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1.
Filamentous fungi secrete protein with a very high efficiency, and this potential can be exploited advantageously to produce therapeutic proteins at low costs. A significant barrier to this goal is posed by the fact that fungal N-glycosylation varies substantially from that of humans. Inappropriate N-glycosylation of therapeutics results in reduced product quality, including poor efficacy, decreased serum half-life, and undesirable immune reactions. One solution to this problem is to reprogram the glycosylation pathway of filamentous fungi to decorate proteins with glycans that match, or can be remodeled into, those that are accepted by humans. In yeast, deletion of ALG3 leads to the accumulation of Man5GlcNAc2 glycan structures that can act as a precursor for remodeling. However, in Aspergilli, deletion of the ALG3 homolog algC leads to an N-glycan pool where the majority of the structures contain more hexose residues than the Man3-5GlcNAc2 species that can serve as substrates for humanized glycan structures. Hence, additional strain optimization is required. In this report, we have used gene deletions in combination with enzymatic and chemical glycan treatments to investigate N-glycosylation in the model fungus Aspergillus nidulans. In vitro analyses showed that only some of the N-glycan structures produced by a mutant A. nidulans strain, which is devoid of any of the known ER mannose transferases, can be trimmed into desirable Man3GlcNAc2 glycan structures, as substantial amounts of glycan structures appear to be capped by glucose residues. In agreement with this view, deletion of the ALG6 homolog algF, which encodes the putative α-1,3- glucosyltransferase that adds the first glucose residue to the growing ER glycan structure, dramatically reduces the amounts of Hex6-7HexNAc2 structures. Similarly, these structures are also sensitive to overexpression of the genes encoding the heterodimeric α-glucosidase II complex. Without the glucose caps, a new set of large N-glycan structures was formed. Formation of this set is mostly, perhaps entirely, due to mannosylation, as overexpression of the gene encoding mannosidase activity led to their elimination. Based on our new insights into the N-glycan processing in A. nidulans, an A. nidulans mutant strain was constructed in which more than 70% of the glycoforms appear to be Man3-5GlcNAc2 species, which may serve as precursors for further engineering in order to create more complex human-like N-glycan structures.  相似文献   

2.
Laccases are blue-copper enzymes, which oxidize phenolic substrates and thereby reduce molecular oxygen. They are widespread within fungi and are involved in lignin degradation or secondary metabolism such as pigment biosynthesis. Many fungi contain several laccases, not all of whose functions are known. In Aspergillus nidulans one, yA, is expressed during asexual development and converts a yellow precursor to the green pigment. We identified a second laccase gene, which encodes a 66.3-kDa protein 37.6% identical to laccase I of A. nidulans. The protein harbors an N-terminal secretion signal, and three characteristic copper-binding centers. The enzyme localizes at the growing hyphal tip. The gene was therefore named tilA (=tip laccase). Deletion or overexpression of the gene had no discernible phenotype under laboratory conditions.  相似文献   

3.
Abstract A neutral endoxylanase from a culture filtrate of Aspergillus nidulans grown on oat spelt xylan was purified to apparent homogeneity. The purified enzyme showed a single band on SDS-PAGE with a molecular mass of 22,000 and had an isoelectric point of 6.4. The enzyme was a non-debranching endoxylanase highly specific for xylans and completely free from cellulolytic activity. The xylanase showed an optimum activity at pH 5.5 and 62°C and had a K m of 4.2 mg oat spelt xylan per ml and a V max of 710 μmol min−1 (mg protein)−1.  相似文献   

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5.
Abstract Electrical parameters were determined and quantified for the stimulation of the optimum alignment and fusion of Aspergillus nidulans protoplasts. In a non-homogeneous alternating electrical field A. nidulans protoplasts aligned to form pearl chains associated with the electrodes of the fusion chamber. Most protoplasts were in pearl chains in an alignment field frequency of 3.0 MHz but maximum pair formation occurred at 1.0 MHz. At a field strength between 100 and 1000 V · cm−1 pearl chain formation occurred with minimal protoplast rotation or lysis. The application of DC pulses resulted in protoplast fusion. Most fusion events were observed after two 500 V · cm−1 DC pulses with a 0.5 s interpulse period. Using 1 × 103 protoplasts · cm−3 in a 7 μm fusion chamber a maximum of 17.2 ± 2.0% fusion events were achieved.  相似文献   

