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排序方式: 共有182条查询结果,搜索用时 15 毫秒
1.
Herbert Wieser Hans-Dieter Belitz Dalia Idar Azaria Ashkenazi 《Zeitschrift für Lebensmitteluntersuchung und -Forschung A》1986,182(2):115-117
Summary The coeliac active peptide B 3142, which has been isolated from a peptic-tryptic digest of gliadin [1] and which consists of 53 amino-acid sequences [2], was partially hydrolyzed with -chymotrypsin. The two fragment peptides CT-1 (positions 1–22 of B 3142) and CT-2 (positions 23–53) were separated by high-performance liquid chromatography on octadecyl silica gel and purified by gel filtration on Biogel P2. The examination in the organ-culture test including 18 coeliac patients on normal diet and 7 control persons have shown that the toxicity is preserved after the chymotryptic treatment and that the peptides B 3142, CT-1 and CT-2 do not significantly differ from one another according to their coeliac-specific effect.
Supported by a grant from Deutsche Forschungsgemeinschaft. We gratefully acknowledge the excellent assistance given by Mrs. U. Schützler and Ms. B. Mosler 相似文献
Coeliakieaktivitat der Gliadinpeptide CT-1 und CT-2
Zusammenfassung Das coeliakieaktive Peptid B 3142, das aus einem peptisch-tryptischen Partialhydrolysat von Gliadin gewonnen wurde [1] und aus einer Sequenz von 53 Aminosäureresten besteht [2], wurde mit -Chymotrypsin partiell hydrolysiert. Die beiden Fragment-peptide CT-1 (Positionen 1–22 von B 3142) und CT-2 (Positionen 23–53) wurden durch Hochdruckflüssig-keitschromatographie an Octadecyl-Kieselgel aufgetrennt und an Biogel P2 gereinigt. Die Prüfung im Organkultur-Test unter Einbeziehung von 18 Coeliakie-patienten unter Normalkost und von 7 Kontrollpersonen zeigte, daß die Toxizität nach chymotryptischer Spaltung erhalten bleibt, und daß sich die Peptide B 3142, CT-1 und CT-2 in ihrer coeliakiespezifischen Wirkung nicht wesentlich unterscheiden.
Supported by a grant from Deutsche Forschungsgemeinschaft. We gratefully acknowledge the excellent assistance given by Mrs. U. Schützler and Ms. B. Mosler 相似文献
2.
Dalia M. El-Husseini Ashraf E. Sayour Falk Melzer Magda F. Mohamed Heinrich Neubauer Reham H. Tammam 《International journal of molecular sciences》2022,23(11)
Brucellae are Gram-negative, aerobic, non-motile coccobacilli causing brucellosis in man and animals. The disease is one of the most significant yet neglected global zoonoses. Especially in developing countries, brucellosis is causing public health problems and economic losses to private animal owners and national revenues. Composed of oligonucleotides, aptamers are chemical analogues of antibodies that are promising components for developing aptamer-based rapid, sensitive, and specific tests to identify the Brucella group of bacteria. For this purpose, aptamers were generated and selected by an enhanced protocol of cell systematic evolution of ligands by exponential enrichment (cell-SELEX). This enhanced cell-SELEX procedure involved the combination of both conventional and toggle cell-SELEX to boost the specificity and binding affinity to whole Brucella cells. This procedure, combined with high-throughput sequencing of the resulting aptamer pools, comprehensive bioinformatics analysis, and wet lab validation assays, led to the selection of a highly sensitive and specific aptamer for those Brucella species known to circulate in Egypt. The isolated candidate aptamer showed dissociation constant (KD) values of 43.5 ± 11, 61.5 ± 8, and 56 ± 10.8 nM for B. melitensis, B. abortus, and B. suis, respectively. This is the first development of a Brucella-specific aptamer using an enhanced combination of conventional and toggle cell-SELEX to the authors’ best knowledge. 相似文献
3.
