic promiscuity that also enables them to be used for the metabolism of galactose. This phenomenon, known as metabolic pathway promiscuity, depends crucially on the ability of KDGA to cleave KDG and D-2-keto-3-deoxygalactonate (KDGal), in both cases producing pyruvate and D-glyceraldehyde. In turn, the aldolase exhibits a remarkable lack of stereoselectivity in the condensation reaction of pyruvate and D-glyceraldehyde, forming a mixture of KDG and KDGal. We now report the structure of KDGA, determined by multiwavelength anomalous diffraction phasing, and confirm that it is a member of the tetrameric N-acetylneuraminate lyase superfamily of Schiff base-forming aldolases. Furthermore, by soaking crystals of the aldolase at more than 80 degrees C below its temperature activity optimum, we have been able to trap Schiff base complexes of the natural substrates pyruvate, KDG, KDGal, and pyruvate plus D-glyceraldehyde, which have allowed rationalization of the structural basis of promiscuous substrate recognition and catalysis. It is proposed that the active site of the enzyme is rigid to keep its thermostability but incorporates extra functionality to be promiscuous. 相似文献
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Lamble HJ Heyer NI Bull SD Hough DW Danson MJ 《The Journal of biological chemistry》2003,278(36):34066-34072
The hyperthermophilic Archaeon Sulfolobus solfataricus metabolizes glucose by a non-phosphorylative variant of the Entner-Doudoroff pathway. In this pathway glucose dehydrogenase and gluconate dehydratase catalyze the oxidation of glucose to gluconate and the subsequent dehydration of gluconate to 2-keto-3-deoxygluconate. 2-Keto-3-deoxygluconate (KDG) aldolase then catalyzes the cleavage of 2-keto-3-deoxygluconate to glyceraldehyde and pyruvate. The gene encoding glucose dehydrogenase has been cloned and expressed in Escherichia coli to give a fully active enzyme, with properties indistinguishable from the enzyme purified from S. solfataricus cells. Kinetic analysis revealed the enzyme to have a high catalytic efficiency for both glucose and galactose. KDG aldolase from S. solfataricus has previously been cloned and expressed in E. coli. In the current work its stereoselectivity was investigated by aldol condensation reactions between D-glyceraldehyde and pyruvate; this revealed the enzyme to have an unexpected lack of facial selectivity, yielding approximately equal quantities of 2-keto-3-deoxygluconate and 2-keto-3-deoxygalactonate. The KDG aldolase-catalyzed cleavage reaction was also investigated, and a comparable catalytic efficiency was observed with both compounds. Our evidence suggests that the same enzymes are responsible for the catabolism of both glucose and galactose in this Archaeon. The physiological and evolutionary implications of this observation are discussed in terms of catalytic and metabolic promiscuity. 相似文献
