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Oligoxyloglucan reducing end-specific cellobiohydrolase (OXG-RCBH) is a unique exo-beta-1,4-glucanase that belongs to glycoside hydrolase family 74. The enzyme recognizes the reducing end of xyloglucan oligosaccharides and releases two glucosyl residue segments from the reducing end of the main chain. Previously, we reported that OXG-RCBH consists of two seven-bladed beta-propeller domains. There is a large cleft between the two domains, and a unique loop encloses one side of the active site cleft. Here, we report the X-ray crystal structure of the OXG-RCBH-substrate complex determined to a resolution of 2.4 A. The substrate bound to the cleft, and its reducing end was arranged near the loop region that is believed to impart OXG-RCBH with its activity. We constructed a deletion mutant of the loop region and conducted a detailed analysis. A deletion mutant of the loop region showed endo-activity with altered substrate recognition. More specifically, cleavage occurred randomly instead of at specific sites, most likely due to the misalignment of the substrate within the subsite. We believe that the loop imparts unique substrate specificity with exo-mode hydrolysis in OXG-RCBH.  相似文献   

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木糖还原酶(XR, EC 1.1.1.21)是真菌微生物代谢木糖的关键酶之一。本文以米曲霉基因组DNA为模板,克隆木糖还原酶基因(xr,GenBank登录号:FJ957890.1),并对XR的序列、系统进化树、理化性质及蛋白结构等进行生物信息学分析。结果表明: xr基因序列长1449 bp,其中开放阅读框长960 bp,编码319个氨基酸,蛋白质分子质量35.9 kDa,等电点为5.78;米曲霉XR与其他菌种XR有较高的同一性,含有醛酮还原酶家族的两个指纹结构和一个参与辅酶结合活性位点指纹结构,以及醛酮还原酶家族典型的(β/α)8 TIM桶结构,说明米曲霉XR属于醛酮还原酶家族。  相似文献   

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Aspergillus fumigatus is the most virulent species within the Aspergillus genus and causes invasive infections with high mortality rates. The exopolysaccharide galactosaminogalactan (GAG) contributes to the virulence of A. fumigatus. A co-regulated five-gene cluster has been identified and proposed to encode the proteins required for GAG biosynthesis. One of these genes, sph3, is predicted to encode a protein belonging to the spherulin 4 family, a protein family with no known function. Construction of an sph3-deficient mutant demonstrated that the gene is necessary for GAG production. To determine the role of Sph3 in GAG biosynthesis, we determined the structure of Aspergillus clavatus Sph3 to 1.25 Å. The structure revealed a (β/α)8 fold, with similarities to glycoside hydrolase families 18, 27, and 84. Recombinant Sph3 displayed hydrolytic activity against both purified and cell wall-associated GAG. Structural and sequence alignments identified three conserved acidic residues, Asp-166, Glu-167, and Glu-222, that are located within the putative active site groove. In vitro and in vivo mutagenesis analysis demonstrated that all three residues are important for activity. Variants of Asp-166 yielded the greatest decrease in activity suggesting a role in catalysis. This work shows that Sph3 is a glycoside hydrolase essential for GAG production and defines a new glycoside hydrolase family, GH135.  相似文献   

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米曲霉木聚糖酶基因的克隆及其在毕赤酵母中的表达   总被引:1,自引:0,他引:1  
目的:构建米曲霉木聚糖酶基因的真核表达载体,并转化巴斯德毕赤酵母,进行分泌表达。方法:以米曲霉总RNA为模板,根据已知的米曲霉木聚糖酶基因序列设计引物,采用RT-PCR技术克隆木聚糖酶基因cDNA序列,将其与pPIC9K质粒连接构建表达载体后转化毕赤酵母,经MM/MD快慢斑筛选,得到Muts型重组子,进行甲醇诱导表达。结果:克隆得到的cDNA序列全长666 bp,连续编码221个氨基酸;阳性克隆子在诱导培养数天后,将菌液点于RBB-木聚糖平板上,产生了明显的透明圈,表明重组木聚糖酶在毕赤酵母中获得表达。结论:木聚糖酶基因的真核表达载体构建成功,并能够在毕赤酵母中表达。  相似文献   