6.
Aspergillus nidulans reproduces asexually via uninucleate, haploid spores, which are produced on morphologically differentiated aerial structures, called conidiophores. These consist of four distinct cell types, a foot with a terminally swollen stalk, metulae, phialides and conidiospores. The molecular mechanisms underlying the morphological changes that occur during conidiophore development have been studied by mutant analysis. We have isolated the hymA mutant, in which conidiophore development is affected at the metula stage. In the mutant metulae do not differentiate properly but come to resemble hyphae (hym = hypha-like metulae). In this paper we have analyzed the corresponding gene. It encodes a highly expressed 44 kDa protein which resides in the cytoplasm and has homologues in yeast, plants, fly, worm, fish, mice and man. We constructed hym deletion strains of Saccharomyces cerevisiae and of A. nidulans and found that the gene is essential in S. cerevisiae but is dispensable in the filamentous fungus. A cellular function for the Hym protein has not yet been defined in any organism. To demonstrate functional conservation we constructed a chimeric protein comprised of the N-terminal half of the A.␣nidulans and the C-terminal half of the mouse homologue MO25. This hybrid protein could fully substitute for HymA function in A. nidulans. In addition, the mouse protein itself partially rescued the hymA mutation in the fungus. HymA is thus highly conserved in evolution and probably serves similar functions. The fact that hymA is required for conidiophore development in A. nidulans suggests that homologous genes in other organisms might also be involved in morphogenesis. Received: 11 February 1998 / Accepted: 14 September 1998  相似文献   

7.
The V10 deteriorated variant of Aspergillus nidulans has hyphae, metulae, phialides and conidia with abnormal nuclear distributions. The alterations observed were: increase in the number of nuclei in hyphae, metulae and phialides, presence of anucleate, uninucleate and multinucleate conidia, abnormal vegetative growth and defective conidiation. When 0.5 M NaCl was added to the medium, an increase in the number of conidia was observed but their morphology and number of nuclei were not modified. The gene responsible for these alterations was named anuA1. The anuA1 gene is located on linkage group VII and is possibly involved in nuclear migration to hyphae, metulae, phialides and conidia.  相似文献   

8.
内切纤维素酶是纤维素酶高效降解纤维素的一个关键因子,已广泛应用于工业生物技术领域。对来源于腐生真菌构巢曲霉的一个内切纤维素酶进行过表达及详细的酶学性质研究,研究结果表明:该内切纤维素酶在摇瓶和发酵罐条件下都成功获得表达,发酵罐条件下的蛋白质表达量达到0.89 mg/mL;该酶的最适反应p H和温度分别为4.0和80℃,在pH 2.0–12.0之间表现出了很好的稳定性;在温度£60℃时,该酶非常稳定,当温度370℃,酶的稳定性大大降低;Co~(2+)、Mn~(2+)和Fe~(2+)促进了CMCase活性,而Pb~(2+)、Ni~(2+)和Cu~(2+)等金属离子表现出了一定的抑制作用。因此,该构巢曲霉内切纤维素酶表现出了非常好的耐酸、耐碱以及一定的耐热性等性能,具有开发为商品酶的潜力,为深入开发构巢曲霉来源糖苷酶的应用奠定了基础。  相似文献   