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利用SPT3的定向进化提高工业酿酒酵母乙醇耐受性 总被引:1,自引:0,他引:1
利用对转录因子的定向进化可对多基因控制的性状进行有效的代谢工程改造。本研究对酿酒酵母负责胁迫相关基因转录的SAGA复合体成分SPT3编码基因进行易错PCR随机突变,并研究了SPT3的定向进化对酿酒酵母乙醇耐性的影响。将SPT3的易错PCR产物连接改造的pYES2.0表达载体并转化酿酒酵母Saccharomyces cerevisiae4126,构建了突变体文库。通过筛选在高浓度乙醇中耐受性提高的突变株,获得了一株在10%(V/V)乙醇中生长较好的突变株M25。该突变株利用125g/L的葡萄糖进行乙醇发酵时,终点乙醇产量比对照菌株提高了11.7%。由此表明,SPT3是对酿酒酵母乙醇耐性进行代谢工程改造的一个重要的转录因子。 相似文献
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定向进化-易错PCR方法提高华根霉Rhizopus chinensis CCTCC M201021脂肪酶的活力 总被引:2,自引:1,他引:2
运用定向进化-易错PCR的方法,提高了华根霉Rhizopus chinensis CCTCC M201021脂肪酶的活力。经过两轮易错PCR和pNPP顶层琼脂法筛选,从第一轮和第二轮突变库中分别筛选获得最佳突变株1-11和2-28,脂肪酶酶活与野生菌株相比分别提高2倍和4倍。基因比对结果表明,突变脂肪酶2-28有4个氨基酸发生了突变:A129S、K161R、A230T、K322R。蛋白质分子空间结构模拟显示,突变A129S、K161R、A230T位于脂肪酶分子表面。突变A230T增强了α-螺旋盖结构的稳定性。突变K322R处在loop上,靠近脂肪酶底物结合区域,与邻近的Asp(带负电)形成盐桥。静电引力将该loop向底物进入酶活性中心的通道口反方向牵引,使底物分子更易进入酶活性中心。酶学性质研究表明,突变株2-28脂肪酶的Km值比出发菌株下降了10%,Kcat值提高为原来的2.75倍。 相似文献
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基于易错PCR技术的短小芽孢杆菌YZ02脂肪酶基因BpL的定向进化 总被引:1,自引:0,他引:1
利用易错PCR技术对短小芽胞杆菌(Bacillus pumilus)YZ02脂肪酶基因BpL进行两轮定向进化研究, 分别获得最佳突变株BpL1-7和BpL2-1369, 其脂肪酶活力比出发酶分别提高了2倍和6倍。序列分析表明, 突变体BpL2-1369有4个碱基发生了突变: T61C/C147T/A334G/T371A, 其中有3个碱基突变导致了氨基酸的改变。通过SWISS-MODEL数据库模拟脂肪酶的结构显示, 3个突变氨基酸分别位于第1个a螺旋的第3个氨基酸、第4和第5个b折叠之间的转角以及第5个b折叠的第1个氨基酸位置。将野生型脂肪酶基因BpL和进化后的基因BpL2-1369的高效表达产物经Ni-Agarose柱和Sephadex-G75纯化后, 酶学性质测定表明: 突变脂肪酶的比活力比野生型脂肪酶提高了1.31倍, Km值由8.24 mmol/L降低至7.17 mmol/L; 在pH>8.0时的稳定性较野生型脂肪酶有所提高。 相似文献
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基于易错PCR的黄曲霉毒素解毒酶体外分子定向进化 总被引:3,自引:0,他引:3
运用定向进化-易错PCR方法,提高黄曲霉毒素解毒酶的活力及稳定性,并结合辣根过氧化物酶 (HRP)-隐性亮绿 (RBG) 快速高通量筛选系统,构建了库容约为104的突变体库。经过两轮易错PCR,最终分别获得了耐高温70 ℃突变酶A1773、pH 4.0稳定性的突变酶A1476,pH 4.0和pH 7.5均表现稳定性的突变酶A2863,其酶活力比野生酶分别提高了6.5倍、21倍和12.6倍。经序列分析表明,发现突变酶A1773发生了Glu127Lys和Gln613Arg突变;突变酶A2863发生了Gly73 相似文献
10.
基于易错PCR技术的短小芽孢杆菌YZ02脂肪酶基因BpL的定向进化 总被引:4,自引:0,他引:4
利用易错PCR技术对短小芽胞杆菌(Bacillus pumilus)YZ02脂肪酶基因BpL进行两轮定向进化研究, 分别获得最佳突变株BpL1-7和BpL2-1369, 其脂肪酶活力比出发酶分别提高了2倍和6倍。序列分析表明, 突变体BpL2-1369有4个碱基发生了突变: T61C/C147T/A334G/T371A, 其中有3个碱基突变导致了氨基酸的改变。通过SWISS-MODEL数据库模拟脂肪酶的结构显示, 3个突变氨基酸分别位于第1个a螺旋的第3个氨基酸、第4和第5个b折叠之间的转角以及第5个b折叠的第1个氨基酸位置。将野生型脂肪酶基因BpL和进化后的基因BpL2-1369的高效表达产物经Ni-Agarose柱和Sephadex-G75纯化后, 酶学性质测定表明: 突变脂肪酶的比活力比野生型脂肪酶提高了1.31倍, Km值由8.24 mmol/L降低至7.17 mmol/L; 在pH>8.0时的稳定性较野生型脂肪酶有所提高。 相似文献
11.