Proteome Based Approach Defines Candidates for Designing a Multitope Vaccine against the Nipah Virus
Mohamed A. Soltan Muhammad Alaa Eldeen Nada Elbassiouny Ibrahim Mohamed Dalia A. El-damasy Eman Fayad Ola A. Abu Ali Nermin Raafat Refaat A. Eid Ahmed A. Al-Karmalawy 《International journal of molecular sciences》2021,22(17)
Nipah virus is one of the most harmful emerging viruses with deadly effects on both humans and animals. Because of the severe outbreaks, in 2018, the World Health Organization focused on the urgent need for the development of effective solutions against the virus. However, up to date, there is no effective vaccine against the Nipah virus in the market. In the current study, the complete proteome of the Nipah virus (nine proteins) was analyzed for the antigenicity score and the virulence role of each protein, where we came up with fusion glycoprotein (F), glycoprotein (G), protein (V), and protein (W) as the candidates for epitope prediction. Following that, the multitope vaccine was designed based on top-ranking CTL, HTL, and BCL epitopes from the selected proteins. We used suitable linkers, adjuvant, and PADRE peptides to finalize the constructed vaccine, which was analyzed for its physicochemical features, antigenicity, toxicity, allergenicity, and solubility. The designed vaccine passed these assessments through computational analysis and, as a final step, we ran a docking analysis between the designed vaccine and TLR-3 and validated the docked complex through molecular dynamics simulation, which estimated a strong binding and supported the nomination of the designed vaccine as a putative solution for Nipah virus. Here, we describe the computational approach for design and analysis of this vaccine. 相似文献
4.
Synthesis and Evaluation of Bis-quaternary-Based Surfactants as Additives for Water-Based Mud 下载免费PDF全文
Sahar M. Ahmed Mona M. Dardir Dalia E. Mohamed Ashgan I. Awad 《Journal of surfactants and detergents》2016,19(6):1263-1272
Two series of cationic gemini surfactants, alkanediyl-α,ω-bis[N,N-dimethyl alkyl (octyl or dodecyl)ammonium] dibromide (R-s-R; s = 6, 10, 12 and R = 8 and 12) were prepared and evaluated as additives for water-based mud. The chemical structures of the prepared surfactants were confirmed using FTIR and mass spectroscopy. Surface activity of these compounds has been studied and their surface properties including surface tension, emulsification power, critical micelle concentration, effectiveness, maximum surface excess and minimum surface area were determined. The results showed that the prepared compounds have significant surface activity, especially those of longer hydrophobic chain length. The prepared cationic gemini surfactants were evaluated as viscosifiers and filter loss additives for water-based mud formulated from local Na-montmorillonite clay. XRD analysis was carried out to the Na-montmorillonite clay to determine the interaction of the surfactants with inter layers of the clay structure. Rheological properties, gel strength, thixotropy, filtration properties and the effect of temperature on rheological properties of the water-based mud were studied. The results indicated that the gemini surfactants have a positive effect on the rheological and filtration properties of the Na-montmorillonite clay according to American Petroleum Institute specifications. 相似文献
5.
Ismail Aiad Dalia Emam Ali El-Deeb Eman Abd-Alrahman 《Journal of surfactants and detergents》2013,16(6):927-935
Three novel imidazolium-based gemini surfactants had been synthesized and characterized using different spectroscopic techniques. The surface properties of the synthesized surfactants were determined using surface tension measurements at 20 °C. The surface parameters including critical micelle concentration (CMC), π CMC, Pc20, Γmax and A min were determined. The synthesized compounds were evaluated as corrosion inhibitors for carbon steel in 0.5 M HCl solution using the weight loss and polarization techniques. The biological activity of these surfactants was evaluated against sulfate reducing bacteria using most probable number method. The results indicate that the synthesized compounds have good surface properties and are proper corrosion inhibitors for low carbon steel, with a high inhibition efficiency observed around their CMC. These compounds exhibit a significant biocidal activity against sulfate reducing bacteria. 相似文献
6.
