966 resultados para cockroach, allergen, Per a 3, hexamerin, Per a 9, arginine kinase


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Allergie gegen Schaben ist eine der Hauptursachen für das Auftreten von allergischem Asthma und allergischer Rhinitis. Verursacht werden diese Krankheiten durch die Schabenallergene. Obwohl bisher zahlreiche Allergene identifiziert wurden, ist bisher nicht bekannt, was ein Protein tatsächlich zu einem Allergen macht. Um die intrinsischen Eigenschaften von Allergenen besser verstehen zu können, wurden in dieser Arbeit Reinigungsprotokolle für die zwei Allergenklassen Per a 3 und Per a 9 aus der Amerikanischen Schabe entwickelt und die Allergene biochemisch und immunologisch charakterisiert. Die Besonderheit der Per a 3-Allergene liegt zum einen darin, dass bisher keine kreuzreagierenden Allergene bekannt sind und zum anderen, dass es sich um -hinsichtlich Temperatur, Harnstoff und Hydrolyse- sehr stabile hexamere Proteine handelt. Zudem sind sie in ihrer nativen hexameren Oligomerisierung stärkere Allergene und in dissoziierter Form könnten sie geeignete Kandidaten für eine Immuntherapie sein. Proteinbiochemisch sind die Per a 3-Allergene als Hexamerine einzustufen. Bei Per a 9 handelt es sich um eine monomere Arginin-Kinase mit allergenem Potential. Aufgrund der weiten Verbreitung der Arginin-Kinasen, den hohen Sequenzidentitäten zu weiteren Invertebraten-Arginin-Kinasen und den bisher bekannten Kreuzreaktionen sind diese Proteine aus Invertebraten wahrscheinlich als Pan-Allergene einzustufen.

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The enzyme trypanothione reductase is a recognised drug target in trypanosomatids and has been used in the search of new compounds with potential activity against diseases such as leishmaniasis, Chagas disease and African trypanosomiasis. 8-Methoxy-naphtho [2,3-b] thiophen-4,9-quinone was selected in a screening of natural and synthetic compounds using an in vitro assay with the recombinant enzyme from Trypanosoma cruzi. Its mode of inhibition fits a non-competitive model with respect to the substrate (trypanothione) and to the co-factor (NADPH), with Ki-values of 5 and 3.6 µM, respectively. When tested against human glutathione reductase, this compound did not display any significant inhibition at 100 µM, indicating a good selectivity against the parasite enzyme.

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Iowa Lottery Retailer Newsletter

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Transformation of normal cloned rat embryo fibroblast (CREF) cells with cellular oncogenes results in acquisition of anchorage-independent growth and oncogenic potential in nude mice. These cellular changes correlate with an induction in the expression of a cancer progression-promoting gene, progression elevated gene-3 (PEG-3). To define the mechanism of activation of PEG-3 as a function of transformation by the Ha-ras and v-raf oncogenes, evaluations of the signaling and transcriptional regulation of the ~2.0 kb promoter region of the PEG-3 gene, PEG-Prom, was undertaken. The full-length and various mutated regions of the PEG-Prom were linked to a luciferase reporter construct and tested for promoter activity in CREF and oncogene-transformed CREF cells. An analysis was also performed using CREF cells doubly transformed with Ha-ras and the Ha-ras specific suppressor gene Krev-1, which inhibits the transformed phenotype in vitro. These assays document an association between expression of the transcription regulator PEA3 and PEG-3. The levels of PEA3 and PEG-3 RNA and proteins are elevated in the oncogenically transformed CREF cells, and reduced in transformation and tumorigenic suppressed Ha-ras/Krev-1 doubly transformed CREF cells. Enhanced tumorigenic behavior, PEG-3 promoter function and PEG-3 expression in Ha-ras transformed cells were all dependent upon increased activity within the mitogen-activated protein kinase (MAPK) pathway. Electrophoretic mobility shift assays and DNase I footprinting experiments indicate that PEA3 binds to sites within the PEG-Prom in transformed rodent cells in an area adjacent to the TATA box in a MAPK-dependent fashion. These findings demonstrate an association between Ha-ras and v-raf transformation of CREF cells with elevated PEA3 and PEG-3 expression, and they implicate MAPK signaling via PEA3 as a signaling cascade involved in activation of the PEG-Prom.