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乙内酰脲水解酶基因在大肠杆菌中的克隆表达   总被引:2,自引:0,他引:2  
节杆菌BT801的乙内酰脲酶系能够水解5-苄基乙内酰脲生成L-苯丙氨酸,其中乙内酰脲水解酶负责乙内酰脲的水解开环。乙内酰脲水解酶的表达对于乙内酰脲酶的催化机制研究及氨基酸的生物不对称合成都具有重要意义。通过PCR技术扩增得到乙内酰脲水解酶基因(hyuH),置于表达载体pT221的,17启动子下游,将构建的重组质粒引入大肠杆菌BL21(DE3)。SDS-PAGE分析在相对分子量50kD处有一较强的表达带,经薄层扫描分析目的蛋白占全菌蛋白的40%,主要以可溶性形式存在,活性分析表明表达产物具有天然的酶活性。  相似文献   

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A protein from the cell lysate of Aspergillus oryzae was purified by column chromatography immobilized with a ferrichrysin (Fcy), which is one of the siderophores of A. oryzae. It is produced only in an iron-deficient culture and its molecular weight is estimated as 35,000 by SDS-PAGE. Two internal amino acid sequences of the protein obtained by lysylendopeptidase digestion were analyzed. Molecular cloning shows that it encodes 310 putative amino acid residues separated by 4 introns and is designated as fleA. It shows approximately 26% similarity with the gene encoding a fucose-specific lectin of Aleuria aurantia (AAL). The gene was overexpressed under control of the melO promoter in a submerged culture of A. oryzae. The fleA gene product showed hemagglutination activity against rabbit erythrocytes. A hemagglutination inhibition assay of monosaccharides showed that this lectin specifically binds to L-fucose and weakly reacts with mannose and N-acetyl-neuraminic acid.  相似文献   

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米曲霉是一种重要的微生物,在食品、酿造、商业酶和医用蛋白的生产中具有广泛的应用,该菌被美国食品与药品管理局(FDA)认定为GRAS(generally regarded as safe)级。讨论了提高同源和异源蛋白在米曲霉中表达量的几种策略,包括使用强启动子、多拷贝编码基因、优化培养基和超表达血红素结构域(HBD)等。异源蛋白容易被米曲霉蛋白酶降解,表达量往往较低,因此使用蛋白酶缺陷型宿主菌是非常必要的。另外将外源蛋白与米曲霉高分泌蛋白融合表达也是提高异源蛋白产量的有效途径。  相似文献   

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Arthrobacter globiformis T6 isomalto-dextranase (AgIMD) is an enzyme that liberates isomaltose from the non-reducing end of a polymer of glucose, dextran. AgIMD is classified as a member of the glycoside hydrolase family (GH) 27, which comprises mainly α-galactosidases and α-N-acetylgalactosaminidases, whereas AgIMD does not show α-galactosidase or α-N-acetylgalactosaminidase activities. Here, we determined the crystal structure of AgIMD. AgIMD consists of the following three domains: A, C, and D. Domains A and C are identified as a (β/α)8-barrel catalytic domain and an antiparallel β-structure, respectively, both of which are commonly found in GH27 enzymes. However, domain A of AgIMD has subdomain B, loop-1, and loop-2, all of which are not found in GH27 human α-galactosidase. AgIMD in a complex with trisaccharide panose shows that Asp-207, a residue in loop-1, is involved in subsite +1. Kinetic parameters of the wild-type and mutant enzymes for the small synthetic saccharide p-nitrophenyl α-isomaltoside and the polysaccharide dextran were compared, showing that Asp-207 is important for the catalysis of dextran. Domain D is classified as carbohydrate-binding module (CBM) 35, and an isomaltose molecule is seen in this domain in the AgIMD-isomaltose complex. Domain D is highly homologous to CBM35 domains found in GH31 and GH66 enzymes. The results here indicate that some features found in GH13, -31, and -66 enzymes, such as subdomain B, residues at the subsite +1, and the CBM35 domain, are also observed in the GH27 enzyme AgIMD and thus provide insights into the evolutionary relationships among GH13, -27, -31, -36, and -66 enzymes.  相似文献   