Dalia Heggo Shinichi Ookawara Teruhisa Ohno Toru Nakai Yoshihisa Matsushita Mona Gamal Eldin Masahiro Ohshima 《加拿大化工杂志》2020,98(1):119-126
Dense photocatalyst slurry was employed for the synthesis of p-anisaldehyde under solar light irradiation. An Fe-modified rutile TiO 2 (Fe-TiO 2, 34.5 m 2/g) photocatalyst was used as a visible-light-responsive photocatalyst. A conventional TiO 2 (P25, 35 m 2/g) photocatalyst was also examined as a reference catalyst. XRD patterns and diffuse reflectance spectra showed that Fe-TiO 2 consists of 100 % rutile phase and absorbs more visible light compared to P25, respectively. The catalyst powder was suspended in an ethyl acetate solution of p-methoxytoluene in the mini-reactor, with oxygen bubbling, under a solar simulator, visible light, and UV LEDs. p-anisaldehyde, as a reaction product, was analyzed by sampling using gas-chromatograph. Regardless of the light source, Fe-TiO 2 always outperformed P25 in terms of both generation rates (GR) of p-anisaldehyde and energy requirements (ER). It was demonstrated that the highly dense Fe-TiO 2 slurry was efficient for the synthesis under solar light owing to the small size of the reactor. The small amount of Pt and ZrO 2 cocatalysts significantly enhanced the GR under solar light. By adopting a visible light responsive Fe-TiO 2 photocatalyst, the mini slurry-bubble reactor under solar light achieved a high GR per catalyst mass (CM), which is one to two orders higher than that reported by most previous studies with high-power lamps. 相似文献
7.
Screening,Molecular Cloning,and Biochemical Characterization of an Alcohol Dehydrogenase from Pichia pastoris Useful for the Kinetic Resolution of a Racemic β‐Hydroxy‐β‐trifluoromethyl Ketone 下载免费PDF全文
Dalia Bulut Dr. Nongnaphat Duangdee Prof. Dr. Harald Gröger Prof. Dr. Albrecht Berkessel Prof. Dr. Werner Hummel 《Chembiochem : a European journal of chemical biology》2016,17(14):1349-1358
The stereoselective synthesis of chiral 1,3‐diols with the aid of biocatalysts is an attractive tool in organic chemistry. Besides the reduction of diketones, an alternative approach consists of the stereoselective reduction of β‐hydroxy ketones (aldols). Thus, we screened for an alcohol dehydrogenase (ADH) that would selectively reduce a β‐hydroxy‐β‐trifluoromethyl ketone. One potential starting material for this process is readily available by aldol addition of acetone to 2,2,2‐trifluoroacetophenone. Over 200 strains were screened, and only a few yeast strains showed stereoselective reduction activities. The enzyme responsible for the reduction of the β‐hydroxy‐β‐trifluoromethyl ketone was identified after purification and subsequent MALDI‐TOF mass spectrometric analysis. As a result, a new NADP+‐dependent ADH from Pichia pastoris (PPADH) was identified and confirmed to be capable of stereospecific and diastereoselective reduction of the β‐hydroxy‐β‐trifluoromethyl ketone to its corresponding 1,3‐diol. The gene encoding PPADH was cloned and heterologously expressed in Escherichia coli BL21(DE3). To determine the influence of an N‐ or C‐terminal His‐tag fusion, three different recombinant plasmids were constructed. Interestingly, the variant with the N‐terminal His‐tag showed the highest activity; consequently, this variant was purified and characterized. Kinetic parameters and the dependency of activity on pH and temperature were determined. PPADH shows a substrate preference for the reduction of linear and branched aliphatic aldehydes. Surprisingly, the enzyme shows no comparable activity towards ketones other than the β‐hydroxy‐β‐trifluoromethyl ketone. 相似文献
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