催化吲哚生成靛蓝的细胞色素P450BM-3 定向进化研究 总被引:6,自引:0,他引:6
以催化吲哚产生的靛蓝在 630 nm 处具有特殊的吸收峰为高通量筛选指标,将来源于 Bacillus megaterium 的细胞色素 P450BM-3 单加氧酶的基因序列用易错聚合酶链式反应进行定向进化,通过多轮突变,在原有的能产靛蓝的高活力突变酶的基础上成功获得了三个高于亲本酶的突变酶,突变酶的酶活分别是亲本酶的 6.6 倍 (hml001) , 9.6 倍 (hml002) 和 5.3 倍 (hml003) ,并对突变酶的动力学参数进行了分析 . 突变酶 DNA 测序的结果表明, hml001 含有一个有义氨基酸置换 I39V , hml002 含有三个有义氨基酸置换 D168N , A225V , K440N , hml003 含有一个有义氨基酸置换 E435D ,这些突变位点有些远离底物结合部位,有些位于底物结合部位 . 相似文献
12.
甲壳素酶具有广泛的工业应用前景,如可将虾壳、蟹壳和其他甲壳废物降解成以几丁寡糖为主的高附加值产品,但野生型甲壳素酶催化效率低,大大限制了几丁寡糖的生产。笔者在前期研究中表达了一个具有较高效催化效率的甲壳素酶Chisb,并对其酶学性质进行了初步研究。为进一步提高甲壳素酶Chisb的催化效率,以R13NprB-C-SP-H为亲本,采用易错PCR(Error-pronePCR)技术构建随机突变体文库,对甲壳素酶Chisb进行定向进化。经过96孔板初筛和摇瓶复筛,获得了两个催化效率进一步提高的突变体C43D和E336R。对突变体的酶学性质进行分析, C43D和E336R的最适催化温度为55℃, C43D的最适pH为5.0,E336R的最适pH为9.0;其催化效率相比对照分别提高了1.35倍和1.57倍;而E336R和C43D催化产几丁寡糖的含量分别为2.53 g/L和2.06 g/L,相比对照(0.89 g/L)分别提高了2.84倍和2.31倍;底物转化率分别为84.3%和68.7%,相比对照(29.7%)分别提高了54.6%和39%。研究表明,通过易错PCR引入随机突变的方法能够有效提高甲壳素酶Chisb的催化效率。上述研究获得的催化效率提高的正向突变体及其酶学性质分析对生物转化合成几丁寡糖具有重要研究意义和应用价值。 相似文献
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In Pseudomonas saccharophila 2-keto-3-deoxygalactonate-6-P aldolase (EC 4.1.2.21) is induced by growth on galatose while 2-keto-3-deoxygluconate-6-P aldolase (EC 4.1.2.14) is constitutive. These enzymes catalyze identical reactions except for the configuration fixed at C-4 during the condensation reaction. It was found with each enzyme that in a condensation between [3-3H3]pyruvate and D-glyceraldehyde-3-P, the respective condensation products were formed 8 to 10 times faster than tritium was released to water. Since pyruvate deprotonation is obligatory for condensation, the above result requires a hydrogen isotope effect in enolpyruvate formation, which must be then at least partially rate limiting for C--C synthesis. Further, condensation between D-glyceraldehyde-3-P and (3R)-[3-3H, 2H,H]pyruvate or (3S)-[3-3H, 2H,H]pyruvate, as catalyzed by each enzyme, enriched for (3R)- and (3S)-3-3H, 2H-labeled condensation product, respectively. Thus, each enzyme catalyzes C--C and C--H synthesis with retention of configuration at C-3. This shows that the active sites of both enzymes are asymmetric since solutes can only approach a single face of the bound pyruvyl enolate. In addition, the respective aldehyde specific portions of the two active sites must have opposite chiralities, with respect to each other, for correctly orienting the carbonyl faces of the incoming D-glyceraldehyde-3-P, to generate the correct configuration at C-4 of the respective condensation products. 相似文献
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为了提高华根霉Rhizopus chinensis CCTCC M201021脂肪酶的热稳定性,运用定向进化-易错PCR的方法,经两轮易错PCR引入突变,利用fast-blue RR顶层琼脂法对突变文库进行筛选,第一轮易错PCR后筛选到2株突变菌株,第二轮筛选到4株突变株。第二轮最佳突变株Ep2-4,其中3个氨基酸发生了突变:A129S、P168L和V329A。该突变酶ep2-4在60 ℃下半衰期相对原始酶r27RCL提高5.4倍,T50值提高7.8 ℃。酶学性质研究表明,突变酶ep2-4在热稳定性提高的基础上,仍保有良好的催化活性。蛋白质三维结构模拟显示,突变A129S可以和Gln133形成氢键,增加了酶表面的亲水性和极性;P168L可以与邻近的Leu164形成疏水键,导致突变酶的热稳定性提高。 相似文献