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The filamentous fungus Aspergillus niger was investigated in relation to its ability to produce a soluble epoxide hydrolase (EH) (E.C. 3.3.2.3) belonging to the microsomal EH family. This EH is a highly useful biocatalyst for kinetic resolution of racemic epoxides to give enantiopure building blocks. The production of EH on an industrial scale is still a major challenge and is linked to various optimization processes. In this work, production of protein and organic acids as a function of pH and cultivation time was investigated. The production of EH was highest (1000 U/L for p-nitrostyrene oxide) under acidic fermentation conditions (pH value of about 3). The metabolic flux toward production of organic acids and thereby acidification of the environment increased with an increasing pH value. At pH 7, nearly 50% of total carbon of the substrate was incorporated into organic acids, mainly gluconic and oxalic acid. Finally, the addition of protease inhibitors, antioxidants and cryoprotectants was investigated in relation to the stability of the EH during the downstream process. The determination of the pH dependence during fermentation and understanding of the parameters influencing the stability of the enzyme has allowed us to optimize intracellular expression. The EH has been easily isolated from the biomass with high activity (1.67 U/mg lyophilisate) in a robust process.  相似文献   

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Transformation systems for Aspergillus aculeatus has been developed, based on the use of the pyrithiamine resistance gene of Aspergillus oryzae and the orotidine-5′-monophosphate decarboxylase gene (pyrG) of Aspergillus nidulans. An A. aculeatus mutant which can be transformed effectively by the A. nidulans pyrG gene was isolated as a transformation host. This is the first report of transformation of A. aculeatus.  相似文献   

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从土壤中分离到一株降解2,4-二氯酚能力较强的假单胞菌菌株GT241-1,从中克隆出参与降解2,4-二氯酚的双烯内酯水解酶基因(dcpD)。该基因编码的双烯内酯水解酶可将顺式-2-氯双烯内酯水解成2-氯马来乙酸。采用的基因克隆策略是用Southem杂交对其邻近基因进行定位后构建基因组库,再用斑点杂交筛选目的转化子。经序列测定得知dcpD基因编码区702bp。核苷酸和推测编码的氨基酸序列分析表明,dcpD与已在GenBank登记的相关基因有一定的差异。  相似文献   

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单宁酶基因在黑曲霉ST31中的克隆与表达   总被引:5,自引:0,他引:5  
利用PCR扩增得到米曲霉(Aspergillusoryzae)单宁酶(tannase)基因的编码序列,经DNA测序证实单宁酶基因已成功克隆,然后将其连接到黑曲霉的表达载体ANED2-SP2上构建单宁酶基因表达载体。将构建好的单宁酶基因表达载体通过原生质转化法导入黑曲霉菌株ST31中进行表达研究。结果表明重组菌株的单宁酶活力最高为104.02U/ml发酵液,比原始出发菌株米曲霉提高2~3倍。研究构建了黑曲霉的高效转化体系,提高了黑曲霉表达系统的应用水平,为其它新酶的研究提供有价值的参考。  相似文献   

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We report here a development of the MultiSite GatewayTM-based versatile plasmid construction system applicable for the rapid and efficient preparation of Aspergillus oryzae expression plasmids. This system allows the simultaneous connection of the three DNA fragments inserted in entry clones along with a destination vector in a defined order and orientation. We prepared a variety of entry clones and destination vectors containing promoters, genes encoding carrier-proteins and fusion tags, and selectable markers, which makes it possible to generate 80 expression plasmids for each target protein. Using this system, plasmids for expression of the EGFP fused with the mitochondrial-targeting signal of citrate synthase (AoCit1) were generated. Tubular structures of mitochondria were visualized in the transformants expressing the AoCit1-EGFP fusion protein. This plasmid construction system allows us to prepare a large number of expression plasmids without laborious DNA manipulations, which would facilitate molecular biological studies on A. oryzae.  相似文献   