9.
应用实时荧光PCR技术检测构巢曲霉的初步研究   总被引:1,自引:0,他引:1  
目的 根据构巢曲霉(Aspergillus nidulans)3-磷酸甘油醛脱氢酶(Glyceraldehyde-3-phosphate dehydrogenase,GAPDH)基因特异位点设计并合成Taqman探针及引物,建立构巢曲霉实时荧光 PCR检测方法。方法 应用lasergene7.1软件对构巢曲霉与13种常见曲霉主要包括黑曲霉(A.niger)、烟曲霉(A.fumigatus)、杂色曲霉(A.versicolor)、土曲霉(A.terrus)、黄曲霉(A. flavus)、温特曲霉(A.wentii)、寄生曲霉(A. parasiticus)、泡盛曲霉(A.awamori)、米曲霉(A. oryzae )、棒曲霉(A.cavatus)、赤曲霉(A.ruber )、亮白曲霉(A.ochraceus)及赭曲霉(A.ochraceus)GAPDH基因序列比对分析,在特异位点设计引物和探针,建立构巢曲霉实时荧光 PCR检测方法,并对该方法进行特异性及敏感性分析。结果 用曲霉属22种41株不同曲霉及其他属的12株病原真菌验证实验表明,所建立的荧光PCR方法特异性强;检测灵敏度可达4.03×10-12μg/ml的模板DNA。 结论 应用实时荧光PCR技术能够有效检测构巢曲霉,该方法具有特异、灵敏、快速等特点,可在实际工作中应用。  相似文献   

10.
Intact nuclei were isolated from the protoplasts of the filamentous fungus Aspergillus nidulans. The large amounts of protoplasts required for such nuclear preparations were produced from young mycelia grown in liquid culture. For final purification of the crude nuclear fraction, a Nycodenz density-gradient centrifugation was applied. The resulting nuclei were of good purity and morphological state, as demonstrated by fluorescence microscopy and electronmicroscopy. The weight ratio of DNA:RNA:protein was 1:3.0:10.8 in the nuclear fraction.  相似文献   

11.
pH regulation of penicillin production in Aspergillus nidulans   总被引:9,自引:0,他引:9  
As shown by both bioassay and high-performance liquid chromatographic (HPLC) analysis, penicillin G production by Aspergillus nidulans is subject to regulation by the pH of the growth medium. Penicillin titres were highest at alkaline pH and in strains carrying mutations in the regulatory gene pacC which mimics the effects of growth at alkaline pH. They were lowest at acid pH and in strains carrying mutations in the palA, palB, palC, palE or palF genes which mimic the effects of growth at acid pH.  相似文献   

12.
Conidial laccase of Aspergillus nidulans was purified by standard protein purification methods. Although the purified material showed a cluster of several protein bands on a nondenaturing gel, each of these protein bands had laccase activity. All bands of activity, however, were absent in a strain carrying a mutation in the structural gene for laccase. Concentrated solutions (greater than 1 mg/ml) were bright blue, suggesting that, like other laccases, this enzyme contains copper. The enzyme contained asparagine-linked carbohydrate (12% by weight) which could be removed by digestion with endo-beta-N-acetylglucosaminidase H. The molecular weight of native enzyme as determined by gel filtration was 110,000, but the largest component in a sodium dodecyl sulfate gel was 80,000. Several smaller components (55,000 and 36,000 molecular weight) were also visible. We present evidence which suggests that the smaller components are in vivo cleavage products tightly associated with enzymatically active molecules. Comparison of the laccase from a white-spore (wA) and a green-spore (wA+) strain showed, surprisingly, that the enzymes differed in electrophoretic pattern, in vitro heat stability, and in vivo metabolic stability. The difference was manifested for enzymes isolated from cultures after conidial pigmentation of the wA+ strain had occurred. If examined earlier, before pigmentation, the enzymes were indistinguishable. Since wA strains lack the precursor of the wild-type green pigment, i.e., the laccase substrate, we suggest that the transformation of the enzyme of the wA strain is due to its failure to interact with its normal substrate.  相似文献   

13.
An endochitinase from centrifuged autolyzed cultures of Aspergillus nidulans has been purified 100 times. The enzyme has Mw 27,000, pI of 4.8 units, pH optimum around 5 pH units. It is unstable at temperature greater than 70 degrees C and does not have a cation requirement. It is inhibited by Hg2+, Cu2+, Ca2+ and Ag+ and it does not have muramidase activity. The enzyme depolymerizes chitin rapidly with production of high molecular weight polysaccharides, and then slowly degrades these with production of N,N'-diacetylchitobiose. The enzyme hydrolyzes N,N',N'-triacetylchitotriose with production of N,N'-diacetylchitobiose and N-acetylglucosamine and this hydrolysis is inhibited by other chitin oligomers and N-acetylglucosamine. This enzyme hydrolyzes in the same way the chitin obtained from the cell wall of Aspergillus nidulans.  相似文献   