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Ohshima T Kawakami R Kanai Y Goda S Sakuraba H 《Protein expression and purification》2007,54(1):73-78
2-Keto-3-deoxygluconate kinase (KDGK) catalyzes the ATP-dependent phosphorylation of 2-keto-3-deoxygluconate, a key intermediate in the modified (semi-phosphorylative) Entner-Doudoroff (ED) glucose metabolic pathway. We identified the gene (ORF ID: ST2478) encoding KDGK in the hyperthermophilic archaeon Sulfolobus tokodaii based on the structure of a gene cluster in a genomic database and functionally expressed it in Escherichia coli. The expressed protein was purified from crude extract by heat treatment and two conventional column chromatography steps, and the partial amino acid sequence in the N-terminal region of the purified enzyme (MAKLIT) was identical to that obtained from the gene sequence. The purified enzyme was extremely thermostable and retained full activity after heating at 80 degrees C for 1 h. The enzyme utilized ATP or GTP, but not ADP or AMP, as a phosphoryl donor and 2-keto-3-deoxy-D-gluconate or 2-keto-D-gluconate as a phosphoryl acceptor. Divalent cations including Mg(2+), Co(2+), Ni(2+), Zn(2+) or Mn(2+) were required for activity, and the apparent Km values for KDG and ATP at 50 degrees C were 0.027 mM and 0.057 mM, respectively. The presence of KDGK means that the hyperthermophilic archaeon S. tokodaii metabolizes glucose via both modified (semi-phosphorylative) and non-phosphorylative ED pathways. 相似文献
17.
Cheriyan M Toone EJ Fierke CA 《Protein science : a publication of the Protein Society》2007,16(11):2368-2377
Narrow substrate specificities often limit the use of enzymes in biocatalysis. To further the development of Escherichia coli 2-keto-3-deoxy-6-phosphogluconate (KDPG) aldolase as a biocatalyst, the molecular determinants of substrate specificity were probed by mutagenesis. Our data demonstrate that S184 is located in the substrate-binding pocket and interacts with the phosphate moiety of KDPG, providing biochemical support for the binding model proposed on the basis of crystallographic data. An analysis of the substrate selectivity of the mutant enzymes indicates that alterations to the phosphate-binding site of KDPG aldolase changes the substrate selectivity. We report mutations that enhance catalysis of aldol cleavage of substrates lacking a phosphate moiety and demonstrate that electrophile reactivity correlates with the hydrophobicity of the substituted side chain. These mutations improve the selectivity for unnatural substrates as compared to KDPG by up to 2000-fold. Furthermore, the S184L KDPG aldolase mutant improves the catalytic efficiency for the synthesis of a precursor for nikkomycin by 40-fold, making it a useful biocatalyst for the preparation of fine chemicals. 相似文献