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目的 研究米曲霉FleA基因克隆菌株的构建及米曲霉凝集素(Aspergillus oryzae lectin,AOL)蛋白表达。 方法 培养米曲霉RIB40,TRIzol法提取米曲霉RNA,用反转录试剂盒合成FleA全基因,设计引物扩增FleA基因,并将此片段与PJET克隆质粒连接构建克隆菌株,经双酶切筛选出阳性克隆菌株送去测序,将序列正确的克隆菌与表达载体pET 28a(+)分别经过双酶切后连接,转化到宿主菌E. coil BL21,IPTG诱导AOL目的蛋白表达,SDS PAGE 检测分析。 结果 PCR成功扩增获得FleA基因,大小约950 bp,成功连接至PJET克隆载体后,经双酶切回收后又与pET 28a(+)成功连接,经过IPTG诱导后SDS PAGE检测结果显示目的基因成功表达。 结论 该研究成功构建了米曲霉FleA基因,获得了表达蛋白,为今后结构和功能研究奠定了一定的基础。  相似文献   

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果胶酶具有广阔的商业用途,在食品工业上主要用于果汁和酒类的澄清、提高植物油的提取率、提高水果的硬度和植物纤维脱胶。米曲霉(Aspergillusoryzae)一直用于传统发酵食品的生产,自然条件下其果胶酶的产量较低。文献报道的果胶酶的重组表达成功的例子较少,且活性较低。通过RT-PCR的方法,获得不含信号肽的果胶酸内切水解酶A(polygalacturonaseA,PGA)的cDNA,PGAcDNA连入pET-28a( )载体,构建pET-28a( )-pga质粒。pET-28a( )-pga转化Turner(DE3)placⅠ细胞,得到转化子pET-28a( )-pga-Turner(DE3)placⅠ,首次实现了米曲霉PGA在大肠杆菌系统中过表达,进一步对PGA在大肠杆菌系统中表达的条件进行了研究。在37℃、220r/min条件培养pET-28a( )-pga-Turner(DE3)placⅠ细胞,OD600至0·8左右时,用500μmol/Lisopropylβ-D-thiogalactogalactopyranoside(IPTG)进行诱导表达,在15℃和170r/min条件下继续培养24h,表达效果最好,相对于每毫升培养基而言,产酶可达到70u/mL,是米曲霉自然条件产酶量的87·5倍,远优于文献报道的重组表达的PGA酶活。  相似文献   

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The crystal structure of alpha-glucosidase MalA from Sulfolobus solfataricus has been determined at 2.5Angstrom resolution. It provides a structural model for enzymes representing the major specificity in glycoside hydrolase family 31 (GH31), including alpha-glucosidases from higher organisms, involved in glycogen degradation and glycoprotein processing. The structure of MalA shows clear differences from the only other structure known from GH31, alpha-xylosidase YicI. MalA and YicI share only 23% sequence identity. Although the two enzymes display a similar domain structure and both form hexamers, their structures differ significantly in quaternary organization: MalA is a dimer of trimers, YicI a trimer of dimers. MalA and YicI also differ in their substrate specificities, as shown by kinetic measurements on model chromogenic substrates. In addition, MalA has a clear preference for maltose (Glc-alpha1,4-Glc), whereas YicI prefers isoprimeverose (Xyl-alpha1,6-Glc). The structural origin of this difference occurs in the -1 subsite where MalA residues Asp251 and Trp284 could interact with OH6 of the substrate. The structure of MalA in complex with beta-octyl-glucopyranoside has been determined. It reveals Arg400, Asp87, Trp284, Met321 and Phe327 as invariant residues forming the +1 subsite in the GH31 alpha-glucosidases. Structural comparisons with other GH families suggest that the GH31 enzymes belong to clan GH-D.  相似文献   

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米曲霉表达系统与大肠杆菌表达系统和酵母表达系统相比有许多优点,目前绝大多数研究都关注如何提高米曲霉在液体发酵条件下生产蛋白质,但米曲霉在固体培养条件下生产多种蛋白的能力比在液体培养条件下强,这不仅与米曲霉在不同培养条件下的生长形态有关,还与不同代谢途径中特定基因的调控因子如启动子的特性有关。米曲霉葡萄糖淀粉酶基因glaB在固体培养条件下的表达效率明显高于其在液体培养条件下的效率,以葡萄糖淀粉酶基因glaB为例,综述了glaB启动子的研究概况,为今后更好地利用这类启动子提供参考。  相似文献   

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