14.
Abstract The acuJ mutant of Aspergillus nidulans has been shown to lack carnitine acetyltransferase (CAT) activity when grown under conditions where this activity is readily detectable in wild-type strains. Revertants selected for growth on acetate recover CAT activity and the ability to grow on long-chain fatty acids. When growing on carbon sources such as sucrose, cytosolic acetyl coenzyme A was generated by adenosine triphosphate (ATP): citrate lyase.  相似文献   

15.
Abstract A genetic transformation system for the aflatoxin-producing fungus Aspergillus parasiticus using two autonomously replicating plasmids from A. nidulans (ARp1 and pDHG25) is reported. Transformation frequencies using the plasmid pDHG25 were from 5 × 102 to 2.5 × 104 transformants per 106 viable protoplasts and μg DNA. The stability of the plasmids in the transformants was also studied. This transformation system offers a new opportunity to clone genes related to aflatoxin production using appropriate aflatoxin-defective mutants.  相似文献   

16.
In fungi, microsatellites occur less frequently throughout the genome and tend to be less polymorphic compared with other organisms. Most studies that develop microsatellites for fungi focus on dinucleotide and trinucleotide repeats, and thus mononucleotide repeats, which are much more abundant in fungal genomes, may represent an overlooked resource. This study examined the relative probabilities of polymorphism in mononucleotide, dinucleotide and trinucleotide repeats in Aspergillus nidulans. As previously found, the probability of polymorphism increased with increasing number of repeating units. Dinucleotide and trinucleotide repeats had higher probabilities of polymorphism than mononucleotide repeats, but this was offset by the presence of numerous long mononucleotide repeats within the genome. Mononucleotide microsatellites with 20 or more repeating units have a probability of polymorphism similar to dinucleotide and trinucleotide microsatellites, and therefore, consideration of mononucleotide repeats will substantially increase the number of potential markers available.  相似文献   

17.
阿尼芬净是一种新型的抗真菌药物,能够抑制各种致病念珠菌在活体内外的活性。棘白菌素B(Echinocandin B,ECB)是合成阿尼芬净的关键前体,其发酵单位的高低直接关系到阿尼芬净的价格及市场前景。文中考察了构巢曲霉在摇瓶发酵生产ECB的过程中,添加滑石粉、Al2O3、玻璃珠等微粒对其发酵单位的影响。发现微粒的粒径和添加浓度是菌体形态和ECB产量的关键影响因素,添加20 g/L滑石粉(d50=14.2μm)和7颗玻璃珠(d=6 mm)可使ECB发酵产量分别比对照提高33.2%和41.7%,达到1 262.9 mg/L和1 344.1mg/L。结果表明微粒的添加可以显著地改善丝状微生物发酵过程中的菌丝形态,提高其产物的发酵产量,为丝状微生物发酵过程的优化提供了一种重要手段。  相似文献   

18.
The fungus Aspergillus nidulans reduces nitrate to ammonium and simultaneously oxidizes ethanol to acetate to generate ATP under hypoxic conditions in a mechanism called ammonia fermentation (Takasaki, K. et al.. J. Biol. Chem. 2004, 279, 12414–12420). To elucidate the mechanism, the fungus was cultured under normoxic and hypoxic (ammonia fermenting) conditions, intracellular proteins were resolved by 2‐DE, and 332 protein spots were identified using MALDI MS after tryptic digestion. Alcohol and aldehyde dehydrogenases that play key roles in oxidizing ethanol were produced at the basal level under hypoxic conditions but were obviously provoked by ethanol under normoxic conditions. Enzymes involved in gluconeogenesis, as well as the tricarboxylic and glyoxylate cycles, were downregulated. These results indicate that the mechanism of fungal energy conservation is altered under hypoxic conditions. The results also showed that proteins in the pentose phosphate pathway as well as the metabolism of both nucleotide and thiamine were upregulated under hypoxic conditions. Levels of xanthine and hypoxanthine, deamination products of guanine and adenine were increased in DNA from hypoxic cells, indicating an association between hypoxia and intracellular DNA base damage. This study is the first proteomic comparison of the hypoxic responses of A. nidulans.  相似文献   

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