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Polymerase chain reaction (PCR) is a powerful method to produce linear DNA fragments. Here we describe the Tma thermostable DNA ligase-mediated PCR production of circular plasmid (PPCP) and its application in directed evolution via in situ error-prone PCR. In this thermostable DNA ligase-mediated whole-plasmid amplification method, the resultant DNA nick between the 5′ end of the PCR primer and the extended newly synthesized DNA 3′ end of each PCR cycle is ligated by Tma DNA ligase, resulting in circular plasmid DNA product that can be directly transformed. The template plasmid DNA is eliminated by ‘selection marker swapping’ upon transformation. When performed under an error-prone condition with Taq DNA polymerase, PPCP allows one-step construction of mutagenesis libraries based on in situ error-prone PCR so that random mutations are introduced into the target gene without altering the expression vector plasmid. A significant difference between PPCP and previously published methods is that PPCP allows exponential amplification of circular DNA. We used this method to create random mutagenesis libraries of a xylanase gene and two cellulase genes. Screening of these libraries resulted in mutant proteins with desired properties, demonstrating the usefulness of in situ error-prone PPCP for creating random mutagenesis libraries for directed evolution. 相似文献
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【目的】对嗜热脂肪芽孢杆菌CHB1的环糊精葡萄糖基转移酶(CGTase)基因进行定向进化,筛选得到胞外酶活性和可溶性表达定量提高的突变酶。【方法】采用易错PCR技术向环糊精葡萄糖基转移酶基因中随机引入突变,建立酶基因突变文库,筛选获得胞外酶活性和可溶性表达定量提高的突变体,并对突变酶进行诱导表达、纯化及部分酶学性质研究。【结果】通过筛选获得CGTase胞外酶活性和可溶性表达定量提高的突变菌株ds-6和ep-9,其胞外α-环化活力分别是原始酶的1.72倍和2.18倍,可溶性表达量提高了1倍。序列分析表明,突变体ep-9有3个碱基发生了变化:G2005A/A2037G/T2081G,其中有2个碱基突变导致了氨基酸的改变。SWISS-MODEL数据库模拟CGTase的结构表明,2个突变氨基酸分别位于无规卷曲和β-转角/折叠之间的转角中。酶学性质测定表明:突变CGTase的β-环化比活力是原始酶的2.44倍,总环化比活力提高了34%,K_m值由4.3 g/L降低到3.74 g/L;在pH稳定性方面较原始酶有所提高。单碱基定点突变证实突变体ep-9可溶性表达水平及胞外酶活性提高的关键突变是G2005A。【结论】本试验表明:基于易错PCR技术获得嗜热芽孢杆菌CHB1的CGTase的胞外酶活和可溶性表达定向进化,G2005A突变对于提高CGTase的可溶性表达及胞外酶活起关键作用,这对认识CGTase的构效关系以及进一步改造该酶分子、扩大酶的生产应用具有重要意义。 相似文献
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通过易错PCR提高鼠伤寒沙门氏菌丙氨酸消旋酶催化活性 总被引:1,自引:1,他引:1
[目的] 通过易错PCR技术提高鼠伤寒沙门氏菌中丙氨酸消旋酶的催化活性。[方法] 利用易错PCR技术构建丙氨酸消旋酶基因alrSt的突变体文库,采用缺陷菌株UT5028筛选突变体基因,以D-氨基酸氧化酶偶联法检测各突变蛋白的活性,通过凝胶过滤层析法分析酶蛋白寡聚化状态,并采用HPLC检测酶蛋白的动力学参数。[结果] 经过易错PCR及定点突变技术最终获得了3个催化活性有所提高的突变体A3V、Y343H和A3VY343H,酶学特性分析发现,与野生型蛋白StAlr相比,突变体Y343H仅对底物L/D-丝氨酸的催化效率略有提高,kcat/Km值分别是StAlr的2.01和3.68倍;而突变体A3V则对底物L/D-丙氨酸或L/D-丝氨酸的Km、kcat和kcat/Km值均有较大幅度的改变,其kcat/Km值分别是StAlr的105.51、97.36、4.63和10.73倍。凝胶过滤层析结果显示,突变体A3V在蛋白含量极低时就呈现出单体和二聚体共存状态,且随着蛋白含量的增加,其向二聚体状态迁移的速率最为明显。[结论] 丙氨酸消旋酶StAlr的第3位点是影响其催化活性和低聚合状态的关键位点。 相似文献